WO2017037712A1 - Combined compositions for controlling blood sugar levels, hepatoprotection, and for prevention and treatment of related medical conditions - Google Patents
Combined compositions for controlling blood sugar levels, hepatoprotection, and for prevention and treatment of related medical conditions Download PDFInfo
- Publication number
- WO2017037712A1 WO2017037712A1 PCT/IL2016/050959 IL2016050959W WO2017037712A1 WO 2017037712 A1 WO2017037712 A1 WO 2017037712A1 IL 2016050959 W IL2016050959 W IL 2016050959W WO 2017037712 A1 WO2017037712 A1 WO 2017037712A1
- Authority
- WO
- WIPO (PCT)
- Prior art keywords
- derivative
- liver
- extract
- natural
- combination
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Ceased
Links
Classifications
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61K—PREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
- A61K36/00—Medicinal preparations of undetermined constitution containing material from algae, lichens, fungi or plants, or derivatives thereof, e.g. traditional herbal medicines
- A61K36/18—Magnoliophyta (angiosperms)
- A61K36/185—Magnoliopsida (dicotyledons)
-
- A—HUMAN NECESSITIES
- A23—FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
- A23L—FOODS, FOODSTUFFS OR NON-ALCOHOLIC BEVERAGES, NOT OTHERWISE PROVIDED FOR; PREPARATION OR TREATMENT THEREOF
- A23L2/00—Non-alcoholic beverages; Dry compositions or concentrates therefor; Preparation or treatment thereof
- A23L2/52—Adding ingredients
-
- A—HUMAN NECESSITIES
- A23—FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
- A23L—FOODS, FOODSTUFFS OR NON-ALCOHOLIC BEVERAGES, NOT OTHERWISE PROVIDED FOR; PREPARATION OR TREATMENT THEREOF
- A23L33/00—Modifying nutritive qualities of foods; Dietetic products; Preparation or treatment thereof
- A23L33/10—Modifying nutritive qualities of foods; Dietetic products; Preparation or treatment thereof using additives
- A23L33/105—Plant extracts, their artificial duplicates or their derivatives
-
- A—HUMAN NECESSITIES
- A23—FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
- A23L—FOODS, FOODSTUFFS OR NON-ALCOHOLIC BEVERAGES, NOT OTHERWISE PROVIDED FOR; PREPARATION OR TREATMENT THEREOF
- A23L33/00—Modifying nutritive qualities of foods; Dietetic products; Preparation or treatment thereof
- A23L33/10—Modifying nutritive qualities of foods; Dietetic products; Preparation or treatment thereof using additives
- A23L33/17—Amino acids, peptides or proteins
- A23L33/18—Peptides; Protein hydrolysates
-
- A—HUMAN NECESSITIES
- A23—FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
- A23L—FOODS, FOODSTUFFS OR NON-ALCOHOLIC BEVERAGES, NOT OTHERWISE PROVIDED FOR; PREPARATION OR TREATMENT THEREOF
- A23L33/00—Modifying nutritive qualities of foods; Dietetic products; Preparation or treatment thereof
- A23L33/40—Complete food formulations for specific consumer groups or specific purposes, e.g. infant formula
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61K—PREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
- A61K31/00—Medicinal preparations containing organic active ingredients
- A61K31/56—Compounds containing cyclopenta[a]hydrophenanthrene ring systems; Derivatives thereof, e.g. steroids
- A61K31/575—Compounds containing cyclopenta[a]hydrophenanthrene ring systems; Derivatives thereof, e.g. steroids substituted in position 17 beta by a chain of three or more carbon atoms, e.g. cholane, cholestane, ergosterol, sitosterol
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61K—PREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
- A61K31/00—Medicinal preparations containing organic active ingredients
- A61K31/66—Phosphorus compounds
- A61K31/683—Diesters of a phosphorus acid with two hydroxy compounds, e.g. phosphatidylinositols
- A61K31/685—Diesters of a phosphorus acid with two hydroxy compounds, e.g. phosphatidylinositols one of the hydroxy compounds having nitrogen atoms, e.g. phosphatidylserine, lecithin
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61K—PREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
- A61K31/00—Medicinal preparations containing organic active ingredients
- A61K31/70—Carbohydrates; Sugars; Derivatives thereof
- A61K31/7028—Compounds having saccharide radicals attached to non-saccharide compounds by glycosidic linkages
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61K—PREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
- A61K36/00—Medicinal preparations of undetermined constitution containing material from algae, lichens, fungi or plants, or derivatives thereof, e.g. traditional herbal medicines
- A61K36/18—Magnoliophyta (angiosperms)
- A61K36/185—Magnoliopsida (dicotyledons)
- A61K36/48—Fabaceae or Leguminosae (Pea or Legume family); Caesalpiniaceae; Mimosaceae; Papilionaceae
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61K—PREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
- A61K38/00—Medicinal preparations containing peptides
- A61K38/02—Peptides of undefined number of amino acids; Derivatives thereof
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61K—PREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
- A61K38/00—Medicinal preparations containing peptides
- A61K38/16—Peptides having more than 20 amino acids; Gastrins; Somatostatins; Melanotropins; Derivatives thereof
- A61K38/168—Peptides having more than 20 amino acids; Gastrins; Somatostatins; Melanotropins; Derivatives thereof from plants
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61K—PREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
- A61K45/00—Medicinal preparations containing active ingredients not provided for in groups A61K31/00 - A61K41/00
- A61K45/06—Mixtures of active ingredients without chemical characterisation, e.g. antiphlogistics and cardiaca
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61P—SPECIFIC THERAPEUTIC ACTIVITY OF CHEMICAL COMPOUNDS OR MEDICINAL PREPARATIONS
- A61P1/00—Drugs for disorders of the alimentary tract or the digestive system
- A61P1/16—Drugs for disorders of the alimentary tract or the digestive system for liver or gallbladder disorders, e.g. hepatoprotective agents, cholagogues, litholytics
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61P—SPECIFIC THERAPEUTIC ACTIVITY OF CHEMICAL COMPOUNDS OR MEDICINAL PREPARATIONS
- A61P3/00—Drugs for disorders of the metabolism
- A61P3/08—Drugs for disorders of the metabolism for glucose homeostasis
- A61P3/10—Drugs for disorders of the metabolism for glucose homeostasis for hyperglycaemia, e.g. antidiabetics
-
- A—HUMAN NECESSITIES
- A23—FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
- A23L—FOODS, FOODSTUFFS OR NON-ALCOHOLIC BEVERAGES, NOT OTHERWISE PROVIDED FOR; PREPARATION OR TREATMENT THEREOF
- A23L33/00—Modifying nutritive qualities of foods; Dietetic products; Preparation or treatment thereof
- A23L33/10—Modifying nutritive qualities of foods; Dietetic products; Preparation or treatment thereof using additives
- A23L33/105—Plant extracts, their artificial duplicates or their derivatives
- A23L33/11—Plant sterols or derivatives thereof, e.g. phytosterols
-
- A—HUMAN NECESSITIES
- A23—FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
- A23V—INDEXING SCHEME RELATING TO FOODS, FOODSTUFFS OR NON-ALCOHOLIC BEVERAGES AND LACTIC OR PROPIONIC ACID BACTERIA USED IN FOODSTUFFS OR FOOD PREPARATION
- A23V2002/00—Food compositions, function of food ingredients or processes for food or foodstuffs
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61K—PREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
- A61K2236/00—Isolation or extraction methods of medicinal preparations of undetermined constitution containing material from algae, lichens, fungi or plants, or derivatives thereof, e.g. traditional herbal medicine
Definitions
- the present invention relates to combined therapeutic compositions, beverage and food supplements with enhanced capability to control blood sugar levels, altered insulin resistance, and protect and restore liver function.
- Compositions of the present invention are particularly applicable to a range of disorders, including pre-diabetes, diabetes and related conditions.
- Glucose being the preferential source of energy in virtually all body cells, is essential for normal function of all body systems, which is why blood glucose levels are tightly regulated as a part of metabolic homeostasis governed by the feedback of insulin/glucagon produced in the pancreas.
- blood sugar levels are held within very narrow limits.
- the normal blood glucose levels (tested while fasting) for non-diabetics, are on average between 70-100 milligrams per deciliter (mg/dL).
- Blood glucose levels outside the normal range i.e. persistent hyper- or hypo-glycemia, may be an indicator of a number of medical conditions. Diabetes mellitus characterized by persistent hyperglycemia is the most prominent disease related to failure of blood sugar regulation. Intake of alcohol causes an initial surge in blood sugar, and later tends to cause hypoglycemia.
- SSBs sugar-sweetened beverages
- Alcohol metabolism leads to a fatty liver and buildup of an intermediate metabolic product, lactic acid, in body fluids (lactic acidosis). Both of these effects can inhibit glucose production.
- Alcohol-induced hypoglycemia generally occurs after prolonged alcohol consumption coupled with poor nutritional intake, which not only decreases glucose production but also exhaust the reserves of glucose stored in the liver in the form of glycogen, thereby leading to hypoglycemia. Because glucose is the primary energy source of the brain, hypoglycemia can contribute to hangover symptoms such as fatigue, weakness, and mood disturbances. Diabetics are particularly sensitive to the alcohol-induced alterations in blood glucose.
- liver disease Excessive alcohol consumption is the major cause of liver disease; 15-20% of chronic heavy drinkers develop hepatitis or cirrhosis that can occur concomitantly or in succession. While genetic factors may contribute both to alcoholism and to alcoholic liver disease, malnutrition, particularly vitamin A and E deficiencies, can worsen alcohol-induced liver damage by preventing hepatocyte regeneration [8]. Women are twice as susceptible to alcohol-related liver disease, and may develop alcoholic liver disease with shorter durations and doses of chronic consumption. Alcoholic liver disease evolves as a result of secretion of pro-inflammatory cytokines, oxidative stress, lipid peroxidation and acetaldehyde toxicity ensuing in response to alcohol consumption. These factors cause inflammation, apoptosis and eventually fibrosis of liver cells [9].
- Alcoholic liver disease evolves from fatty change through alcoholic hepatitis to alcoholic cirrhosis. Its development is associated with an excess mortality both in relation to the presence of liver disease and to other complications of alcohol abuse. In the majority of patients fatty liver is a benign lesion, which will reverse completely following abstinence from alcohol. Continued drinking is associated with the eventual development of cirrhosis in approximately 20% of individuals. Alcoholic hepatitis is a precirrhotic lesion, progression to cirrhosis is observed more commonly in women, in individuals with severe disease and in those who continue to drink. Thirty-day mortality rates of less than 20% are observed in patients with mild to moderate disease but exceed 40% in individuals with severe liver injury.
- Phytosterols and phytostanols also referred to as plant sterols and stanols, are common plant and vegetable constituents and are therefore normal constituents of the human diet. Plant sterol consumption have been show as connected with reduction of LDL-Cholesterol and is therefore suggested for treating cardiovascular disorders.
- Moringa is a plant native to the sub-Himalayan areas of India, Pakistan, Bangladesh, and Afghanistan and is also grown in many other areas of the world. Different extracts and preparations of this plant have been implicated in various pathologic conditions including anemia, arthritis, asthma, cancer, constipation, diabetes, diarrhea, epilepsy, intestinal ulcers, intestinal spasms, headache; heart problems, high blood pressure, kidney stones, fluid retention; thyroid disorders and bacterial, fungal, viral and parasitic infections.
- WO 2012/017435, WO 2016/030876 and WO 2015/159290 [12, 13, 14], are previous publications of the present inventor that describe compositions, methods and uses of different soybean extracts and combinations thereof, for the treatment of hepatic disorders, drug induced hepatic injury and related metabolic disorders.
- a first aspect of the invention relates to compositions for controlling blood sugar levels, altered insulin resistance and/or hepatic function, treating various metabolic and immunological conditions, including pre-diabetes, diabetes and inflammatory disorders.
- the compositions of the invention are applicable in treating liver damage, restoring liver function, treating, preventing, ameliorating, reducing or delaying the onset of acute or chronic toxic effect of a drug, enhancing the therapeutic effect of a therapeutic agent and for treating various related malignancies. More specifically, the compositions of the invention may comprise as an active ingredient:
- compositions of the invention may optionally further comprise at least one of:
- At least one adjuvant selected from group of polyethylene glycol, polyethoxylated castor oil; beta cyclo dextrin or a derivative thereof; and
- a further aspect of the invention relates to a method for controlling blood sugar levels, altered insulin resistance and/or hepatic function in a subject, treating various metabolic and immunological conditions, including diabetes and inflammatory disorders, further treating various related malignancies, still further treating liver damage and restoring liver function, treating, preventing, ameliorating, reducing or delaying the onset of acute or chronic toxic effect of a drug, and enhancing the therapeutic effect of a therapeutic agent.
- the method of the invention comprises the step of providing to a subject at least one of:
- compositions of the invention may optionally further comprise at least one of:
- At least one adjuvant selected from group of polyethylene glycol, polyethoxylated castor oil; beta cyclo dextrin or a derivative thereof; and
- the invention provides a soft or an alcoholic beverage or food comprising
- the soft or an alcoholic beverage or food according to the invention further comprise and at least one of:
- At least one adjuvant selected from group of polyethylene glycol, polyethoxylated castor oil; beta cyclo dextrin or a derivative thereof; and
- the invention provides a combined compositions comprising as an active ingredient the above-described constituents, specifically, any combinations of the constituents defined in (I) and (II).
- FIG. 1A-1C The effect of CardioAid and Lunasin on the immune system
- Fig. 1A A bar graph showing the percentage of CD4 positive cells in splenocytes lymphocytes obtained from mice fed on a high fat diet (control) or from mice fed on a high fat diet and administered with CardioAid or Lunasin.
- Fig. IB A bar graph showing the percentage of CD8 positive cells in splenocytes lymphocytes obtained from mice fed on a high fat diet (control) or from mice fed on a high fat diet and administered with CardioAid or Lunasin.
- Fig. 1C A bar graph showing the CD4/CD8 ratio in splenocytes lymphocytes obtained from mice fed on a high fat diet (control) or from mice fed on a high fat diet and administered with CardioAid or Lunasin.
- Figure 2A - 2B The effect of CardioAid and Lunasin on serum cytokines
- Fig. 2A A bar graph showing the level of IL-la in serum obtained from mice fed on a high fat diet (control) or from mice fed on a high fat diet and administered with CardioAid or Lunasin.
- Fig. 2B A bar graph showing the level of TGF in serum obtained from mice fed on a high fat diet (control) or from mice fed on a high fat diet and administered with CardioAid or Lunasin.
- FIG. 3A - 3B The effect of CardioAid and Lunasin on liver enzymes secretion
- Fig. 3A A bar graph showing the level of Alanine aminotransferase (ALT) and Aspartate aminotransferase (AST) in blood obtained from mice fed on a high fat diet (control) or from mice fed on a high fat diet and administered with CardioAid or Lunasin.
- ALT Alanine aminotransferase
- AST Aspartate aminotransferase
- Fig. 3B A bar graph showing the level of gammaglutamyl transferase (GGT) in blood obtained from mice fed on a high fat diet (control) or from mice fed on a high fat diet and administered with CardioAid or Lunasin.
- GTT gammaglutamyl transferase
- Figure 4A - 4B The effect of CardioAid and Lunasin on liver histology
- Fig. 4A A bar graph showing the NAS score of liver sections obtained from mice fed on a high fat diet (control) or from mice fed on a high fat diet and administered with CardioAid or
- Fig. 4B A bar graph showing the Ballooning score of liver sections obtained from mice fed on a high fat diet (control) or from mice fed on a high fat diet and administered with CardioAid or Lunasin.
- FIG. 8 A graph showing the change in serum glucose levels with time in mice fed on a high fat diet (control) or from mice fed on a high fat diet and administered with CardioAid or Lunasin.
- Figure 8 The effect of CardioAid added to a beverage on glucose levels
- the present invention stems from current findings by the inventors showing that various combinations of phytosterols, lunasin peptide and plant extracts, specifically, Moringa extracts possess surprising properties revealed in protecting an organism against altered blood glucose levels, altered insulin resistance and hepatic dysfunction.
- Present experiments may further suggest that these properties could be enhanced by combining the above combinations with soybean extracts, beta-glycolipides and/or adjuvants such as polyethoxylated castor, polyethylene glycol or beta-cyclo dextrin.
- the inventors presently show that supplementation of specific combinations comprising phytosterols, plant extracts, soy extracts and lunasin peptide, with or without adjuvants, to foods or beverages with high sugar and/or alcohol content have beneficial long- term effects on clinical indices of glucose tolerance, and thereby control alterations in insulin resistance. Furthermore, when these combinations are administered to a mammal subject to hepatic insult, either immune- or drug-mediated, these combinations have beneficial restorative effects on specific biochemical indices of liver function.
- compositions of the present invention may have therapeutic applications to a range of clinical conditions associated with altered blood sugar levels, metabolic and/or hepatic dysfunction, including pre-diabetes, diabetes, fatty liver disease and various types of hepatitis and related conditions, and further to various inflammatory disorders and malignancies.
- compositions of the present invention may serve basis for the development of new therapeutic compounds for treatment of hepatopathologies in a wide range of clinical contexts, including alleviation of immune-induced, drug-induced or alcohol-induced liver damage, as well as cirrhosis and/or hepatic failure ensuing from infections, cancer, alcoholic steatohepatitis, non-alcoholic steatohepatitis (NASH or NAFLD) and other chronic liver diseases.
- NASH non-alcoholic steatohepatitis
- compositions of the present invention may be applicable not only for treating, preventing, ameliorating an existing liver damage and improving liver function, but also that said compositions when administered concomitantly or prior to other drugs may enhance their therapeutic effects, and increase overall benefits of therapeutic regimens.
- compositions of the present inventions consisting of combinations of phytosterols, lunasin peptide/s, plant extracts and optionally, soy extracts, with or without adjuvants, should be safe and lacking major adverse effects. It is thus contemplated that these compositions may be applicable not only in a secondary prevention of already existing clinical disorders but also in a primary prevention of risks or pre-clinical conditions in a normal population.
- compositions of the present invention may be used as "bouncers" in preventing the development of pre-clinical conditions ensuing from exposure to foods and beverages with high sugar and/or alcohol content.
- compositions of the invention rather than being used as therapeutic agents, are used as food meant to normalize risks ensuing from modern lifestyle to which are subjected normal individuals.
- Such medical foods, food supplements or food additives, especially in form of add-on to sugar sweetened and/or alcoholic beverages may be especially beneficial for preventing common conditions, such as weight gain, alcohol intoxication and risk of cardiovascular pathology, and also more severe presentations, such as obesity and alcohol withdrawal syndrome.
- These compositions may comprise as an active ingredient:
- compositions of the invention may optionally further comprise at least one of:
- compositions of the invention which may applicable to specific embodiments of methods for treating specific disorders, are further contemplated. More specifically, it is meant that specific combinations of compositions of the invention may include, but not limited to, the following examples.
- compositions of the invention may comprise as an active ingredient sterol or a derivative or a mixture thereof.
- sterols may be at least one plant stanols and sterol and any esters or mixtures thereof.
- sterol in its broadest sense, refers to steroid alcohols that are a subgroup of steroids. In specific embodiments, it refers to the naturally occurring sterols obtained from plants (i.e. phytosterols), animals, and fungi.
- phytosterols or CardioAid®
- GRAS Generally Recognized As Safe
- CardioAid is commercially available from Archer Daniels Midland (ADM).
- a common preparation of CardioAid may include, for example, about 50% beta- sitosterol, 25-30% campesterol, 20% stigmasterol, and up to 5% brassicasterol and 5% sitosterol, and other ingredients such as gelatin, rice flour, magnesium stearate.
- the sterol component of the compositions of the invention, or a sterol derivative or mixture of sterols may be CardioaidTM comprising at least one of CardioAid- S, CardioAid-XF, CardioAid-SWD and CardioAid-SF.
- CardioAid in this context encompasses various preparations of CardioAid, all available from ADM, namely CardioAid-S, CardioAid-XF, CardioAid-SWD and CardioAid-SF. More specifically CardioAid-S is a creamy-white to pale-yellow paste produced by esterifying plant sterols with canola oil fatty acids. CardioAid-SWD is an off-white granular powder produced by esterifying vegetable oil sterols with food grade rapeseed oil fatty acids. CardioAid-SF is also creamy-white to pale-yellow paste are derived by esterifying sterols with canola oil fatty acids. CardioAid-XF is a non-esterified phytosterol product an off-white powder it is water-insoluble. Apart from their appearance and way of production, these various CardioAid preparations may differ in flavor and odor, and in melting point.
- lunasin refers to lunasin peptide that is found in small quantities in soybean seeds and soy-based foods, and also in some cereal grains. More specifically, lunasin is a unique 43-amino acid peptide containing 8 Asp (D) residues in its carboxyl end (bold) preceded by a cell adhesion motif Arg-Gly-Asp (RGD) (italics) and a predicted helix (underlined) with structural homology to a conserved region of chromatin-binding proteins [lunasin amino acid sequence: S K W Q H Q Q D S C R K Q K Q G V N LT P C -EKHIMEKIQG-RGD- DDDDDD, as also denoted by SEQ ID NO.
- the compositions of the invention may comprise as an active ingredient at least one lunasin peptide or any derivative thereof.
- such lunasin peptide may comprise the amino acid sequence as denoted by SEQ ID NO. 1 , or any derivatives or functional fragments thereof.
- lunasin peptide used by the compositions and method of the invention may comprise a partial sequence or fragments derived from the amino acid sequence of SEQ ID NO. 1.
- Non-limiting examples for lunasin fragments that may be applicable in the present invention include but are not limited to a peptide having amino acid residues 1 to 42 of SEQ ID NO. 1, such peptide is denoted by SEQ. ID.
- a peptide having amino acid residues 1 to 41 (SEQ. ID. 3), a peptide having amino acid residues 1 to 40 (SEQ. ID. 4), a peptide having amino acid residues 1 to 39 (SEQ. ID. 5), a peptide having amino acid residues 1 to 38 (SEQ. ID. 6).
- a peptide having amino acid residues 22 to 43 (SEQ. ID. 7), a peptide having amino acid residues 22 to 42 (SEQ. ID. 8), a peptide having amino acid residues 22 to 41 (SEQ. ID. 9), a peptide having amino acid residues 22 to 40 (SEQ. ID. 10), a peptide having amino acid residues 22 to 39 (SEQ. ID. 11), and a peptide having amino acid residues 22 to 38 (SEQ. ID. 12), or any combinations thereof.
- lunasin is sold as a branded ingredient (LunaRich, LunaRichX, Lunasin Reliv, Lunasin XP and Relive, all by Reliv International and previously Soy Labs LLC) available in capsules and as soy protein drinks.
- the lunasin component of the compositions of the invention may be any one of Lunasin Reliv, LunaRichX and Relive.
- the composition of the invention may comprise as an active ingredient at least one extract of Moringa.
- the extract of the compositions of the invention may be an extract of Moringa oleifera.
- Moringa plant Under Moringa plant is meant the sole genus in the flowering plant family Moringaceae, which is native to parts of Africa and Asia. This genus contains 13 species from tropical and subtropical climates that range in size from tiny herbs to massive trees. The most widely cultivated species is Moringa oleifera, a multipurpose tree native to the foothills of the Himalayas in northwestern India, and cultivated throughout the tropics. Moringa stenopetala, an African species, is also widely grown, but to a much lesser extent than Moringa oleifera.
- Moringa provides a rich and rare combination of zeatin, quercetin, beta-sitosterol, caffeoylquinic acid and kaempferol.
- an extract of a Moringa plant is meant herein any substance or a mixture of substances extracted from any part of Moringa plant, using either enzymatic extracts, organic solvents or by hydrophilic solvents.
- the term extract encompasses substances obtained by using either organic solvents such as, for example, hexane, ethyl-acetate or isopropyl-alcohol, or by hydrophilic solvents such as water.
- the extracts may be dried after said extraction and may be further extracts by any extraction method, independently from previous extraction steps. Such steps may be repeated independently.
- extraction techniques may be employed, non-limiting examples of which include chromatography, including size-exclusion, hydrophobic interaction, and anion and cation exchangers, differential centrifugation, differential precipitation (for example, using ammonium sulfate), differential filtration and dialysis.
- compositions of the invention may comprise as an active ingredient at least one of natural or synthetic plant sterols, lunasin peptide/s and extract of a plant from the genus Moringa or any combinations thereof.
- such compositions may further comprise additional components that may be at least one of, soy extract/s (SE) natural or synthetic beta-glycolipid or any derivative thereof and at least one adjuvant selected from group of polyethylene glycol, polyethoxylated castor oil; beta cyclo dextrin or a derivative thereof.
- SE soy extract/s
- compositions of the invention in addition to at least one of natural or synthetic plant sterols, lunasin peptide/s and extract of a plant from the genus Moringa or any combinations thereof, may further include natural or synthetic beta-glycolipid.
- the compositions of the invention may comprise any one of a glucosylceramide, glycosphingolipid, monosaccharide ceramide, galatosylceremide, lactosylceramide, gal-gal- glucosyl-ceramide, GM2 ganglioside, GM3 ganglioside, globoside or any soy derivative or a combination thereof.
- the beta-glycolipid component of the invention may be any synthetic or natural beta-glycolipid or any derivative or combination thereof.
- the beta- glycolipid of the invention may be selected from the group of glycosphingolipids, of a natural or non-natural source, with any number of carbons and double bonds and with any length of the lipid tail of the molecule.
- the beta-glycolipid of the invention may be a glucosylceramide, a monosaccharide ceramide, a galatosylceremide, a lactosyl-ceramide, a gal- gal-glucosyl-ceramide, GM2 ganglioside, GM3 ganglioside, or globoside, or similar soy derived products.
- the above beta-glycolipid is a natural or synthetic beta-glucosylceramide (GC).
- GC beta-glucosylceramide
- the natural GC is the only glycosphingolipid common to plants, fungi and animals, in all of which it constitutes a major component of the outer layer of the plasma membrane. GC is considered to be the principal glycosphingolipid in plants.
- GC is a major constituent of skin lipids, where it is essential for lamellar body formation in the stratum corneum and to maintain the water permeability barrier of the skin. Lower levels of GC are found in cells of the spleen, erythrocytes, and nervous tissues, especially the neurons.
- compositions of the invention may comprise in addition to the least one of natural or synthetic plant sterols, lunasin peptide/s and extract of a plant from the genus Moringa or any combinations thereof described above, also at least one soy extract.
- Particularly relevant combinations of the compositions of the invention may include as SE component (i.e. soy extract) a soy derived polar and/or nonpolar fraction or any fraction thereof.
- soy any part of a plant belonging to the genus Glycine, including the two subgenera, Glycine and Soja. Seeds (also beans) or pollen of said plants are of particular applicability to the present invention. Further pertinent thereto, genetically modified soy, which may include, among others, glyphosate-tolerant or herbicide-tolerant soy that constitute now the majority of the commercial market (e.g. 93% in the US).
- the term extract refers to any substances obtained by extracting soy, particularly soybeans, using either enzymatic extracts, organic solvents or by hydrophilic solvents.
- Many extraction methods may be used for producing SE of the invention.
- at least one of an aliphatic organic solvent and water, or supercritical carbon dioxide gas may be used as an extractant for extraction of phospholipids from soybeans, preferably a defatted soybean material.
- the aliphatic organic solvent is preferably a saturated hydrocarbon, an alcohol, a mixed solvent of saturated hydrocarbon and alcohol, or a mixed solvent of halogenated hydrocarbon and alcohol. It is preferable that the extract be at least one of hexane, ethanol, methanol, hydrous ethanol, isopropyl alcohol, acetonitrile and acetone.
- SE may be enriched with aromatic chromophore containing compounds including the isoflavones genistein, daidzein, formononetin and biochanin and/or their glycosides, and for administration it is generally provided in association with one or more pharmaceutically acceptable carriers, excipients, auxiliaries, and/or diluents.
- Other procedures for specifically enriching or removing soybean isoflavones include differential extraction with organic solvents, based on the differing solubility of aromatic chromophore containing compounds in certain organic solvents.
- compositions of the invention may comprise any soy derived preparation extract.
- SE may also incorporate enzymatic treatment of said soybeans, or other soy plant material, whether before, during or after mechanical disruption and/or chemical extraction of plants. Therefore, enzymatic treatment of the plant material is specifically contemplated herein.
- Enzymes used for said extraction include cellulase, hemicellulase, pectinase, protease and other carbohydrases.
- the use of enzymatic treatment may be carried out under various moisture and temperature conditions suitable for optimal enzyme activity as known in the art.
- compositions comprising as an active ingredient a soy derived fraction which is either soy derived polar or non-polar fraction.
- Said polar and/ or non-polar fractions may be in particular embodiments soy extract fractions presently designated as Ml and OS respectively.
- Ml and OS soy extract fractions presently designated as Ml and OS respectively.
- the Ml (polar) fraction can be obtained by standard hydro- alcoholic extraction of defatted soy milk to food soy protein.
- Specific constituents of Ml and OS fractions may be identified using qualitative LC-MS, J H-NMR analyses.
- LC-MS analysis the Ml fraction is dissolved in DMSO and analyzed on C-18 reversed column and polar mobile phase consisting of water (modified with ammonium formate) and methanol.
- ⁇ - ⁇ analysis - the Ml fraction is dissolved in different solvents. According to both analyses, Ml is characterized by typical phosphatidylcholine (PC) and phosphatidylinositol (PI) content, in declining order.
- PC phosphatidylcholine
- PI phosphatidylinositol
- Ml is characterized by a highly heterogeneous content of phospholipids and phosphatides. Ml is predominantly enriched in phosphatidylcholine (PC) and phosphatidylinositol (PI).
- the MI fraction which is derived from aqueous-ethanol extraction left after the solvent extraction as detailed above, contains isoflavones, sugars (oligo-, di-, mono-), and lipids (including - phosphatides, phytosterols, saponins).
- the OS (non-polar) fraction is dissolved in chloroform and analyzed on reversed column C-18 and non-polar mobile phase consisting of methanol and ethyl acetate.
- the OS fraction predominantly contains glycerides and phospholipids, in declining order.
- OS is mainly enriched in phosphatidic acid (PA), phosphatidylethanolamine (PE) and phosphatidylcholine (PC).
- PA phosphatidic acid
- PE phosphatidylethanolamine
- PC phosphatidylcholine
- OS and Ml fractions are distinct by ratios of various phosphatides.
- the OS fraction derived from the solvent extraction of soybeans into oil, contains tri- and di -glycerides, free fatty acids & phosphatides.
- compositions of the present invention may comprise not only natural but also synthetic Ml or OS fractions or any partial constituents thereof or any combination of said constituents.
- compositions and methods of the invention relate to compositions comprising as an active ingredient at least one of natural or synthetic plant sterols, lunasin peptide/s and extract of a plant from the genus Moringa or any combinations thereof and in addition, the Ml fraction of a soy extract.
- compositions of the invention comprising at least one of natural or synthetic plant sterols, lunasin peptide/s and extract of a plant from the genus Moringa or any combinations thereof and a soy derived polar fraction (designated Ml) may comprise at least one of phospholipids, phosphatides or a combination thereof.
- compositions may comprise phosphatides may comprise characteristic of the polar fraction Ml, which are any one of phosphatidylcholine (PC), phosphatidylinositol (PI) or a combination thereof.
- PC phosphatidylcholine
- PI phosphatidylinositol
- compositions of the present invention may comprise at least one of natural or synthetic plant sterols, lunasin peptide/s and extract of a plant from the genus Moringa or any combinations thereof and in addition, a soy derived non-polar fraction (OS) comprising at least one of glycerides, and further phospholipids and phosphatides are any one of phosphatidic acid (PA), phosphatidylethanolamine (PE) and phosphatidylcholine (PC), which are characteristic of OS.
- OS soy derived non-polar fraction
- PA phosphatidic acid
- PE phosphatidylethanolamine
- PC phosphatidylcholine
- compositions according to the invention comprising as an active ingredient at least one of natural or synthetic plant sterols, lunasin peptide/s and extract of a plant from the genus Moringa or any combinations thereof and in addition, the OS soy extract.
- compositions comprising as an active ingredient a combination of the Ml and OS soy extract fractions.
- composition of the invention may comprise as an active ingredient at least one of natural or synthetic plant sterols, lunasin peptide/s and extract of a plant from the genus Moringa or any combinations thereof, and at least one polyethoxylated castor oil or any derivative thereof.
- compositions comprising as an active ingredient a combination of at least one of natural or synthetic plant sterols, lunasin peptide/s and extract of a plant from the genus Moringa or any combinations thereof and at least one polyethoxylated castor oil or any derivative thereof.
- composition of the invention may comprise as an active ingredient at least one natural or synthetic plant sterols, specifically, CardioAid and at least one polyethoxylated castor oil or any derivative thereof.
- composition of the invention may comprise at least one lunasin peptide/s and at least one polyethoxylated castor oil or any derivative thereof.
- composition of the invention may comprise at least one extract of a plant from the genus Moringa or any combinations thereof and at least one polyethoxylated castor oil or any derivative thereof.
- the optional component consisting of adjuvants namely at least one adjuvant selected from group of polyethylene glycol, polyethoxylated castor oil; beta cyclo dextrin or a derivative thereof; may be a polyethoxylated castor oil that is Cremophore EL (C:E).
- Castor oil as meant herein relates to a natural vegetable oil obtained from seeds of the castor oil plant (Ricinus communis).
- Castor oil, or synthetic castor oil derivatives such as polyethoxylated castor oil are available over-the-counter for use as laxatives, and were also approved for human use as vehicles for oral and intravenous administration of water-insoluble therapeutic compounds. In naturopathy, castor oil has been promoted as a treatment for a variety of human health conditions.
- Ethoxylated Castor ⁇ also Polyoxyl Castor Oil, Polyoxyl Castor Oil, Polyethylene Glycol Castor Oil, Castor Oil Ethoxylates and Polyethoxylated Castor Oil
- Polyoxyethylene castor oil derivatives are complex mixtures of various hydrophobic and hydrophilic components.
- the hydrophobic constituents comprise about 80% of the total mixture, the main component being glycerol polyethylene glycol ricinoleate.
- Other hydrophobic constituents include fatty acid esters of polyethylene glycol along with some unchanged castor oil.
- the hydrophilic part consists of polyethylene glycols and glycerol ethoxylates.
- ethoxylated castor oil is also referred to as a mixture of triricinoleate esters of ethoxylated glycerol with small amounts of polyethyleneglycol (macrogol) ricinoleate and the corresponding free glycols.
- Polyoxyethylene castor oil derivatives are nonionic surfactants used in oral, topical and parenteral pharmaceutical formulations.
- the derivative of polyethoxylated castor oil of the compositions of the invention is Cremophor EL or more recently Kolliphor EL (registered trademark of BASF Corp) and also polyoxyethylenglyceroltriricinoleat 35 (DAC), polyoxyl 35 castor oil (USP/NF).
- Cremophor EL (herein also C:E) is obtained by reacting ethylene oxide with castor oil (molar ratio 35: 1).
- the main component of C:E is glycerol-polyethylene glycol ricinoleate, which, together with fatty acid esters of polyethylene glycol, represents the hydrophobic part of the product.
- the smaller, hydrophilic part consists of polyethylene glycols and ethoxylated glycerol. Due to this particular composition, C:E is capable to stabilize emulsions of nonpolar materials in aqueous solutions, thus making it a universal nonionic emulsifying agent for the pharmaceutical, cosmetic and food industries. Some anti-neoplastic agents (e.g. Taxol, Taxotere) were formulated in C:E and ethanol to enhance drug solubility and therapeutic effect. When describing the present invention, the terms emulsifying agents, excipient and surfactant are interchangeable.
- emulsifying agents, excipient and surfactant are interchangeable.
- Cremophor EL (CAS Registry number 63393-92-0) (Synonyms Macrogolglycerol ricinoleate, PEG-35 castor oil, Polyoxyl 35 hydrogenated castor oil, Polyoxyl-35 castor oil ) denotes a derivative of castor oil or an ester with ethoxylated glycerol of Molecular Formula C5H12O4; Molecular Weight:136.14638 [g/mol] ; Formal Charge:0; Boiling Point 290°C at 760 mmHg; Flash Point 160°C.
- derivative of polyethoxylated castor oil applicable in the present invention may be at least one of Cremophor® EL (Polyoxyl 35 Castor Oil, NF) and Cremophor® RH40 (Polyoxyl 40 Hydrogenated Castor Oil, NF), also referred to as Kolliphor ® RH 40.
- the term C:E designates preparation of Cremophor EL in ethanol (1 :1 v/v) and it represents 30% v/v when emulsified in PBS.
- the Cremophore EL may be dissolved in or combined with EtOH. More specifically, the C and the E (EtOH) ratio may range between about 1 :0 to 1:999999, more specifically, 1 :1 to 1 :99999, 1 : 1 to 1 :9999, 1 : 1 to 1 :999, 1: 1 to 1 :99, 1: 1 to 1 :9. Nevertheless, it should be appreciated that the Cremophor of the invention may be prepared or dissolved in any other solvent.
- the combined composition of the invention may comprise at least one of natural or synthetic plant sterols, lunasin peptide/s and extract of a plant from the genus Moringa or any combinations thereof and an adjuvant such as any one of polyethylene glycol or beta cyclo dextrin or any derivative thereof.
- adjuvant refers to a pharmacological agent that modifies and enhances the effect of other active agents. It should be noted that the specific adjuvants indicated herein were now surprisingly shown by the invention as exerting a therapeutic effect/s as active main ingredients and not only as additional enhancing or inherent agents.
- the combined compositions of the invention may comprise an adjuvant such as polyethylene glycol or any derivatives thereof.
- Polyethylene glycol (PEG) is a polyether compound PEG is also known as polyethylene oxide (PEO) or polyoxyethylene (POE), depending on its molecular weight.
- PEG, PEO, or POE refers to an oligomer or polymer of ethylene oxide.
- the three names are chemically synonymous, PEG refer to oligomers and polymers with a molecular mass below 20,000 g/mol, PEO to polymers with a molecular mass above 20,000 g/mol, and POE to a polymer of any molecular mass.
- PEG and PEO are liquids or low-melting solids, depending on their molecular weights.
- PEGs are prepared by polymerization of ethylene oxide and are commercially available over a wide range of molecular weights from 300 g/mol to 10,000,000 g/mol. While PEG and PEO with different molecular weights find use in different applications, and have different physical properties (e.g. viscosity) due to chain length effects, their chemical properties are nearly identical.
- Different forms of PEG are also available, depending on the initiator used for the polymerization process - the most common initiator is a monofunctional methyl ether PEG, or methoxypoly(ethylene glycol), abbreviated mPEG.
- Lower- molecular- weight PEGs are also available as purer oligomers, referred to as monodisperse, uniform, or discrete. PEG is used as an excipient in many pharmaceutical products.
- PEG is soluble in water, methanol, ethanol, acetonitrile, benzene, and dichloromethane, and is insoluble in diethyl ether and hexane. It is coupled to hydrophobic molecules to produce non- ionic surfactants.
- polyethylene glycol allows a slowed clearance of the carried protein from the blood. This makes for a longer- acting medicinal effect and reduces toxicity, and allows longer dosing intervals.
- PEG is used as an excipient in many pharmaceutical products.
- Lower-molecular-weight variants are used as solvents in oral liquids and soft capsules, whereas solid variants are used as ointment bases, tablet binders, film coatings, and lubricants.
- Polyethylene GlycoP (CAS Registry number 25322- 68-3; CA Index Name: Poly(oxy-l,2-ethanediyl), a-hydro-co-hydroxy-) denotes an addition polymer of ethylene oxide and water, represented by the formula H(OCH2CH2)nOH, denoted herein as Formula I:
- the average molecular weight is not less than 95.0% and not more than 105.0% of the labeled nominal value if the labeled nominal value is below 1000; it is not less than 90.0% and not more than 110.0% of the labeled nominal value if the labeled nominal value is between 1000 and 7000; it is not less than 87.5% and not more than 112.5% of the labeled nominal value if the labeled nominal value is above 7000. It may contain a suitable antioxidant.
- PEG designates preparation of PEG in ethanol (1 : 1 v/v) and it represents 30% v/v when emulsified in PBS.
- the PEG may be dissolved in or combined with EtOH. More specifically, the PEG and the E (EtOH) ratio may range between about 1 :0 to 1 :999999, more specifically, 1 :1 to 1 :99999, 1: 1 to 1 :9999, 1 :1 to 1 :999, 1 : 1 to 1 :99, 1 :1 to l :9.
- the PEG of the invention may be prepared or dissolved in any other solvent.
- Still further alternative embodiments of the invention encompass use of at least one of natural or synthetic plant sterols, lunasin peptide/s and extract of a plant from the genus Moringa or any combinations thereof and an adjuvant such as beta cyclo dextrin (BCD).
- Cyclodextrins (sometimes called cycloamyloses) are a family of compounds made up of sugar molecules bound together in a ring (cyclic oligosaccharides). Cyclodextrins are produced from starch by means of enzymatic conversion. They are used in food, pharmaceutical, drug delivery, and chemical industries, as well as agriculture and environmental engineering.
- Cyclodextrins are composed of 5 or more a-D-glucopyranoside units linked l->4, as in amylose (a fragment of starch).
- the 5- membered macrocycle is not natural.
- the largest well-characterized cyclodextrin contains 32 1,4-anhydroglucopyranoside units, while as a poorly characterized mixture, at least 150-membered cyclic oligosaccharides are also known.
- Typical cyclodextrins contain a number of glucose monomers ranging from six to eight units in a ring, creating a cone shape: a (alpha)- cyclodextrin: 6-membered sugar ring molecule; ⁇ (beta)-cyclodextrin: 7-membered sugar ring molecule; ⁇ (gamma)-cyclodextrin: 8-membered sugar ring molecule, a- and ⁇ -cyclodextrin are being used in the food industry.
- a-cyclodextrin is a soluble dietary fiber, it can be found as Alpha Cyclodextrin (soluble fiber) on the list of ingredients of commercial products.
- cyclodextrins are hydrophobic inside and hydrophilic outside, they can form complexes with hydrophobic compounds. Thus they can enhance the solubility and bioavailability of such compounds. This is of high interest for pharmaceutical as well as dietary supplement applications in which hydrophobic compounds shall be delivered.
- Alpha-, beta-, and gamma- cyclodextrin are all generally recognized as safe by the FDA. In the food industry, cyclodextrins are employed for the preparation of cholesterol free products.
- ⁇ - Cyclodextrin (CAS Registry number 7585-39-9; Synonyms Cycloheptaamylose, Cyclomaltoheptaose, ⁇ -cycloamylose, cycloheptaglucan, cycloheptaglucosan, Betadex) denotes
- a cyclodextrin composed of seven a-(l ⁇ 4) linked D-glucopyranose unitsC 4 2H7o035;
- the invention provides combined compositions comprising as active ingredients SE and Methyl-P-cyclodextrin.
- ⁇ -cyclodextrin and methyl- -cyclodextrin remove cholesterol from cultured cells.
- the methylated form ⁇ was found to be more efficient than ⁇ -cyclodextrin.
- the water-soluble ⁇ is known to form soluble inclusion complexes with cholesterol, thereby enhancing its solubility in aqueous solution.
- ⁇ is employed for the preparation of cholesterol-free products: the bulky and hydrophobic cholesterol molecule is easily lodged inside cyclodextrin rings that are then removed.
- M CD is also employed in research to disrupt lipid rafts by removing cholesterol from membranes.
- BCD designates preparation of BCD in ethanol (1: 1 v/v) and it represents 30% v/v when emulsified in PBS.
- the BCD may be dissolved in or combined with EtOH. More specifically, the BCD and the E (EtOH) ratio may range between about 1 :0 to 1 :999999, more specifically, 1 : 1 to 1 :99999, 1 : 1 to 1 :9999, 1: 1 to 1:999, 1 : 1 to 1:99, 1: 1 to 1 :9. Nevertheless, it should be appreciated that the BCD of the invention may be prepared or dissolved in any other solvent. It should be noted that the compositions of the present invention may comprise any combination, including partial combinations, of the above mentioned components.
- the combined compositions of the invention comprise at least two active agents, specifically, at least one of natural or synthetic plant sterols, lunasin peptide/s and extract of a plant from the genus Moringa or any combinations thereof and optionally, at least one of SE, beta-glycolipid/s and different adjuvants. It should be appreciated that any quantitative ratio of the combined compounds may be used.
- a quantitative ratio used between any of the compounds may be: 1 : 1, 1:2, 1 :3, 1 :4, 1:5, 1 :6, 1 :7, 1 :8, 1 :9, 1 : 10, 1 :20, 1 :30, 1 :40, 1 :50, 1 :60, 1 :70, 1 :80, 1 :90, 1 : 100, 1:200, 1 :300, 1 :400, 1500, 1 :750, 1 :1000.
- the combination of the invention comprises more than two compounds, specifically, where additional therapeutic agents are added, the quantitative ratio used may be for example, 1 : 1: 1, 1 :2:3, 1 :10:100, 1 : 10: 100: 1000 etc.
- compositions of the invention may be formulated as a food additive, food supplement or medical food.
- compositions of the invention may be further added or combined with botanical drugs, drugs or any type of pharmaceutical products.
- the combined composition of the invention may be an add-on to a food supplement, or alternatively, may be used as a food supplement.
- a food supplement the term coined by the European Commission for Food and Feed Safety, or a dietary supplement, an analogous term adopted by the US Food and Drug Administration (FDA), relates to any kind of substances, natural or synthetic, with a nutritional or physiological effect whose purpose is to supplement the normal diet. In this sense, this term also encompasses food additives and dietary ingredients.
- dietary supplement is defined as a product (other than tobacco) intended to supplement the diet that bears or contains one or more of the following dietary ingredients: a vitamin, a mineral, an herb or other botanical, an amino acid, a dietary substance for use by man to supplement the diet by increasing the total dietary intake, or a concentrate, metabolite, constituent, extract, or combination of any of the aforementioned ingredients.
- dietary supplements are meant those marketed in a form of pills, capsules, powders, drinks, and energy bars and other dose forms. Unlike drugs, however, they are mainly unregulated, i.e. marketed without proof of effectiveness or safety.
- a dietary supplement must be labeled as such and be intended for ingestion and must not be represented for use as conventional food or as a sole item of a meal or a diet.
- the combined composition of the invention may be an add-on to medical foods.
- medical foods which are foods that are specially formulated and intended for the dietary management of a disease that has distinctive nutritional needs that cannot be met by normal diet alone.
- the term medical food, as defined in the FDA's 1988 Orphan Drug Act Amendments is a food which is formulated to be consumed or administered enterally under the supervision of a physician and which is intended for the specific dietary management of a disease or condition for which distinctive nutritional requirements, based on recognized scientific principles, are established by medical evaluation.
- Medical foods are subject to the general food and safety labeling requirements of the Federal Food, Drug, and Cosmetic Act.
- Medical foods are usually classified as nutritionally complete or incomplete formulas, formulas for metabolic disorders and oral rehydration products.
- Notable examples of the above include gamma-linolenic acid (GLA) and/or a short chain omega-6 fatty acid sourced from the seeds of the borage plant for management of allergic conditions; slowly digested carbohydrates for maintenance of optimal blood sugar levels especially in patients with diabetes; and glutamine for nourishment of the gastrointestinal (GI tract) in metabolically stressed patients.
- GLA gamma-linolenic acid
- GI tract gastrointestinal
- compositions of the invention may be an add-on to a botanical drug.
- botanical drug are products that are intended for use in the diagnosis, cure, mitigation, treatment or prevention of disease in humans.
- a botanical drug product consists of vegetable materials, which may include plant materials, algae, macroscopic fungi, or combinations thereof.
- a botanical drug product may be available as (but not limited to) a solution (e.g., tea), powder, tablet, capsule, elixir, topical, or injection.
- Botanical drug products often have unique features, for example, complex mixtures, lack of a distinct active ingredient, and substantial prior human use. Fermentation products and highly purified or chemically modified botanical substances are not considered botanical drug products.
- a botanical product may be a food (including a dietary supplement), a drug (including a biological drug), a medical device (e.g., gutta-percha), or a cosmetic.
- botanical drugs may include botanical ingredients in combination with either a synthetic or highly purified drug or a biotechnology derived or other naturally derived drug.
- botanical drugs may also contain animals or animal parts (e.g., insects, annelids, shark cartilage) and/or minerals or a combination thereof.
- compositions of the present invention in the form of add-on to foods or beverages comprising high content of sugar and/or alcohol, which are associated with altered blood sugar levels, altered insulin resistance and/or hepatic function.
- compositions of the invention may be applicable for controlling blood sugar levels in a subject, wherein said control is inhibiting increase or decrease in blood sugar levels, improving glucose tolerance or altering insulin resistance state.
- compositions of the invention may be applicable for altering insulin resistance and/or hepatic function.
- compositions of the present invention are used as add-on to foods and/or beverages comprising an increased content of sugar and/or alcohol or are associated with increase in blood sugar and/or alcohol level.
- compositions of the invention may be adapted for add-on to food and/or beverage that comprise an increased content of sugar and/or alcohol or to a food or beverage that may be associated with increase in blood sugar or alcohol level via alteration of the insulin resistance state or the capability to alter alcohol metabolism by the body.
- a sugar sweetened beverage is any beverage with added sugar, including for example fruit or fruit-flavored drinks, flavored water or sodas, energy drinks (also referred to as soft drinks), as well as chocolate milk, coffees, teas and nonalcoholic wines and beers.
- added sugar sugar sweetened and high sugar content are interchangeable. Risks of weight gain, obesity and diabetes which have been linked to consumption of sweetened beverages will be discussed further below.
- An alcoholic beverage is a drink typically containing 0.1-95% alcohol, most commonly ethanol but occasionally also other alcohols.
- Alcoholic beverages include beers, wines, and spirits (distilled beverages).
- an alcoholic beverage encompasses any kind of alcohol containing beverage produced by process of fermentation or distillation or both, or any type of food or drink that directly or indirectly affect the metabolism of alcohol. Consequences of alcohol consumption, such as alcohol intoxication, hangover and liver damage, well as the link between alcohol consumption and blood sugar levels, are discussed further below.
- blood sugar level or blood glucose level imply molar concentration of glucose in the blood or serum of an organism (human or animal).
- Glucose being, with some exceptions, the primary source of energy for all body's cells, is transported from the intestines or liver to body cells via the bloodstream and is made available for cell absorption via the hormone insulin produced primarily in the pancreas.
- the body's homeostatic mechanism keeps blood glucose levels within a narrow range by means of several interacting systems, of which hormone regulation is the most important.
- catabolic hormones such as glucagon, Cortisol and catecholamines
- an anabolic hormone insulin
- Glucose levels are usually lowest in the morning, before the first meal of the day (termed the fasting level) and rise after meals for an hour or two by a few millimolar. Blood sugar levels outside the normal range may be an indicator of certain medical conditions. A persistently high level is referred to as hyperglycemia; low levels are referred to as hypoglycemia. Diabetes mellitus is characterized by persistent hyperglycemia from any of several causes, and is the most prominent disease related to failure of blood sugar regulation. Intake of alcohol causes an initial surge in blood sugar, and later tends to cause levels to fall. Certain drugs can also increase or decrease glucose levels.
- normal or recommended blood glucose levels is meant, in humans, the mean normal levels (tested while fasting) are between 70 to 100 mg/dL (3.9 to 5.5 mmol/L) and are restored within this range, if the body's homeostatic mechanism is operating normally. According to the American Diabetes Association, blood sugar levels for those without diabetes and who are not fasting should be below 125 mg/dL.
- the blood glucose target range for diabetics should be 90-130 mg/dL before meals and less than 180 mg/dL after meals.
- the normal blood glucose level in humans in fasting is approximately 4 mmol/L (4 mM or 72 mg/dL); shortly after a meal the blood glucose level may rise temporarily up to 7.8 mM (140 mg/dL); when operating normally the body restores blood sugar levels to a range of 4.4 to 6.1 mM (82 to 110 mg/dL).
- blood sugar level targets are: before meals - 4 to 7 mM for; after meals - under 9 mM for people with type 1 and 8.5 mM for people with type 2; children with type 1 diabetes have a greater upper limit for their blood sugar levels by 1 mM.
- blood glucose levels is meant arterial, venous and capillary blood glucose levels, which may be comparable or distinct, when fasting or after meals.
- the present invention may be applicable in conjunction with measurements or monitoring of blood glucose levels using any available technology, including direct-to-customer glucose blood testing, such as disposable test-strips or electronically-based devices. This is particularly applicable for subjects with diabetes or insulin resistance.
- glucose tolerance test a medical test in which glucose is given and blood samples taken afterward to determine how quickly it is cleared from the blood. This test is usually used to test for diabetes, insulin resistance, and sometimes reactive hypoglycemia and acromegaly, or rarer disorders of carbohydrate metabolism.
- OGTT oral glucose tolerance test
- Many variations of the GTT have been devised over the years for various purposes, with different standard doses of glucose, different routes of administration, different intervals and durations of sampling, and various substances measured in addition to blood glucose.
- the oral glucose challenge test is a short version of the OGTT, used to check pregnant women for signs of Gestational Diabetes. It can be done at any time of day, not on an empty stomach. The test involves 50g of glucose, with a reading after one hour.
- Blood is drawn at intervals for measurement of glucose, and sometimes insulin levels. The intervals and number of samples vary according to the purpose of the test. For simple diabetes screening, the most important sample is the 2 hour sample and the 0 and 2 hour samples may be the only ones collected. A laboratory may continue to collect blood for up to 6 hours depending on the protocol requested by the physician.
- Fasting plasma glucose (measured before the OGTT begins) should be below 6.1 mmol/L (110 mg/dL).
- Fasting levels between 6.1 and 7.0 mmol/L (110 and 125 mg/dL) are borderline ("impaired fasting glycaemia"), and fasting levels repeatedly at or above 7.0 mmol L (126 mg/dL) are diagnostic of diabetes.
- a 2 hour OGTT glucose level below 7.8 mmol/L (140 mg/dL) is normal, whereas higher glucose levels indicate hyperglycemia.
- Blood plasma glucose between 7.8 mmol L (140 mg/dL) and 11.1 mmol/L (200 mg/dL) indicate impaired glucose tolerance and levels above 11.1 mmol/L (200 mg/dL) at 2 hours confirms a diagnosis of diabetes.
- fasting should be below 5.1mmol/L; 1 hour should be below lO.Ommol/L; 2 hour should be below 8.5mmol/L.
- Glucose tolerance test is particularly relevant for the diagnosis of insulin resistance state.
- Insulin resistance describes the body's lack of sensitivity to the hormone insulin, meaning body cells such as the muscle, fat and liver cells are not adequately stimulated to take up glucose from the blood, even when insulin levels are high. This under-utilization of blood glucose results in hyperglycemia or a raised blood sugar level.
- Tests for diagnosing insulin resistance include:
- GTT Glucose tolerance testing
- the blood sugar level after two hours is usually less than 7.8 mmol L (140 mg/dl).
- a blood sugar level between 7.8 and 11.0 mmol/dl (140 to 197 mg/dl) indicates impaired glucose tolerance. If the level is over 11.1 mmol/dl (200 mg/dl), diabetes mellitus is diagnosed.
- Modified insulin suppression test For this test, patients are given 25 meg of octreotide (an inhibitor of insulin and glucagon) over 3 to 5 minutes and are then infused with somatostatin (0.27 ⁇ gm m2/min) to suppress the release of insulin and glucose into the blood.
- octreotide an inhibitor of insulin and glucagon
- somatostatin 0.27 ⁇ gm m2/min
- temporary fluctuations of blood glucose levels may develop under various conditions, among which consumption of sugar sweetened or alcoholic beverages represent a significant contributing factor.
- alteration of blood sugar levels can occur following use of medications or in other states altering the level of insulin resistance.
- Alcohol interferes with all three sources of glucose and hormones needed to maintain healthy blood glucose levels. The greatest impact is seen in those who drink heavily and on frequent basis. In heavy drinkers, glycogen stores are depleted within few hours, if their diet does not provide a sufficient amount of carbohydrates. Over time, excessive alcohol consumption can decrease insulin's effectiveness, resulting in high blood sugar levels; according to certain estimates 45% to 70% of people with alcoholic liver disease had either glucose intolerance or diabetes.
- Drinking as little as 2 ounces of alcohol on an empty stomach can lead to very low blood sugar levels. This makes alcohol an even bigger problem for people with diabetes.
- alcohol consumption encompasses the entire range of associated physiological, psychological, social conditions, i.e. social drinking, session drinking, binge drinking alcohol abuse, alcohol intoxication and alcoholism. Meaning of these terms in the present context is detailed below.
- compositions of the present invention are used for prevention or alleviation of symptoms related to a condition associated with increased or decreased blood sugar levels, wherein said condition is any one of pre-diabetes, diabetes, obesity, hepatic disorder, pancreatic dysfunction, weight gain, alcohol intoxication, alcohol withdrawal and vertigo, any condition associated with alteration of pancreatic or liver function or tissue or organ damage.
- compositions of the present invention are particularly applicable to the prevention or alleviation of symptoms related to sub-clinical conditions associated with altered insulin resistance state and/or hepatic function, such as pre-diabetes, diabetes, obesity, hepatic disorder, pancreatic dysfunction, weight gain, alcohol intoxication, alcohol withdrawal and vertigo, any condition associated with alteration of pancreatic or liver function or tissue or organ damage, and drug-induced hepatic dysfunction.
- symptoms related to sub-clinical conditions associated with altered insulin resistance state and/or hepatic function such as pre-diabetes, diabetes, obesity, hepatic disorder, pancreatic dysfunction, weight gain, alcohol intoxication, alcohol withdrawal and vertigo, any condition associated with alteration of pancreatic or liver function or tissue or organ damage, and drug-induced hepatic dysfunction.
- compositions and methods of the invention specifically, at least one of natural or synthetic sterol or a derivative or a mixture thereof, lunasin peptide or a derivative thereof; and at least one extract of a plant from the genus Moringa, are presented in an amount effective for treatment, prevention or alleviation of any of the disorders indicated herein as well as of any of any condition associated therewith.
- weight gain is meant an increase in body weight, particularly by way of increased body fat deposits (adipose tissue), than is optimally healthy.
- a person generally gains fat-related weight by increasing food consumption or by becoming physically inactive, or by both.
- energy intake exceeds energy expenditure, the body stores the excess energy in a dense high-energy form as fat.
- One pound of fat stores 3500 calories of energy, so over time, excessive energy intake and/or lack of exercise can contribute to fat gain and obesity. Having excess fat is a common condition, as much as 64% of the US adult population is considered either overweight or obese, and this percentage has increased over the last four decades. Weight gain has a latency period.
- weight gain can vary greatly depending on the following factors: energy (calorie) density of foods, exercise regimen, amount of water intake, amount of salt contained in the food, time of day eaten, age of individual, individual's country of origin, individual's overall stress level and amount of water retention in ankles/feet. Typical latency periods vary from three days to two weeks after ingestion. Weight gain is also a common side-effect of certain psychiatric medications. Weight gain is seen in certain professional sports.
- the present invention is relevant to prevention of weight gain in all its measurements and forms.
- One of the ways to assess abnormal weight is by the measurement of Body Mass Index (BMI), or Quetelet index, which is a measure of relative weight based on an individual's mass and height.
- BMI Body Mass Index
- Quetelet index Quetelet index
- compositions of the present invention are particularly applicable to prevention and reduction of symptoms of alcohol intoxication, alcohol withdrawal and vertigo.
- Symptoms of alcohol intoxication include reduced activity in the central nervous system (CNS), loose muscle tone, loss of fine motor coordination, a staggering "drunken" gait, eyes appear "glossy," pupils may be slow to respond to stimulus, pupils may become constricted, decreased heart rate, lower blood pressure and respiration rate, decreased reflex responses, slower reaction times, skin may be cool to the touch, profuse sweating, loss of fine motor coordination, or odor of alcohol on the breath. Diagnostic criteria for alcohol intoxication are detailed in the Diagnostic and Statistical Manual of Mental Disorders, Fourth Edition (DSM-IV).
- alcohol intoxication refers to a situation where the quantity of alcohol a person consumes exceeds the individual's tolerance for alcohol and thus produces, either during or shortly after drinking, clinically important psychological, behavioral or physical abnormalities, such as inappropriate aggression, and impaired judgment and social functioning.
- signs or symptoms of alcohol intoxication occur shortly after drinking: (1) slurred speech; (2) impaired motor coordination; (3) unsteady gait; (4) nystagmus (involuntary, irregular eye movement characterized by smooth pursuit of an object in one direction and saccadic movement in the other direction); (5) inattention and/or impaired memory; and (6) stupor or coma.
- Sobriety, intoxication, alcohol abuse, alcohol-related aggression or alcoholism may be measured according to one or more recognized tests, such as psychomotor tests, serum alcohol level tests, for example accepted inhalation tests, or according to DSM-IV, Alcohol Abstinence Self- Efficacy Scale, Barratt Impulsiveness Scale - 11, State-Trait Anger Expression Inventory -2, Conflict Resolution, Impulsivity and Aggression Questionnaire, Social Problem-Solving Inventory - Revised, Alcohol-Related Aggression Questionnaire, or The Alcohol Use Disorders Identification Test.
- Levels of alcohol in the body may be measured in urine, blood, breath or saliva.
- social drinking refers to the consumption of alcohol in a safe, legal and socially acceptable manner usually without the intent of reaching the point of becoming intoxicated (i.e., to achieve alcohol intoxication).
- the amount of blood alcohol which leads to intoxication varies widely between individuals, three or fewer measured drinks (or a blood alcohol level of up to 0.05%) is generally considered to be within the social drinking range.
- session drinking refers to drinking in large quantities over a single period of time, without the intention of getting heavily intoxicated.
- the focus is on the social aspects of the occasion.
- binge drinking refers to drinking alcohol solely for the purpose of intoxication, although it is quite common for binge drinking to apply to a social situation, creating some overlap in social and binge drinking.
- Alcoholism refers to a primary chronic disease known as alcohol dependence syndrome, the most severe stage of a group of drinking problems. Alcoholism is considered a progressive disease, meaning that the symptoms and effects of drinking alcohol become increasingly more severe over time.
- alcohol abuse refers to repeated drinking despite alcohol-related physical, social, psychological, or occupational problems (according to DSM-IV).
- alcohol abuse reaches the alcohol dependence stage, a person may also experience tolerance, withdrawal, and an uncontrolled drive to drink.
- after-effects of alcohol consumption specifically alcohol hangover, alcohol withdrawal or detoxification are also included, as well as any effect of the alcohol on target organs such as the liver, heart, kidney, brain, muscles, gastrointestinal tract, and any other tissue or organ that can be affected by alcohol or by compounds or states in which the metabolism of alcohol is disturbed.
- Alcohol hangover refers to physical and mental symptoms that occur within several hours after alcohol consumption, when a person's BAC is falling, and may continue for up to 24 hours thereafter. Alcohol directly promotes hangover symptoms through its effects on urine production, the gastrointestinal tract, blood sugar concentrations (i.e. hypoglycemia), sleep patterns, and biological rhythms. In addition, effects related to alcohol absence after a drinking bout (i.e., withdrawal), alcohol metabolism, and other factors (e.g., biologically active, non- alcohol compounds in beverages, use of other drugs, certain personality traits and a family history of alcoholism) also may contribute to the hangover condition. The particular set of symptoms experienced and their intensity may vary from person to person and from occasion to occasion. In addition, hangover characteristics may depend on the type of alcoholic beverage consumed and the amount a person drinks.
- Physical symptoms of a hangover include fatigue, headache, increased sensitivity to light and sound, redness of the eyes, muscle aches, and thirst. Signs of increased sympathetic nervous system activity can accompany a hangover, including increased systolic blood pressure, rapid heartbeat (i.e., tachycardia), tremor, and sweating. Mental symptoms include dizziness, sense of the room spinning (i.e., vertigo), and possible cognitive and mood disturbances, especially depression, anxiety, and irritability.
- Alcohol-induced hypoglycemia generally occurs after binge drinking over several days in alcoholics who have not been eating. In such a situation, prolonged alcohol consumption, coupled with poor nutritional intake, not only decreases glucose production but also exhausts the reserves of glucose stored in the liver in the form of glycogen, thereby leading to hypoglycemia. Because glucose is the primary energy source of the brain, hypoglycemia can contribute to hangover symptoms such as fatigue, weakness, and mood disturbances. Diabetics are particularly sensitive to the alcohol-induced alterations in blood glucose.
- compositions of the invention may be applicable for AW and AW syndrome.
- the AW or AW syndrome or alcohol detoxification refers to the state following the cessation of excessive drinking, which results from compensatory changes in the CNS that take place in response to chronically administered depressant substances (in this case, alcohol, or more specifically, ethanol). These changes include alterations in the GAB A and glutamate receptors, the two main neurotransmitters responsible for inhibitory and excitatory effects. Following chronic alcohol exposure, in an effort to counterbalance the alcohol's sedative effects, the body decreases the number or sensitivity of GABA receptors and increases the number or sensitivity of glutamate receptors.
- compositions of the present invention are applicable to prevention of vertigo, i.e. a subtype of dizziness in which a patient inappropriately experiences the perception of motion (usually a spinning motion) due to dysfunction of the vestibular system. It is often associated with nausea and vomiting as well as a balance disorder, causing difficulties with standing or walking. Dizziness and vertigo are common and affect approximately 20 -30 of the general population, they can occur in people of all ages, in women more than in men. Apart from physiological causes of vertigo, such as infections of the inner ear, concussion, migraine, epilepsy and others, excessive drinking of alcohol can also cause symptoms of vertigo.
- Examples of clinical applications using pharmaceutical compositions of the invention may include disorders such as diabetes, obesity, various hepatic disorders, disorders involving pancreatic dysfunction, insulin resistance and metabolic syndrome, and further an inflammation of pancreas, liver, muscle or the adipose tissue, other inflammatory disorders and also arrange of malignancies.
- disorders such as diabetes, obesity, various hepatic disorders, disorders involving pancreatic dysfunction, insulin resistance and metabolic syndrome, and further an inflammation of pancreas, liver, muscle or the adipose tissue, other inflammatory disorders and also arrange of malignancies.
- Other relevant disorders will be detailed further below.
- composition of the invention is used in a method for treating, preventing, ameliorating, reducing or delaying the onset of an immune -related disorder, said composition comprising a therapeutically effective amount of:
- composition of the invention may optionally further comprise at least one of:
- an immune-related disorder that is treated by compositions and method of the invention may be any one of an inflammatory disorder, an autoimmune disorder, an infectious disease and a proliferative disorder.
- compositions of the invention may further comprises at least one additional therapeutic agent.
- compositions may comprise at least one additional therapeutic agent as insulin, N-acetyl cysteine (NAC), thiamine (vitamin Bl), a benzodiazepine or any combination thereof and a tissue derived preparation or compound.
- additional therapeutic agent as insulin, N-acetyl cysteine (NAC), thiamine (vitamin Bl), a benzodiazepine or any combination thereof and a tissue derived preparation or compound.
- the combined composition of the invention may be an add-on to any type of drugs or therapeutic compounds administered orally, intravenously, intradermaly, by inhalation or intrarectaly.
- Examples of such combined compositions include, but are not limited to a tissue derived antigens, tumor associated antigens, or viral and or bacterial and or fungal and or parasitic or bacterial derived antigens, or any type of organism derived antigens.
- compositions of the invention may be add-on to any type of healthy of diseased tissue derived antigens, or any type of drug or therapeutic compound, or any type of organism derived antigens, or hormones, or cytokines, or antibody, or any type of natural or non-natural compound that may have therapeutic properties. More specifically, such add-on preparation may be used for promoting the effect of said therapeutic compound, for exerting an adjuvant effect, or for improving the therapeutic effect of said drug, compound, or antigen.
- compositions of the invention as add-on products to hormones, including but not limited to insulin, whether natural or synthetic.
- compositions of the invention may be add-on products to at least one gut hormone.
- the combined composition of the invention may be used as add-on products for concomitant administration of at least one gut hormone.
- gut hormone include Ghrelin, Cholecystokinin, Cholecystokinin, Peptide YY, Pancreatic polypeptide, Amylin, Glucose-dependent insulinotropic polypeptide, Glucagon-like peptide- 1, Glucagon-like peptide-2 and Oxyntomodulin.
- the combined composition of the invention may comprise Ghrelin.
- Ghrelin is a peptide hormone released from the stomach and liver and is often referred to as the "hunger hormone" since high levels of it are found in individuals that are fasting. Ghrelin antagonistic treatments can be used to treat illnesses such as anorexia and loss of appetites in cancer patients. Ghrelin treatments for obesity are still under intense scrutiny and no conclusive evidence has been reached. This hormone stimulates growth hormone release.
- the combined composition of the invention may further comprise Cholecystokinin. As used herein Cholecystokinin is responsible for gall bladder secretions, gastrointestinal motility as well as pancreatic exocrine secretions. Peptide YY that may be also comprised within the composition of the invention is involved mostly in satiation modulation. Still further, the combined compositions of the invention may comprise Pancreatic polypeptide.
- Pancreatic polypeptide function is most apparent in control of gastrointestinal motility and satiation.
- Amylin may be also added to the combined compositions of the invention. Amylin controls glucose homeostasis and gastric motility.
- Further embodiments relate to the addition of Glucose-dependent insulinotropic polypeptide to the combined compositions of the invention. Glucose-dependent insulinotropic polypeptide possesses an acute influence on food intake through its effects on adipocytes.
- Glucagon- like peptide- 1 may be added to the compositions of the invention. Glucagon-like peptide- 1 has an effect on incretin activity as well as satiation.
- Glucagon-like peptide-2 may be added to the compositions of the invention.
- Glucagon-like peptide-2 is responsible for gastrointestinal motility and growth.
- Further embodiments relate to the addition of Oxyntomodulin to the combined compositions of the invention. Oxyntomodulin plays a role in controlling acid secretion and satiation.
- composition of the invention may be administered as an add-on to a further therapeutic agent that may be an autologous protein-containing tissue extract, for example, colon or liver.
- a further therapeutic agent may be an autologous protein-containing tissue extract, for example, colon or liver.
- Such extract comprises disease-associated antigens that modulate the immune response in the treated subject.
- composition of the present invention is used in a method for treating liver damage and/or restoring liver function in a subject in need thereof.
- such composition may comprise as an active ingredient a therapeutically effective amount of:
- composition of the invention may optionally further comprise at least one of:
- liver disease is any one of viral, bacterial, fungal or parasitic liver disease, alcoholic or autoimmune hepatitis, alcoholic or autoimmune cirrhosis, alcoholic fatty liver disease, nonalcoholic fatty liver disease (NAFLD), liver steatosis, alcoholic or nonalcoholic steatohepatits (NASH), hepatocellular carcinoma, drug-induced liver disease and pediatric liver disease and metabolic liver disease.
- said liver disease is any one of viral, bacterial, fungal or parasitic liver disease, alcoholic or autoimmune hepatitis, alcoholic or autoimmune cirrhosis, alcoholic fatty liver disease, nonalcoholic fatty liver disease (NAFLD), liver steatosis, alcoholic or nonalcoholic steatohepatits (NASH), hepatocellular carcinoma, drug-induced liver disease and pediatric liver disease and metabolic liver disease.
- composition of the invention is used in a method for treating, preventing, ameliorating, reducing or delaying the onset of acute or chronic toxic effect of a drug and for restoring liver function.
- drugs from the group of analgesics or antipyretics that have been related to adverse effects in the liver or other forms of liver damage.
- tissue-damaging effects of hyperglycemia are well known in diabetic patients, including microvascular complications (retinopathy and nephropathy), macro vascular complications (ischaemic heart disease, vascular disease, stroke and renal artery stenosis) and neuropathies.
- microvascular complications retinopathy and nephropathy
- macro vascular complications ischaemic heart disease, vascular disease, stroke and renal artery stenosis
- neuropathies CAD.
- Microvascular tissue damage is the results of hyperglycaemia per se. Macrovascular complications are found to be associated with insulin-resistant states and hyperinsulinaemia. Due to these complications diabetes is also a most frequent cause of blindness and cardiovascular disease.
- Certain cells types are known to be vulnerable to direct damage from chronic hyperglycemia, for e.g. mesangial cells of kidney, vascular endothelial cells, pancreatic beta cells, Schwann cells and neurons.
- Alcohol affects virtually every organ and tissue in the body, with multi-factorial actions on cellular and molecular functions. Alcohol itself alters biological function by direct interaction with cellular components and also due to effect of alcohol metabolism on the systemic oxidative and inflammatory state. Alcohol metabolism produces acetaldehyde and reactive oxygen (and other) species, biochemical moieties that damage healthy tissue. Oxidative stress ensuing from these reactive oxygen and nitrogen species in many organs and tissues may vary in severity depending on the systemic inflammatory and oxidative state, and on systemic and local immune function.
- compositions of the present invention are particularly applicable to prevent liver and/or pancreatic tissue damage.
- Hazardous effects of alcohol on progressive and irreversible damage of the pancreatic (chronic pancreatitis) and liver (liver cirrhosis) tissues are well documented. There is an increased incidence of cirrhosis in diabetic patients, 80% of which have glucose intolerance.
- compositions of the present invention are intended to prevent any condition associated with alteration of pancreatic or liver function or alteration of pancreatic or liver metabolic capacity. Those conditions may include drug-induced pancreatic and liver damage, inflammatory pancreatic and liver damage resulting from infections and autoimmune disorders, pancreatic and liver malignancies and other pancreatic and liver dysfunctions.
- compositions of the present invention may be used for prevention of any target organ damage related to conditions associated with abnormal glucose homeostasis, such as prediabetes, diabetes, hepatic disorders, pancreatic dysfunction, diabetes, obesity, insulin resistance, metabolic disorders or any type of inflammation of the pancreas, liver, muscle or the adipose tissue.
- target organ damage related to conditions associated with abnormal glucose homeostasis such as prediabetes, diabetes, hepatic disorders, pancreatic dysfunction, diabetes, obesity, insulin resistance, metabolic disorders or any type of inflammation of the pancreas, liver, muscle or the adipose tissue.
- the invention provides a composition for use in treating and preventing pre-diabetes and diabetes.
- such composition may comprise as an active ingredient at least one plant sterol, specifically CardioAid.
- the plant sterols, specifically, CardioAid is present in the composition of the invention in an amount sufficient for reducing blood sugar levels.
- such composition may be an add-on to SSB in an amount sufficient for reducing and preventing the elevation in blood sugar levels associated with consumption of said SSB.
- said composition may comprise in addition to plant sterols, specifically, CardioAid, at least one of soy extracts, beta-glycolipides, and different adjuvants.
- the invention provides a composition for use in treating and preventing pre-diabetes and diabetes.
- such composition may comprise as an active ingredient at least one lunasin peptide or a derivative thereof.
- lunasin peptide is present in the composition of the invention in an amount sufficient for reducing blood sugar levels.
- such composition may be an add-on to SSB in an amount sufficient for reducing and preventing the elevation in blood sugar levels associated with consumption of said SSB. It should be noted that any of the lunasin peptides and preparation described herein before are applicable for this aspect as well.
- said composition may comprise in addition to lunasin peptide or a derivative thereof, at least one of soy extracts, beta-glycolipides, and different adjuvants. It is another important aspect of the present invention to provide a method for controlling altered blood sugar levels, altered insulin resistance and/or hepatic function, and treating an immune related disorder, treating liver damage, restoring liver function and for treating, preventing, ameliorating, reducing or delaying the onset of acute or chronic toxic effect of a drug on an organ or tissue, said method comprises providing to a subject at least one of:
- the method of the invention may optionally further comprise the step of further administering at least one of:
- the method of the invention may involves the administration of at least one plant sterol/s.
- a therapeutic method of the invention may use as a sterol derivative or mixture of sterols, a preparation of CardioaidTM comprising at least one of CardioAid-S, CardioAid-XF, CardioAid-SWD and CardioAid-SF.
- the method of the invention may involve the administration of at least one lunasin peptide/s.
- the therapeutic methods of the invention may use as a derivative of lunasin peptide, any one of Lunasin Reliv, LunaRichX and Relive.
- a therapeutic method of the invention may use as an extract of a plant from the genus Moringa, an extract of Moringa oleifera.
- the method of the invention may use in addition to at least one of natural or synthetic plant sterols, lunasin peptide/s and extract of a plant from the genus Moringa or any combinations thereof, further combinations with additional components that may be at least one of, soy extract/s (SE) natural or synthetic beta-glycolipid or any derivative thereof and at least one adjuvant selected from group of polyethylene glycol, polyethoxylated castor oil; beta cyclo dextrin or a derivative thereof.
- SE soy extract/s
- a method according to the above may use as SE fraction, at least one soy-derived polar and/or non-polar fraction.
- said therapeutic method of the invention may use a soy derived polar fraction (Ml) comprising at least one of phospholipids, phosphatides or a combination thereof.
- Ml soy derived polar fraction
- said therapeutic method of the invention may use phosphatides that are any one of phosphatidylcholine (PC), phosphatidylinositol (PI) or a combination thereof, which are characteristic of Ml.
- PC phosphatidylcholine
- PI phosphatidylinositol
- a therapeutic method of the invention may use a soy derived non-polar fraction (OS) that comprises at least one of glycerides, phospholipids and phosphatides.
- OS soy derived non-polar fraction
- said therapeutic method may use at least one of glycerides, phospholipids and phosphatides that are any one of phosphatidic acid (PA), phosphatidyl thanolamine (PE) and phosphatidylcholine (PC), which are characteristic of OS.
- PA phosphatidic acid
- PE phosphatidyl thanolamine
- PC phosphatidylcholine
- a therapeutic method of the invention may use as a natural or synthetic beta-glycolipid, any one of a glucosylceramide, glycosphingolipid, monosaccharide ceramide, galatosylceremide, lactosylceramide, gal-gal-glucosyl-ceramide, GM2 ganglioside, GM3 ganglioside, globoside or any soy derivative or a combination thereof.
- said therapeutic method may use as glucosylceramide a beta glucosylceramide (GC).
- GC beta glucosylceramide
- a therapeutic method of the invention may use as a derivative of polyethoxylated castor oil is Cremophore EL (C:E).
- compositions of the present invention are administered in an amount sufficient to cure or at least partially arrest, ameliorate, reduce or delay the onset of symptoms of a clinical condition and its complications, referred to herein as a therapeutically effective amount or dose. Amounts effective for this use will depend upon severity of the condition and the general state of a patient. Single or multiple administrations on a daily, weekly or monthly schedule can be carried out with dose levels and pattern being selected by the treating physician.
- compositions of the invention may be provided in a formulation adapted for add-on to a solid, semi-solid or liquid food, beverage, food additive, food supplement, medical food, botanical drug, drug and/or a pharmaceutical compound.
- compositions of the invention as add-on to food and/or beverage comprising an increased content of sugar and/or alcohol.
- compositions of the invention in clinical contexts wherein sugar and/or alcohol consumption is related to altered blood sugar levels, altered insulin resistance and/or hepatic function in a treated subject.
- compositions of the invention are particularly suitable for oral or mucosal administration. More specifically, oral or mucosal pharmaceutical compositions of the invention are made by combining a therapeutically effective amount of at least one at least one of natural or synthetic plant sterols, lunasin peptide/s and extract of a plant from the genus Moringa or any combinations thereof and optionally, at least one of natural or synthetic SE, natural or synthetic beta-glycolipid or any derivative thereof and at least one adjuvant selected from group of polyethylene glycol, polyethoxylated castor oil; beta cyclo dextrin or a derivative thereof and optionally at least one additional therapeutic agent, with a pharmaceutically acceptable carrier.
- the usefulness of an oral formulation requires that the active agent or combinations thereof according to the invention are bioavailable. Bioavailability of orally administered drugs can be affected by a number of factors, such as drug absorption throughout the gastrointestinal tract, stability of the drug in the gastrointestinal tract, and the first pass effect.
- compositions suitable for oral administration are typically solid dosage forms (e.g., tablets) or liquid preparations (e.g., solutions, suspensions, or elixirs).
- Solid dosage forms are desirable for ease of determining and administering dosage of active ingredient, and ease of administration, particularly administration by the subject at home.
- Solid oral dosage forms include, but are not limited to, tablets (e.g., chewable tablets), capsules, caplets, powders, pellets, granules, powder in a sachet, enteric coated tablets, enteric coated beads, and enteric coated soft gel capsules. Also included are multi-layered tablets, wherein different layers can contain different drugs.
- Solid dosage forms also include powders, pellets and granules that are encapsulated.
- the powders, pellets, and granules can be coated, e.g., with a suitable polymer or a conventional coating material to achieve, for example, greater stability in the gastrointestinal tract, or to achieve a desired rate of release.
- a capsule comprising the powder, pellets or granules can be further coated.
- a tablet or caplet can be scored to facilitate division for ease in adjusting dosage as needed.
- a tablet can be prepared by compression or by molding.
- Compressed tablets can be prepared, e.g., by compressing, in a suitable machine, the active ingredients (in a free- flowing form such as powder or granules, optionally mixed with an excipient.
- Molded tablets can be made, e.g., by molding, in a suitable machine, a mixture of the powdered combined, e.g., with no inert liquid diluent.
- Liquid dosage forms also allow subjects to easily take the required dose of active ingredient.
- Liquid preparations can be prepared as a drink, or to be administered, for example, by a naso gastric tube (NG tube).
- NG tube naso gastric tube
- Liquid oral pharmaceutical compositions generally require a suitable solvent or carrier system in which to dissolve or disperse the active agent, thus enabling the composition to be administered to a subject.
- a suitable solvent system is compatible with the active agent and non-toxic to the subject.
- liquid oral formulations use a water-based solvent.
- compositions of the invention can also optionally be formulated to reduce or avoid degradation, decomposition or deactivation of the active agents by the gastrointestinal system, e.g., by gastric fluid in the stomach.
- compositions can optionally be formulated to pass through the stomach unaltered and to dissolve in the intestines, i.e., enteric coated compositions.
- compositions of the invention can be incorporated into a pharmaceutical composition suitable for oral or mucosal administration, e.g., by ingestion, inhalation, or absorption, e. g., via nasal, intranasal, pulmonary, buccal, sublingual, rectal, dermal, or vaginal administration.
- Such compositions can include an inert diluent or an edible carrier.
- the active C:E and SE compounds can be incorporated with recipients and used in solid or liquid (including gel) form.
- Oral compositions can also be prepared using an excipient.
- Pharmaceutically compatible binding agents, and/or adjuvant materials can be included as part of the composition.
- Oral dosage forms comprising the above described combinations are provided, wherein the dosage forms, upon oral administration, provide a therapeutically effective blood level of the combined compositions to a subject. Also provided are mucosal dosage forms comprising said combinations wherein the dosage forms, upon mucosal administration, provide a therapeutically effective blood level of the combined compositions to a subject.
- the active combined compounds can be incorporated with excipients or carriers suitable for administration by inhalation or absorption, e.g., via nasal sprays or drops, or rectal or vaginal suppositories.
- the dosage forms of the present invention can be unit dosage forms wherein the dosage form is intended to deliver one therapeutic dose per administration, e.g., one tablet is equal to one dose.
- Such dosage forms can be prepared by methods of pharmacy well known to those skilled in the art.
- Typical oral dosage forms can be prepared by combining the active ingredients in an intimate admixture with at least one excipient according to conventional pharmaceutical compounding techniques. Excipients can take a wide variety of forms depending on the form of preparation desired for administration.
- excipients suitable for use in solid oral dosage forms include, but are not limited to, starches, sugars, micro-crystalline cellulose, diluents, granulating agents, lubricants, binders, and disintegrating agents.
- excipients suitable for use in oral liquid dosage forms include, but are not limited to, water, glycols, oils, alcohols, flavoring agents, preservatives, and coloring agents.
- Tablets and capsules represent convenient pharmaceutical compositions and oral dosage forms, in which case solid excipients are employed. If desired, tablets can be coated by standard aqueous or non-aqueous techniques. Such dosage forms can be prepared by any of the pharmaceutical methods known in the art. In general, pharmaceutical compositions and dosage forms are prepared by uniformly and intimately admixing the active ingredients with liquid carriers, finely divided solid carriers, or both, and then shaping the product into the desired presentation if necessary.
- compositions of the invention may be also suitable for intravenous, intramuscular, subcutaneous, intraperitoneal, parenteral, transdermal, sublingual, topical administration, or any combination thereof.
- compositions of the invention are particularly applicable to treatment of certain clinical disorders, including a hepatic disorder, pancreatic dysfunction, pre-diabetes, diabetes, obesity, insulin resistance, metabolic syndrome, alcohol intoxication, alcohol withdrawal and vertigo, an inflammation of pancreas, liver, muscle or the adipose tissue, and conditions related thereto.
- the compositions of the invention may comprise an effective amount of plant sterols, specifically, CardioAid, may be particularly suitable the treatment and prevention of pre-diabetes and diabetes.
- compositions comprising a therapeutically effective amount of at least one of natural or synthetic plant sterols, lunasin peptide/s and extract of a plant from the genus Moringa or any combinations thereof.
- these compositions may further comprise at least one of soy extract/s (SE) natural or synthetic beta-glycolipid or any derivative thereof and at least one adjuvant selected from group of polyethylene glycol, polyethoxylated castor oil; beta cyclo dextrin or a derivative thereof that are particularly applicable to methods for treating, preventing, ameliorating, reducing or delaying the onset of an immune-related disorder.
- SE soy extract/s
- therapeutic applications of pharmaceutical compositions of the invention include an inflammatory disorder, an autoimmune disorder, an infectious disease and a proliferative disorder.
- compositions of the present invention further comprise at least one additional therapeutic agent.
- additional therapeutic agent may be any one of insulin, antibodies directed to inflammatory cytokine, or antibodies such as anti TNF antibodies, statins, analgesics, chemotherapeutic agents and antibiotics.
- compositions of the invention may optionally further comprise additional therapeutic agent, wherein said additional therapeutic agent is any one of or any type of an organism-derived antigen, including viral and or bacterial and/or fungal and/or parasitic antigens, such as any type of hepatitis B or hepatitis C derived antigens, or any type of bacterial antigens.
- compositions of the invention may optionally further comprise additional therapeutic agent, wherein said additional therapeutic agent may be any one of autologous or allogeneic tissue derived proteins, antigens, any type of tissue derived material obtained either from the same or from different species.
- said tissue derived material or preparations may be obtained from a healthy or diseased tissue.
- Non-limiting examples include tumor associated tissues, blood products, tissues obtained from an individual infected with a viral or bacterial pathogen that may be combined with any composition of the invention, as described above. It is also conceived that for the purpose of specific embodiments of the compositions and methods, the combined composition of the invention may be an add-on to any type of drugs or therapeutic compounds administered orally, intravenously, intradermaly, by inhalation or intrarectaly. These combinations can be used for promoting the effect of any of the above said compounds, or for exerting an adjuvant effect, or for improving the therapeutic effect of said drug, compound, or antigen.
- compositions of the invention may optionally further comprise at least one additional therapeutic agent, said additional therapeutic agent is any one of insulin, N-acetyl cysteine (NAC), thiamine (vitamin Bl), a benzodiazepine or any combination thereof and a tissue derived preparation or compound.
- additional therapeutic agent is any one of insulin, N-acetyl cysteine (NAC), thiamine (vitamin Bl), a benzodiazepine or any combination thereof and a tissue derived preparation or compound.
- Insulin is a peptide hormone produced by pancreatic ⁇ -cells and is central to regulating carbohydrate and fat metabolism in the body. It causes cells in the skeletal muscles and fat tissue to absorb glucose from the blood. In other words, insulin is an anabolic hormone causing cells to take up energy substrates at the times of excess. Insulin acts through a complex mechanism involving protein phosphorylation and dephosphorylation, which lead to controlled activation of glycogen synthetase and pyruvate dehydrogenase and inactivation phosphofructokinase II and hormone-sensitive lipase. Complicated control mechanism steer hormone secretion such that metabolism is constantly adjusted by hormones to meet our widely varying energy intake and expenditure, assuring a constant internal milieu. Insulin action is countered by the catabolic hormones glucagon, adrenalin, noradrenalin and growth hormone, which act primarily through cyclic AMP (cAMP) and protein kinase A.
- cAMP cyclic AMP
- exogenous insulin is the predominant therapy for patients with type 1 diabetes (which do not produce insulin).
- Medical preparations of insulin are specially prepared mixtures of insulin plus other substances including preservatives, which delay absorption of insulin, adjust the pH of the solution to reduce reactions at the injection site.
- Most of the medical insulin produced today is recombinant insulin, which almost completely replaced insulin obtained from animal sources (e.g. pigs and cattle).
- animal sources e.g. pigs and cattle.
- yeast- based insulin also became available for medical use.
- insulin analogues which retain the hormone's glucose management functionality, have been developed. They are either absorbed rapidly in an attempt to mimic the real ⁇ -cell insulin (as with Lilly's lispro, Novo Nordisk's aspart and Sanofi Aventis' glulisine), or steadily absorbed after injection instead of having a 'peak' followed by a more or less rapid decline in insulin action (as with Novo Nordisk's version Insulin detemir and Sanofi Aventis's Insulin glargine), all while retaining insulin's glucose-lowering action in the human body.
- the major problem with management of insulin therapy is choosing the most appropriate insulin type and dosage/timing for each diabetic patient.
- the commonly used types are:
- intradermal, intrarectal, inhaled, intrapulmonary, or intramucosl administration of insulin or of compounds that alter insulin metabolism or that alter or potentiate its effects, whether via direct effect following systemic absorption or indirect effect following an effect on the gut associated lymphoid tissue, or any subset of cells with which they are in direct contact, can exert beneficial effect on glucose metabolism. It also has beneficial effect on the metabolic syndrome targets, such as fatty liver disease, NASH, atherosclerosis, heart disease, hyperlipidemia and diabetes.
- said additional therapeutic agent may be NAC, N-acetyl cysteine (Brand names: NAC, Mucomyst, Acetadote), which has many uses in medicine.
- NAC is used to counteract acetaminophen (Tylenol) and carbon monoxide poisoning. It is also used for chest pain (unstable angina), bile duct blockage in infants, amyotrophic lateral sclerosis (ALS, Lou Gehrig's disease), Alzheimer's disease, allergic reactions to the anti-seizure drug phenytoin (Dilantin), and an eye infection called keratoconjunctivitis.
- NAC chronic obstructive pulmonary disease
- COPD chronic obstructive pulmonary disease
- hay fever a lung condition called fibrosing alveolitis, head and neck cancer, and lung cancer.
- epilepsy ear infections; complications of kidney dialysis; chronic fatigue syndrome (CFS); an autoimmune disorder called Sjogren's syndrome; preventing sports injury complications; radiation treatment; increasing immunity to flu and H1N1 (swine) flu; and for detoxifying heavy metals such as mercury, lead, and cadmium.
- NAC is also used for preventing alcoholic liver damage, for protecting against environmental pollutants including carbon monoxide, chloroform, urethanes and certain herbicides; for reducing toxicity of ifosf amide and doxorubicin, drugs that are used for cancer treatment; as a hangover remedy; for preventing kidney damage due to certain X-ray dyes; and for human immunodeficiency virus (HIV).
- NAC intravenously
- IV for acetaminophen overdose, acrylonitrile poisoning, amyotrophic lateral sclerosis (ALS, Lou Gehrig's disease), kidney failure in the presence of liver disease (hepatorenal syndrome), chest pain in combination with nitroglycerin, heart attack in combination with nitroglycerin and streptokinase, and for helping to prevent multi-organ failure leading to death.
- NAC is sometimes inhaled or delivered through a tube in the throat to treat certain lung disorders such as pneumonia, bronchitis, emphysema, cystic fibrosis, and others.
- BZD Benzodiazepines
- BZD are psychoactive drugs whose core chemical structure is the fusion of a benzene ring and a diazepine ring, the most notable example of which is Valium.
- BZD enhance the effect of the neurotransmitter GABA at the GABAA receptor, resulting in sedative, hypnotic (sleep-inducing), anxiolytic (anti-anxiety), euphoric, anticonvulsant, and muscle relaxant properties; also seen in the applied pharmacology of high doses of many shorter- acting BZD are amnesic-dissociative actions. These properties make BZD useful in treating anxiety, insomnia, agitation, seizures, muscle spasms, AW and as a premedication for medical or dental procedures.
- the additional therapeutic agent may be an immunomodulatory antibody being administered orally, intravenously, intrarectaly, by inhalation or intradermally.
- immunomodulatory antibodies may include, but are not limited to, anti TNF antibodies, both chimeric or humanized, anti-integrin antibodies, or any type of antibody.
- These antibodies may be combined with the combined composition of the invention and/or with any of the above compounds for prevention or amelioration of toxicity or unwanted side effects of sugar, alcohol or any drug.
- these antibodies may be combined with the compositions of the invention and/or any of the compounds described above for augmenting the beneficial effects of these antibodies or of any of the compounds described herein above.
- an additional therapeutic agent may be Vitamin B l.
- Vitamin B l also thiamine or thiamin, i.e. sulfur-containing vitamin
- Vitamin B l is a water-soluble vitamin of the B complex. Its phosphate derivatives are involved in many cellular processes. The best-characterized form is thiamine pyrophosphate (TPP), a coenzyme in the catabolism of sugars and amino acids. Thiamine is used in the biosynthesis of the neurotransmitter acetylcholine and gamma- aminobutyric acid (GAB A). Vitamin B is synthesized only in bacteria, fungi, and plants, animals must obtain it from their diet, and thus, for them, it is an essential nutrient.
- TPP thiamine pyrophosphate
- GAB A gamma- aminobutyric acid
- alcoholics may have thiamine deficiency due to:
- liver thiamine stores are reduced due to hepatic steatosis or fibrosis.
- Vitamin Bl supplementation is one of the therapeutic approaches to AW syndrome. Following improved nutrition and the removal of alcohol consumption, certain impairments linked with thiamine deficiency are reversed, in particular poor brain functionality.
- compositions of the present invention are applied in various therapeutic methods for controlling altered insulin resistance and/or hepatic function.
- therapeutic methods of the invention may be applied for treating liver damage and/or restoring liver function in a subject in need thereof.
- the method comprise the step of method comprising the step of administering a therapeutically effective amount of:
- the method of the invention may further comprise the administration of at least one of: II. at least one of: (d) at least one soy extract (SE) or any fraction thereof ;_(e) at least one natural or synthetic beta-glycolipid or any derivative thereof ;_(f) at least one adjuvant selected from group of polyethylene glycol, polyethoxylated castor oil; beta cyclo dextrin or a derivative thereof; and III. any combination of (a), (b) and (c) and optionally with any combination of (d),(e) and (g); or any composition comprising the same.
- compositions are applicable to liver diseases which is any one of viral, bacterial, fungal or parasitic liver disease, alcoholic or autoimmune hepatitis, alcoholic or autoimmune cirrhosis, alcoholic fatty liver disease, nonalcoholic fatty liver disease (NAFLD), liver steatosis, alcoholic or nonalcoholic steatohepatits (NASH), hepatocellular carcinoma, drug- induced liver disease and pediatric liver disease and metabolic liver disease.
- liver diseases which is any one of viral, bacterial, fungal or parasitic liver disease, alcoholic or autoimmune hepatitis, alcoholic or autoimmune cirrhosis, alcoholic fatty liver disease, nonalcoholic fatty liver disease (NAFLD), liver steatosis, alcoholic or nonalcoholic steatohepatits (NASH), hepatocellular carcinoma, drug- induced liver disease and pediatric liver disease and metabolic liver disease.
- the invention provides compositions comprising Moringa or any extracts or preparations or combinations thereof for treating the above-hepatic disorders, specifically, immune-hepatitis, NASH, NAFLD Ash and hepatocellular carcinoma, drug-induced liver disease and pediatric liver disease and metabolic liver disease.
- Moringa preparations combined with specific soy extracts, namely, Ml and OS extracts exhibited synergistic protective effect on immune -hepatitis.
- the invention specifically provides combined synergistic compositions comprising an effective amount of Moringa preparations and soy extracts useful in treating any of the above hepatic disorders as well as any immune mediated or immune-associated disorder, including infectious, inflammatory, or malignant disorders.
- compositions of the invention will form basis for preparation of "safe drugs".
- the combined compositions comprising at least one of natural or synthetic plant sterols, lunasin peptide/s and extract of a plant from the genus Moringa or any combinations thereof and optionally, additional components that may be at least one of, soy extract/s (SE) natural or synthetic beta-glycolipid or any derivative thereof and at least one adjuvant selected from group of polyethylene glycol, polyethoxylated castor oil; beta cyclo dextrin or a derivative thereof and any type of therapeutic compound or food, or any ingredient will provide protection against any type of toxicity or side effect of said drugs, and against any type of target organ toxicity.
- SE soy extract/s
- such combined compositions may enhance and augment additively or synergistically, the effects of drugs or compounds. These beneficial effects may act via augmenting of the mechanism of action of or via an indirect adjuvant effect, for example by activating other
- compositions of the invention are also applicable to methods for treating, preventing, ameliorating, reducing or delaying the onset of acute or chronic toxic effect of a drug on any body organ and for restoring liver function wherein the drug induces liver injury.
- compositions of the invention may be administered concomitantly or simultaneously, the latter also include administrations in the same formulation.
- the present invention further provides pharmaceutical compositions for treating, preventing, ameliorating, reducing or delaying the onset of acute or chronic toxic effect of an analgesic or an antipyretic drug in a subject in need thereof.
- pharmaceutical compositions of the invention may be used for treating and preventing any type of liver insult selected from infectious metabolic, toxic, immune, or perfusion or blood flow related hepatic injury.
- Pharmaceutical compositions of the invention may comprise as an active ingredient a therapeutically effective amount of at least one of natural or synthetic plant sterols, lunasin peptide/s and extract of a plant from the genus Moringa or any combinations thereof.
- compositions may further comprise a combination of additional components that may be at least one of, soy extract/s (SE) natural or synthetic beta-glycolipid or any derivative thereof and at least one adjuvant selected from group of polyethylene glycol, polyethoxylated castor oil; beta cyclo dextrin or a derivative thereof, and optionally at least one additional therapeutic agent, with a pharmaceutically acceptable carrier.
- SE soy extract/s
- said therapeutic agent may be an analgesic or an antipyretic drug, such as for example an inducer or inhibitor of Cytochrom P-450 selected from the group consisting of: Acetaminophen, Phenobarbital, Phenytoin, Carbamazepine, Primidone, Ethanol, Glucocorticoids, Rifampin, Griseofulvin, Quinine, Omeprazole, Amiodarone, Cimetidine, Erythromycin, Grape fruit, Isoniazid, Ketoconazole, Metronidazole, Sulfonamides, Chlorpromazine, phenylbutazone, halogenated anesthetic agents, sulindac, Dapsone, INH, halothane, amoxicillin-clavulanic acid, phenobarbital, Para-amino salicylate, Clofibrate, Procainamide, Gold salts, propylthiouracil, chloramphenicol,
- compositions of the invention are intended for treating, preventing, ameliorating, reducing or delaying the onset of acute or chronic toxic effect of the analgesic drug N-(4-hydroxyphenyl) ethanamide, known as acetaminophen (paracetamol).
- N-(4-hydroxyphenyl) ethanamide Paracetamol or acetaminophen is a widely used over-the- counter analgesic (pain reliever) and antipyretic (fever reducer). It is commonly used nonsteroidal analgesic agent for the relief of fever, headaches, and other minor aches and pains, and is a major ingredient in numerous cold and flu remedies.
- acetaminophen has fewer gastro-intestinal side effects than aspirin, another commonly used non-steroidal analgesic agent, acute and chronic acetaminophen toxicity can result in gastro-intestinal symptoms, severe liver damage, and even death.
- the precise intermediates in the acetaminophen toxic metabolite pathway are not yet known. As indicated herein before, it had been thought that when acetaminophen was ingested, the Cytochrom P-450 dependent enzyme system of the liver produced a potentially toxic metabolite of acetaminophen which was the cause of acetaminophen toxicity.
- the acute or chronic toxic effect of acetaminophen treated by the combined composition of the invention may be any one of drug induced liver injury (DILI), drug-induced acute steatosis, cytotoxic hepatocellular injury, acute liver failure (ALF), reperfusion injury, ischemic liver disease and acute cholestatic injury.
- DILI drug induced liver injury
- ALF acute liver failure
- reperfusion injury ischemic liver disease and acute cholestatic injury.
- the pharmaceutical combined composition of the invention is particularly applicable for treating, preventing, ameliorating, reducing or delaying the onset of drug induced liver injury (DILI), caused by acetaminophen.
- DILI drug induced liver injury
- Cytochrome P-450 inducing or inhibiting drugs may lead to different hepatic injuries, and therefore, may be prevented or treated by the combined compositions of the invention.
- chlorpromazine, phenylbutazone, halogenated anesthetic agents and sulindac may cause fever, rash and eosinophilia.
- Dapsone may lead to sulfone syndrome (i.e., fever, rash, anemia, and jaundice), INH (Isoniazid (Laniazid, Nydrazid), also known as isonicotinylhydrazine (INH) and halothane may cause acute viral and or bacterial and or fungal and or parasitic hepatitis, Chlorpromazine, erythromycin, amoxicillin-and clavulanic acid may lead to obstructive jaundice.
- INH Isoniazid (Laniazid, Nydrazid)
- IH isonicotinylhydrazine
- halothane may cause acute viral and or bacterial and or fungal and or parasitic hepatitis
- Chlorpromazine, erythromycin, amoxicillin-and clavulanic acid may lead to obstructive jaundice.
- Phenytoin, carbamazepine, Phenobarbital and primidone may cause anticonvulsant hypersensitivity syndrome (i.e., triad of fever, rash, and liver injury), Para-amino salicylate, phenytoin, sulfonamides, may lead to serum sickness syndrome, Clofibrate may lead to Muscular syndrome (i.e., myalgia, stiffness, weakness, elevated creatine kinase level), Procainamide may cause Antinuclear antibodies (ANAs), Gold salts, propylthiouracil, chlorpromazine and chloramphenicol may cause marrow injury.
- anticonvulsant hypersensitivity syndrome i.e., triad of fever, rash, and liver injury
- Para-amino salicylate, phenytoin, sulfonamides may lead to serum sickness syndrome
- Clofibrate may lead to Muscular syndrome (i.e., myalgia, stiffness, weakness, elevated
- Drugs such as Amiodarone and nitrofurantoin may be lead to associated pulmonary injury and Gold salts, methoxyflurane, penicillamine, paraquat may also lead to Associated renal injury. Tetracycline may cause Fatty liver of pregnancy, Contraceptive and anabolic steroids and rifampin may cause bland jaundice, Aspirin may cause Reye syndrome, and Sodium valproate may lead to Reye like syndrome.
- acute hepatocellular injuries caused by drugs may be treated or prevented by the combined compositions of the invention.
- acute viral and or bacterial and or fungal and or parasitic hepatitis-like picture may be caused by INH, halothane, diclofenac and troglitazone.
- Mononucleosis like picture may be a result of using phenytoin, sulfonamides or dapsone.
- Chronic hepatocellular injury may be a result of Pemoline or methyldopa.
- Massive necrosis may be a result of using acetaminophen, halothane or diclofenac.
- Steatosis may also be a result of using different drugs, for example, Macro vesicular steatosis may be caused by Alcohol, methotrexate, corticosteroids, minocycline, nifedipine and TPN, Microvesicular steatosis may be caused by alcohol, valproic acid, tetracycline and piroxicam. Steatohepatitis may be a result of Amiodarone, nifedipine, synthetic estrogens and didanosine. Pseudoalcoholic injury may be caused by Amiodarone, Acute cholestasis maybe a result of using Amoxicillin-clavulanic acid, erythromycin and sulindac.
- Macro vesicular steatosis may be caused by Alcohol, methotrexate, corticosteroids, minocycline, nifedipine and TPN
- Microvesicular steatosis may be caused by alcohol,
- Chronic cholestasis may be caused by Chlorpromazine, sulfamethoxazole-trimethoprim, tetracycline or ibuprofen.
- Granulomatous hepatitis may be a result of using Carbamazepine, allopurinol and hydralazine.
- Vascular injury may be caused by steroids, Neoplasia may be a result of using Contraceptives or anabolic steroids.
- Adenoma may be caused by steroids, Angiosarcoma may be a result of Vinyl chloride.
- Hepatocellular carcinoma may be caused by Anabolic steroids, aflatoxin, arsenic or vinyl chloride.
- a drug such as Amoxicillin may cause hepatic dysfunction including jaundice, hepatic cholestasis, and acute cytolytic hepatitis.
- Statins are among the most widely prescribed medications in the western world.
- the use of statins/HMG-CoA reductase inhibitors is associated with biochemical abnormalities of liver function, and thus may be also prevented or treated by the combined composition of the invention.
- Moderate elevations of serum transaminase levels ( ⁇ 3 times the upper limit of the reference range) have been reported following initiation of therapy and are often transient. Elevations are not accompanied by any symptoms and do not require interruption of treatment.
- Persistent increases in serum transaminase levels (>3 times the upper limit of the reference range) occur in approximately 1 % of patients, and these patients should be monitored until liver function returns to normal after drug withdrawal.
- Active liver disease or unexplained transaminase elevations are contraindications to use of these drugs. Patients with a recent history of liver disease or persons who regularly consume alcohol in large quantities, should use statins in a regulated manner.
- the combined compositions of the invention may also be applicable for preventing and treating liver injury caused by Rifampin.
- Rifampin is usually administered with INH.
- rifampin may cause mild hepatitis, but this is usually in the context of a general hypersensitivity reaction. Fatalities associated with jaundice have occurred in patients with liver disease and in patients taking rifampin with other hepatotoxic agents. Careful monitoring of liver function (especially SGPT/SGOT) should be performed prior to therapy and then every 2-4 weeks during therapy.
- hyper-bilirubinemia resulting from competition between rifampin and bilirubin for excretory pathways of the liver can occur in the early days of treatment. Isolated cholestasis also may occur.
- the combined compositions of the invention may be applicable for preventing or treating liver damage caused by Valproic acid and divalproex sodium. More specifically, microvesicular steatosis is observed with alcohol, aspirin, valproic acid, amiodarone, piroxicam, stavudine, didanosine, nevirapine, and high doses of tetracycline. Prolonged therapy with methotrexate, INH, ticrynafen, perhexiline, enalapril, and valproic acid may lead to cirrhosis. Valproic acid typically causes microsteatosis.
- This drug should not be administered to patients with hepatic disease and may be used with caution in patients with a prior history of hepatic disease.
- Those at particular risk include children younger than 2 years, those with congenital metabolic disorders or organic brain disease, and those with seizure disorders treated with multiple anticonvulsants.
- Hepatic failures resulting in fatalities have occurred in patients receiving valproic acid. These incidents usually occur during the first six months of treatment and are preceded by nonspecific symptoms such as malaise, weakness, lethargy, facial edema, anorexia, vomiting, and even loss of seizure control.
- compositions of the invention may also be used for preventing or treating liver damage caused by using herbs.
- Senecio/crotalaria can cause venoocclusive disease.
- Germander in teas is used for its anticholinergic and antiseptic properties. Jaundice with high transaminase levels may occur after two months of use, but it disappears after stopping the drug.
- Chaparral is used for a variety of conditions, including weight loss, cancer, and skin conditions. It may cause jaundice and fulminant hepatic failure. Chinese herbs have also been associated with hepatotoxicity.
- compositions and combined compositions of the invention may also be applicable in treating liver damage caused by recreational drugs. More specifically, Ecstasy is an amphetamine used as a stimulant and may cause hepatitis and cirrhosis. Cocaine abuse has been associated with acute elevation of hepatic enzymes. Liver histology shows necrosis and microvascular changes.
- the pharmaceutical composition of the invention is intended for treating, preventing, ameliorating, reducing or delaying the onset of acute or chronic toxic effect of insulin.
- composition and combined compositions of the invention is particularly suitable for oral or mucosal administration.
- the usefulness of an oral formulation requires that the active agent or combinations of the invention be bioavailable.
- compositions are applicable to counteract toxic effects of analgesic or antipyretic drugs given in a separate formulation without jeopardizing their beneficial therapeutic effects. More specifically, such compositions may be administered concomitantly with at least one additional therapeutic agent selected from analgesic or antipyretic drug.
- Such analgesic or antipyretic drug may be according to certain embodiments, an inducer or inhibitor of Cytochrom P-450 selected from the group consisting of: Acetaminophen, Phenobarbital, Phenytoin, Carbamazepine, Primidone, Ethanol, Glucocorticoids, Rifampin, Griseofulvin, Quinine, Omeprazole, Amiodarone, Cimetidine, Erythromycin, Grape fruit, Isoniazid, Ketoconazole, Metronidazole, Sulfonamides, Chlorpromazine, phenylbutazone, halogenated anesthetic agents, sulindac, Dapsone, INH, halothane, amoxicillin-clavulanic acid, phenobarbital, Para-amino salicylate, Clofibrate, Procainamide, Gold salts, propylthiouracil, chloramphenicol, nitrofurantoin, me
- therapeutic methods of the invention are implemented for the prevention or alleviation of symptoms related to a condition associated with altered blood sugar levels, altered insulin resistance and/or hepatic function, wherein said condition is any one of pre-diabetes, diabetes, obesity, hepatic disorder, pancreatic dysfunction, weight gain, alcohol intoxication, alcohol withdrawal and vertigo, any condition associated with alteration of pancreatic or liver function or tissue or organ damage, and drug-induced hepatic dysfunction.
- therapeutic methods of the invention are implemented for treating a subject suffering from a disorder associated with altered insulin resistance and/or hepatic function.
- therapeutic methods of the invention are implemented for the treatment of any one of a hepatic disorder, pancreatic dysfunction, diabetes, obesity, insulin resistance, metabolic syndrome, alcohol intoxication, alcohol withdrawal and vertigo, an inflammation of pancreas, liver, muscle or the adipose tissue, inflammatory disorder and a malignancy.
- malignancy applies to any clinical condition that becomes progressively worse. Malignancy is most commonly used as a characteristic of cancers of various types. Malignancy refers to the features of uncontrolled growth, lack of controlled cell death (apoptosis), which are usually associated with respective changes in the genetic makeup of cells. Malignancy further refers to the metastatic or invasive potential of cancer cells, and further to their resistance to treatment, and potential recurrence of cancer cells after all detectable traces of them have been removed or destroyed.
- treatment or prevention refers to the complete range of therapeutically positive effects of administrating to a subject including inhibition, reduction of, alleviation of, and relief from, a condition, illness, symptoms or undesired side effects thereof.
- treatment or prevention of recurrence of a disease in response to a treatment with a non-effective, or deleterious therapeutic agent and prevention or postponement of disease development, prevention or postponement of development of symptoms and/or a reduction in the severity of such symptoms that will or are expected to develop.
- ameliorating existing symptoms preventing- additional symptoms and ameliorating or preventing the underlying metabolic causes of symptoms.
- inhibition, moderation, reduction or attenuation relate to the retardation, restraining or reduction of a process by any one of about 1% to 99.9%, specifically, about 1% to about 5%, about 5% to 10%, about 10% to 15%, about 15% to 20%, about 20% to 25%, about 25% to 30%, about 30% to 35%, about 35% to 40%, about 40% to 45%, about 45% to 50%, about 50% to 55%, about 55% to 60%, about 60% to 65%, about 65% to 70%, about 75% to 80%, about 80% to 85% about 85% to 90%, about 90% to 95%, about 95% to 99%, or about 99% to 99.9%.
- percentage values such as, for example, 10%, 50%, 120%, 500%, etc., are interchangeable with fold change values, i.e., 0.1, 0.5, 1.2, 5, etc., respectively.
- compositions and methods of the invention specifically, natural or synthetic sterol or a derivative or a mixture thereof, lunasin peptide or a derivative thereof and at least one extract of a plant from the genus Moringa, are presented in the compositions in an amount effective for treatment and/or prevention of any of the disorders indicated herein or of any condition associated therewith.
- prevention is interchangeable with prophylaxis in referring to significant reduction of risk of occurrence of a biological or medical event that is sought to be prevented in a tissue, a system, animal or human by a researcher, veterinarian, medical doctor or other clinician, and the term prophylactically effective amount is intended to mean that amount of a pharmaceutical composition that will achieve this goal.
- methods using any of the above compositions of the invention are applicable for controlling blood sugar levels in a subject, treating an immune related disorder, treating liver damage, restoring liver function and for treating, preventing, ameliorating, reducing or delaying the onset of acute or chronic toxic effect of a drug on any body organs or tissues.
- Detailed discussion on clinical conditions that are relevant to the present invention is presented further below.
- methods of the invention use any of the above compositions in formulations adapted for add-on to a solid, semi-solid or liquid food, beverage, food additive, food supplement, medical food, botanical drug, drug and/or a pharmaceutical compound.
- compositions as addon to foods and/or beverages comprising an increased content of sugar and/or alcohol.
- compositions of the invention are particularly applicable for controlling blood sugar levels in a subject, wherein said control is inhibiting increase or decrease in blood sugar levels, improving glucose tolerance or altering insulin resistance state.
- methods of the present invention are applicable to the prevention or alleviation of symptoms related to a condition associated with increased or decreased blood sugar levels, wherein said condition is any one of pre-diabetes, diabetes, a hepatic disorder, pancreatic dysfunction, obesity, weight gain, alcohol intoxication, alcohol withdrawal, vertigo, and tissue or organ damage or any condition associated with alteration of pancreatic or liver function in a way that alter insulin resistance and liver metabolic capability.
- the present invention is directed at treating, controlling or preventing a number of medical conditions.
- the terms preventing, controlling and treating encompass a range of conditions, starting from prevention of the development of a disease or a symptom in a patient who may predisposed to a disease but has yet been diagnosed; further including reduction, retardation or inhibition of progression symptoms of a disease; and also alleviation of symptoms of an already existing disease, i.e. reversal of said symptoms.
- Methods and compositions of the invention are specifically relevant to treating, controlling, ameliorating, or preventing body weight gain, obesity, metabolic syndrome and diabetes.
- body weight gain is meant specifically body fat gain that is maintained or decreased by applying the methods and compositions of the invention.
- a decrease in weight or body fat may protect against cardiovascular disease by lowering blood pressure, total cholesterol, LDL cholesterol and triglycerides, and may alleviate symptoms associated with chronic conditions such as hypertension, coronary heart disease, type 2 diabetes, osteoarthritis, sleep apnea and degenerative joint disease.
- the present invention is applicable to all types of obesity, including endogenous obesity, exogenous obesity, hyper-insulin obesity, hyperplastic -hypertrophic obesity, hypertrophic obesity, hypothyroid obesity and morbid obesity. Moreover, inflammation-mediated obesity may be treated particularly effectively in accordance with the invention.
- metabolic syndrome or syndrome X
- a complex multi-factorial condition accompanied by an assortment of abnormalities including hypertension, hypertriglyceridemia, hyperglycemia, low high-density lipoprotein (HDL) cholesterol and abdominal obesity, which, among others, may lead to pro-thrombotic (e.g., elevated fibrinogen or plasminogen activator inhibitor-1 in the blood) and pro-inflammatory (e.g., elevated C-reactive protein (CRP) in the blood) conditions.
- pro-thrombotic e.g., elevated fibrinogen or plasminogen activator inhibitor-1 in the blood
- pro-inflammatory e.g., elevated C-reactive protein (CRP) in the blood
- dyslipidemia defined as elevated plasma triglycerides (150 mg/dL), and/or low high- density lipoprotein (HDL) cholesterol ( ⁇ 35 mg/dL in men, ⁇ 39 mg/dL in women).
- HDL high- density lipoprotein
- visceral obesity defined as a high body mass index (BMI) (30 kg/m2) and/or a high waist-to-hip ratio (>0.90 in men, >0.85 in women).
- microalbuminuria urinary albumin excretion rate of 20 g/min
- NCEP National Cholesterol Education Program
- waist circumference >102 cm (40 in) for men or >88 cm (37 in) for women.
- HDL cholesterol level ⁇ 40 mg/dL for men or ⁇ 50 mg/dL for women.
- Each of the disorders associated with metabolic syndrome are risk factors in their own right, and can promote atherosclerosis, cardiovascular disease, stroke, and other adverse health consequences. However, when present together, these factors are predictive of increased risk of cardiovascular disease and stroke.
- controlling or treating metabolic syndrome using the combined compositions of the invention is meant reducing severity and/or number of symptoms associated with this medical condition, i.e. reducing any one of elevated blood glucose, glucose intolerance, insulin resistance, elevated triglycerides, elevated LDL-cholesterol, low HDL cholesterol, elevated blood pressure, abdominal obesity, pro-inflammatory states, and pro- thrombotic states. Additionally or alternatively, it is meant reducing the risk and/or the onset of developing associated diseases, i.e. cardiovascular disease, coronary heart disease and other diseases related to plaquing of the artery walls and diabetic conditions.
- associated diseases i.e. cardiovascular disease, coronary heart disease and other diseases related to plaquing of the artery walls and diabetic conditions.
- compositions of the invention are particularly advantageous for treating, controlling and preventing diabetes or diabetic conditions, such as type 1 diabetes, type 2 diabetes, gestational diabetes, pre-diabetes, slow onset autoimmune diabetes type 1 (LADA), hyperglycemia or any type of condition or compound that expose the patient to pre diabetes or to diabetes or that alters the stage of insulin resistance.
- diabetes may be overt, diagnosed diabetes, e.g., type 2 diabetes, or a pre-diabetic condition.
- Diabetes mellitus (generally referred to herein as diabetes) is a disease that is characterized by impaired glucose regulation. Diabetes is a chronic disease that occurs when the pancreas fails to produce enough insulin or when the body cannot effectively use the insulin that is produced, resulting in an increased concentration of glucose in the blood (hyperglycemia).
- the WHO recognizes three main forms of diabetes mellitus: type 1, type 2, and gestational diabetes (occurring during pregnancy), which have different causes and population distributions. While, ultimately, all forms are due to the beta cells of the pancreas being unable to produce sufficient insulin to prevent hyperglycemia, the causes are different. Type 1 diabetes is usually due to autoimmune destruction of the pancreatic beta cells.
- Type 2 diabetes is characterized by insulin resistance in target tissues, this causes a need for abnormally high amounts of insulin and diabetes develops when the beta cells cannot meet this demand.
- Gestational diabetes is similar to type 2 diabetes in that it involves insulin resistance, hormones in pregnancy may cause insulin resistance in women genetically predisposed to developing this condition.
- Type 1 diabetes is also recognized as insulin-dependent, juvenile, or childhood-onset diabetes; type 2 diabetes - as non-insulin-dependent or adult-onset diabetes; LADA diabetes is late autoimmune diabetes of adulthood. Additionally, intermediate conditions such as impaired glucose tolerance and impaired fasting glycemia are recognized as conditions that indicate a high risk of progressing to type 2 diabetes.
- type 1 diabetes insulin production is absent due to autoimmune destruction of pancreatic beta- cells.
- type 2 diabetes comprising 90% of diabetics worldwide, insulin secretion may be inadequate, but peripheral insulin resistance is believed to be the primary defect.
- Type 2 diabetes is commonly, although not always, associated with obesity, a cause of insulin resistance. It should be further appreciated that the method of the invention is applicable for a subject displaying increased insulin resistance.
- Type 2 diabetes is often preceded by pre-diabetes, in which blood glucose levels are higher than normal but not yet high enough to be diagnosed as diabetes.
- pre-diabetes as used herein, is interchangeable with the terms impaired glucose tolerance or impaired fasting glucose, which are terms that refer to tests used to measure blood glucose levels.
- Type 2 diabetes mellitus is associated with resistance of glucose -utilizing tissues like adipose tissue, muscle, and liver, to the physiological actions of insulin.
- NIDDM chronically elevated blood glucose associated with NIDDM can lead to debilitating complications including nephropathy, often necessitating dialysis or renal transplant; peripheral neuropathy; retinopathy leading to blindness; ulceration and necrosis of the lower limbs, leading to amputation; fatty liver disease, which may progress to cirrhosis; and susceptibility to coronary artery disease and myocardial infarction.
- nephropathy often necessitating dialysis or renal transplant
- peripheral neuropathy retinopathy leading to blindness
- ulceration and necrosis of the lower limbs leading to amputation
- fatty liver disease which may progress to cirrhosis
- susceptibility to coronary artery disease and myocardial infarction By “prevent” it is meant that the risk of developing of diabetes is reduced or the onset of the disease is delayed.
- control or “treat” it is meant that the risk of developing associated complications is reduced and/or the onset of such complications is delayed.
- Diabetic conditions that are subject to treatment with compositions and methods of the invention, and their combinations with other drugs, and with insulin, according to the methods of the present invention can be diagnosed or monitored using any of a number of assays known in the field.
- assays for diagnosing or categorizing an individual as diabetic or pre-diabetic or monitoring said individual include, but are not limited to, a glycosylated hemoglobin (HbAlc) test, a connecting peptide (C-peptide) test, a fasting plasma glucose (FPG) test, an oral glucose tolerance test (OGTT), and a casual plasma glucose test.
- HbAlc is a biomarker that measures the amount of glycosylated hemoglobin in the blood.
- HbAlc designates a stable minor glycated sub fraction of hemoglobin. It is a reflection of the mean blood glucose levels during the last 6-8 weeks, and is expressed in percent (%) of total hemoglobin.
- diabetes or pre-diabetes can be diagnosed by measuring blood glucose levels using any of several known tests in the field, including a fasting plasma glucose test or an oral glucose tolerance test.
- FPG fasting plasma glucose
- a patient is classified as diabetic and is subject to treatment according to the methods of the present invention if the patient has a threshold FPG greater than 125 mg/dl, and a patient is classified as pre-diabetic and is subject to treatment according to the methods of the present invention if the patient has a threshold FPG greater than 100 mg/dl but less than or equal to 125 mg/dl.
- OGTT oral glucose tolerance test
- a patient is classified as diabetic and is subject to treatment according to the methods of the present invention if the patient has a threshold 2-hour OGTT glucose level greater than 200 mg/dl.
- a patient is classified as pre-diabetic and is subject to treatment according to the methods of the present invention if the patient has a threshold 2- hour OGTT glucose level greater than 140 mg/dl but less than 200 mg/dl.
- C-peptide produced from proinsulin molecules, is secreted from islet cells into the bloodstream in equimolar proportion as insulin, and is used a biomarker for beta-cell function and insulin secretion.
- a fasting C-peptide measurement greater than 2.0 ng/ml is indicative of high levels of insulin, while a fasting C-peptide measurement less than 0.5 ng/ml indicates insufficient insulin production.
- methods according to the invention may further lead to a significant reduction in pancreatic hyperplasia and hepatic fat accumulation.
- methods according to the invention may downregulate the function of macrophages while increasing foxp3+ or any other type of regulatory T cells in fat tissue or in the body, suppresses inflammatory cytokine production by adipocytes and clearly leads to a marked decrease of inflammatory cell infiltration to fat tissue of a treated subject, specifically, a subject suffering from an immune-related disorder.
- dyslipoproteinemia which may include hypertriglyceridemia, hypercholesterolemia and low HDL-cholesterol, obesity, NIDDM (non-insulin dependent diabetes mellitus), IGT (impaired glucose tolerance), blood coagulability, blood fibronolysis defects and hypertension.
- dyslipoproteinemia may include hypertriglyceridemia, hypercholesterolemia and low HDL-cholesterol, obesity, NIDDM (non-insulin dependent diabetes mellitus), IGT (impaired glucose tolerance), blood coagulability, blood fibronolysis defects and hypertension.
- the immunomodulatory composition of the invention is especially advantageous for the treatment of type 1 diabetes or diabetes mellitus, thereby preventing or reducing acute complications (e.g. hypoglycemia, ketoacidosis or nonketotic hyperosmolar coma) as well as long-term complications (e.g. cardiovascular disease, chronic renal failure, retinal damage or blindness, nerve damage and microvascular damage, which may cause impotence, poor healing wounds particularly of the feet potentially leading to gangrene and amputation).
- acute complications e.g. hypoglycemia, ketoacidosis or nonketotic hyperosmolar coma
- long-term complications e.g. cardiovascular disease, chronic renal failure, retinal damage or blindness, nerve damage and microvascular damage, which may cause impotence, poor healing wounds particularly of the feet potentially leading to gangrene and amputation.
- the invention provides methods for treating and preventing diabetes or pre-diabetes in a subject in need thereof by administering to a subject in need thereof at least one plant sterol, specifically, CardioAid or any combinations or preparations thereof, in an amount effective for treating or preventing diabetes.
- such administration may further comprise the combination of at least one of said plant sterol/s, specifically, CardioAid with at least one of lunasin peptide/s, extract of a plant from the genus Moringa or any combinations thereof, soy extract/s (SE) natural or synthetic beta-glycolipid or any derivative thereof and at least one adjuvant selected from group of polyethylene glycol, polyethoxylated castor oil; beta cyclo dextrin or a derivative thereof.
- SE soy extract/s
- such compositions and methods using the same are applicable for treating diabetes, specifically, type II diabetes.
- methods using plant sterols or any preparations thereof, for example, CardioAid, as detailed herein may be used for treating a subject suffering from diabetes, specifically diabetes type II, provided that said subjects are not hypercholesterolemic type II diabetic patients.
- methods and compositions of the invention can be used to prevent, treat and control liver diseases and disorders including hepatitis, cirrhosis, non-alcoholic steatohepatitis (NASH) (also known as non-alcoholic fatty liver disease-NAFLD), hepatotoxicity, alcoholic steatohepatitis (ASH), drug induced liver injury (DILI) and chronic liver disease.
- liver diseases and disorders including hepatitis, cirrhosis, non-alcoholic steatohepatitis (NASH) (also known as non-alcoholic fatty liver disease-NAFLD), hepatotoxicity, alcoholic steatohepatitis (ASH), drug induced liver injury (DILI) and chronic liver disease.
- the terms “prevent”, “control” and “treat” encompass the prevention of the development of a disease or a symptom from a patient who may have a predisposition of the disease or the symptom but has not been diagnosed yet to have the disease or the symptom.
- such methods may optionally further comprises the concurrent or parallel administration of an additional therapeutic agent.
- additional therapeutic agent may be any one of insulin, N-acetyl cysteine (NAC), thiamine (vitamin B l), a benzodiazepine, any gut hormone as described above, or any combination thereof.
- said methods may be applied for treating a subject suffering from a disorder associated with increased or decreased blood sugar levels.
- said disorder may any one of a hepatic disorder, pancreatic dysfunction, diabetes, obesity, insulin resistance, metabolic syndrome, alcohol intoxication, alcohol withdrawal, vertigo, and tissue or organ damage.
- therapeutic methods of the invention are used for treating, preventing, ameliorating, reducing or delaying the onset of an immune-related disorder, said method comprising the step of administering a therapeutically effective amount of:
- the method of the invention may optionally further involves the administration of at least one of:
- said therapeutic methods are applied for any one of an inflammatory disorder, an autoimmune disorder, an infectious disease and a proliferative disorder.
- immune-related disorder may be any one of an inflammatory disorder, an autoimmune disorder, an infectious disease and a proliferative disorder.
- Immune therapy involves the exposure of components of the immune system to various elements (cytokines, disease associated antigens and natural metabolites) to combat disease processes in which a dysregulated immune response is thought to play a role. Immune dysregulation is thought to play a major part in the pathogenesis or disease course of a great number of disease processes, including various neoplastic, inflammatory, autoimmune, infectious and genetic entities.
- disorders can be perceived as a dysbalance between pro-inflammatory (Thl) and antiinflammatory (Th2) cytokines. Or any dysbalance of cells that control the immune system whether being a regulatory cell of any kind, antigen presenting cells, or any cells capable of altering the immune system. The way the immune system responds to foreign and self-antigens, is the result of a balance between the two subtypes of responses.
- Experimental autoimmune diseases in humans can be perceived as a dysbalance between pro-inflammatory and antiinflammatory cytokines. Or a dysbalance between cells or cytokines or chemokines.
- T cells capable of actively suppressing immune responses are thought to be in part responsible for the maintenance of peripheral self-tolerance.
- Immunoregulatory cytokines such as IL-10 or TGF- ⁇ may be critical for the suppressive effect of these cells.
- Regulatory T cells have potential role in human autoimmune or chronic inflammatory diseases and can be used for diagnostic or therapeutic purposes.
- methods of the invention may be used for the treatment of an autoimmune disorder.
- autoimmune disorders include, but are not limited to, Asthma, Primary sclerosing cholangitis, Alopecia Areata, Lupus, Ankylosing Spondylitis, Meniere's Disease, Antiphospholipid Syndrome, Mixed Connective Tissue Disease, Autoimmune Addison's Disease, Multiple Sclerosis, Autoimmune Hemolytic Anemia, Myasthenia Gravis, Autoimmune Hepatitis, Pemphigus Vulgaris, Behcet's Disease, Pernicious Anemia, Bullous Pemphigoid, Polyarthritis Nodosa, Cardiomyopathy, Polychondritis, Celiac Sprue-Dermatitis, Polyglandular Syndromes, Chronic Fatigue Syndrome (CFIDS), Polymyalgia Rheumatica, Chronic Inflammatory Demyelinating, Polymyositis and Dermatomyositis, Chronic Inflammatory Poly
- the oral combined SE and Cremophore EL compositions described herein can be administered to a subject to treat or prevent disorders associated with an abnormal or unwanted immune response associated with cell, tissue or organ transplantation, e.g., renal, hepatic, and cardiac transplantation, e.g., graft versus host disease (GVHD), or to prevent allograft rejection.
- disorders associated with an abnormal or unwanted immune response associated with cell, tissue or organ transplantation e.g., renal, hepatic, and cardiac transplantation, e.g., graft versus host disease (GVHD), or to prevent allograft rejection.
- GVHD graft versus host disease
- an autoimmune disease treated by methods of the invention may be any one of rheumatoid arthritis, type 1 diabetes, type 2 diabetes, artherosclerosis, asthma, acute and chronic graft versus host disease, systemic lupus erythmatosus, scleroderma, multiple sclerosis, inflammatory bowel disease, psoriasis, uvietis, thyroiditis and immune mediated hepatitis.
- MS Multiple Sclerosis
- MS is typically characterized clinically by recurrent or chronically progressive necrologic dysfunction, caused by lesions in the CNS. Pathologically, the lesions include multiple areas of demyelination affecting the brain, optic nerves, and spinal cord. The underlying etiology is uncertain, but MS is widely believed to be at least partly an autoimmune or immune-mediated disease.
- compositions and methods of the invention may be used for treating any inflammatory arthritis.
- the compositions and methods of the invention may be applicable for treating Rheumatoid arthritis (RA).
- RA is the most common chronic inflammatory arthritis and affects about 1% of adults, it is two to three times more prevalent in women than in men. RA may begin as early as infancy, but onset typically occurs in the fifth or sixth decade.
- Diagnosis may be made according to the American Rheumatism Association Criteria for the so Classification of Rheumatoid Arthritis.
- a therapeutically effective amount will cause an improvement in one or more of the following: the number of inflamed joints, the extent of swelling, and the range of joint motion.
- Laboratory measurements e.g., ESR and hematocrit value
- assessments of subjective features e.g., pain and morning stiffness
- Methods of the invention described herein can also be used to treat or prevent graft rejection in a transplant recipient.
- methods of the invention can be used in a wide variety of tissue and organ transplant procedures, e.g., can be used to induce central tolerance in a recipient of a graft of cells, in stem cells such as bone marrow and/or of a tissue or organ such as pancreatic islets, liver, kidney, heart, lung, skin, muscle, neuronal tissue, stomach, and intestines.
- the new methods can be applied in treatments of diseases or conditions that entail cell, tissue or organ transplantation (e.g. liver transplantation to treat hypercholesterolemia, transplantation of muscle cells to treat muscular dystrophy, or transplantation of neuronal tissue to treat Huntington's disease or Parkinson's disease).
- methods of the invention may modulate the T cells or other cells balance towards a suppressing response in a subject suffering from IBD. Therefore, according to one embodiment, the composition of the invention is intended for treating IBD.
- IBD Inflammatory bowel diseases
- IBD are common gastrointestinal disorders that can be perceived as being the result of a dysbalance between pro-inflammatory and anti-inflammatory subtypes of immune responses.
- compositions of the invention are intended for the treatment of a malignancy.
- modulation of the T cell balance may be in the direction of inducing a pro-inflammatory response or in augmenting the anti-tumor associated antigens immunity.
- cancer cancerous situations
- tumor a tumor necrosis factor
- malignant cells may include non-solid tumors of circulating cells. Malignancies of other tissues or organs may produce solid tumors.
- the compositions of the present invention may be used in the treatment of non-solid and solid tumors.
- Malignancy as contemplated in the present invention may be selected from the group consisting of carcinomas, melanomas, lymphomas, myeloma, leukemia and sarcomas.
- Malignancies that may find utility in the present invention can comprise but are not limited to hematological malignancies (including leukemia, lymphoma and myeloproliferative disorders), hypoplastic and aplastic anemia (both viral and or bacterial and or fungal and or parasiticly induced and idiopathic), myelodysplastic syndromes, all types of paraneoplastic syndromes (both immune mediated and idiopathic) and solid tumors (including lung, liver, breast, colon, prostate GI tract, pancreas and Karposi). More particularly, the malignant disorder may be hepaotcellular carcinoma, colon cancer, melanoma, myeloma, acute or chronic leukemia.
- the immuno-modulatory methods and compositions of the invention may be applicable for treating infectious diseases caused by bacterial infections, viral and or bacterial and or fungal and or parasitic infections, fungal infections, or parasitic infections. More specifically, the viral and or bacterial and or fungal and or parasitic infection may be caused by any one of HB V, HCV or HIV.
- methods of the invention may be suitable for treating an immune-related disorder, for example, hepatitis.
- therapeutic methods of the invention may further involve the concurrent or parallel administration of at least one additional therapeutic agent.
- such additional therapeutic agent may be any one of insulin, N- acetyl cysteine (NAC), thiamine (vitamin B l), a benzodiazepine or any combination thereof and a tissue derived preparation or compound.
- said methods of the invention are implemented for treating liver damage and/or restoring liver function in a subject in need thereof, said method comprising the step of administering a therapeutically effective amount of:
- the administration may optionally include at least one of: (a) at least one natural or synthetic sterol or a derivative or a mixture thereof; (b) lunasin peptide or a derivative thereof; and (c) at least one extract of a plant from the genus Moringa.
- the administration may optionally include at least one of:
- such methods may be introduced to a subject that is suffering from a liver disease
- said liver disease is any one of viral, bacterial, fungal or parasitic liver disease, alcoholic or autoimmune hepatitis, alcoholic or autoimmune cirrhosis, alcoholic fatty liver disease, nonalcoholic fatty liver disease (NAFLD), liver steatosis, alcoholic (ASH) or nonalcoholic steatohepatits (NASH), hepatocellular carcinoma, drug-induced liver disease and pediatric liver disease and metabolic liver disease.
- therapeutic methods of the invention may be implemented for treating, preventing, ameliorating, reducing or delaying the onset of acute or chronic toxic effect of a drug and for restoring liver function.
- therapeutic methods of the invention may be applied as above to prevent, ameliorate, or reduce effects of a drug that is an analgesic or an antipyretic drug, and restore liver function.
- the present methods may apply to a subject suffering from a liver disease, that may be any one of viral and or bacterial and or fungal and or parasitic, alcoholic or autoimmune hepatitis, alcoholic or autoimmune cirrhosis, alcoholic fatty liver disease, nonalcoholic fatty liver disease (NAFLD), any type of liver steatosis, for example, due to other disease such as Wilson's disease or alpha 1 anti-trypsin deficiency, alcoholic (ASH) or nonalcoholic steatohepatits (NASH), hepatocellular carcinoma, drug-induced liver disease and pediatric liver disease and any type of metabolic liver disease, for example, glycogen storage disease
- a liver disease may be any one of viral and or bacterial and or fungal and or parasitic, alcoholic or autoimmune hepatitis, alcoholic or autoimmune cirrhosis, alcoholic fatty liver disease, nonalcoholic fatty liver disease (NAFLD), any type of liver steatosis, for example, due to other disease such as Wilson's
- liver disease or liver damage as used herein apply to many diseases and disorders that cause the liver to function improperly or to cease functioning, and this loss of liver function is indicative of liver disease.
- liver function tests are frequently used to diagnose liver disease. Examples of such tests include, but are not limited to, the following: • Assays to determine the levels of serum enzymes such as lactate dehydrogenase (LDH), alkaline phosphatase (ALP), aspartate aminotransferase (AST), and alanine aminotransferase (ALT), where an increase in enzyme levels indicates liver disease.
- LDH lactate dehydrogenase
- ALP alkaline phosphatase
- AST aspartate aminotransferase
- ALT alanine aminotransferase
- Serum bilirubin levels are reported as total bilirubin and direct bilirubin. Normal values of total serum bilirubin are 0.1-1.0 mgdl (e.g., about 2-18 mmol/L). Normal values of direct bilirubin are 0.0-0.2 mg/dl (0-4 mmol/L). Increases in serum bilirubin are indicative of liver disease.
- albumin and the globulins e.g., alpha, beta, gamma
- Normal values for total serum proteins are 6.0-8.0 g/dl (60-80 g/L).
- a decrease in serum albumin is indicative of liver disease.
- An increase in globulin is indicative of liver disease.
- prothrombin time international normalized ratio, activated clotting time (ACT), partial thromboplastin time (PTT), prothrombin consumption time (PCT), fibrinogen, coagulation factors; alpha-fetoprotein, and alpha-fetoprotein-L3 (percent).
- ACT activated clotting time
- PTT partial thromboplastin time
- PCT prothrombin consumption time
- fibrinogen coagulation factors
- alpha-fetoprotein alpha-fetoprotein-L3 (percent).
- methods of the invention may further comprise concurrent or parallel administration of at least one additional therapeutic agent.
- such agent is any one of insulin, antibodies directed to inflammatory cytokine, or antibodies such as anti TNF antibodies including humanized antibodies, statins, analgesics, chemotherapeutic agents and antibiotics.
- said additional therapeutic agent is any one of N-acetyl cysteine (NAC), thiamine (vitamin B l), a benzodiazepine or any combination thereof and a tissue derived preparation or compound.
- the additional therapeutic agent that may be an autologous protein- containing tissue extract, for example, colon or liver.
- tissue extract for example, colon or liver.
- Such extract comprises disease-associated antigens that modulate the immune response in the treated subject.
- compositions of the invention comprising a therapeutically effective amount of at least one SE or any fraction thereof and at least one polyethoxylated castor oil or any derivative thereof, or any combination thereof, are particularly applicable for treating liver damage and/or restoring liver function in a subject in need thereof.
- liver disease is any one of viral, bacterial, fungal or parasitic liver disease, alcoholic or autoimmune hepatitis, alcoholic or autoimmune cirrhosis, alcoholic fatty liver disease, nonalcoholic fatty liver disease (NAFLD), liver steatosis, alcoholic (ASH) or nonalcoholic steatohepatits (NASH), hepatocellular carcinoma, drug-induced liver disease and pediatric liver disease and any type metabolic liver disease, for example glycogen storage disease.
- NASH nonalcoholic fatty liver disease
- NASH nonalcoholic steatohepatits
- hepatocellular carcinoma drug-induced liver disease and pediatric liver disease and any type metabolic liver disease, for example glycogen storage disease.
- Specific embodiments of said methods are applicable for treating, preventing, ameliorating, reducing or delaying the onset of acute or chronic toxic effect of a drug and for restoring liver function.
- Hepatitis is an inflammation of the liver that can be caused by viruses (e.g., hepatitis virus A, B and C (HAV, HBV, and HCV, respectively), chemicals, drugs, alcohol, inherited diseases, or the patient's own immune system (autoimmune hepatitis).
- viruses e.g., hepatitis virus A, B and C (HAV, HBV, and HCV, respectively
- autoimmune hepatitis hepatitis virus A, B and C
- This inflammation can be acute and resolve within a few weeks to months, or chronic, and persist over many years.
- Chronic hepatitis can persist for decades before causing significant symptoms, such as cirrhosis (scarring and loss of function), liver cancer, or death.
- liver disease and suitable for treatment or prevention or control using the compositions and methods of the present invention include, but are not limited to amebic liver abscess, biliary atresia, fibrosis, cirrhosis, coccidioidomycosis, delta agent, hepatocellular carcinoma (HCC), alcoholic liver disease, primary biliary cirrhosis, pyogenic liver abscess, Reye's syndrome, sclerosing cholangitis, and Wilson's disease.
- the compositions and methods described herein are suitable for the treatment of liver disease characterized by the loss or damage of parenchymal liver cells.
- the etiology of this can be a local or systemic inflammatory response.
- the beneficial effect of SE in this model forms the basis for its potential beneficial effect in any immune -related disease, in which the immune system plays a role in the pathogenesis thereof.
- immune -related diseases include infectious, inflammatory, and malignant disorders.
- Liver failure occurs when large parts of the liver become damaged and the liver is no longer able to perform its normal physiological function.
- liver failure can be diagnosed using the above described assays of liver function or by a subject's symptoms.
- Symptoms that are associated with liver failure include, for example, one or more of the following, nausea, loss of appetite, fatigue, diarrhea, jaundice, abnormal/excessive bleeding (e.g., coagulopathy), swollen abdomen, mental disorientation or confusion (e.g., hepatic encephalopathy), sleepiness, and coma.
- Chronic liver failure occurs over months to years and is most commonly caused by viruses (e.g., HBV and HCV), long-term/excessive alcohol consumption, cirrhosis, hemochromatosis, and malnutrition.
- viruses e.g., HBV and HCV
- Acute liver failure is the appearance of severe complications after the first signs of liver disease (e.g., jaundice) and includes a number of conditions, all of which involve severe hepatocyte injury or necrosis.
- compositions and methods described herein are particularly suitable for the treatment of hyperacute, acute, and subacute liver failure, fulminant hepatic failure and late onset fulminant hepatic failure, all of which are referred to herein as "acute liver failure.”
- acute liver failure include, for example, viral and or bacterial and or fungal and or parasitic hepatitis, exposure to certain drugs and toxins (e.g., fluorinated hydrocarbons (e.g., trichloroethylene and tetrachloroe thane), amanita phalloides (e.g., commonly found in the "death-cap mushroom"), acetaminophen (paracetamol), halothanes, sulfonamides, henytoins), cardiac -related hepatic ischemia (e.g., myocardial infarction, cardiac arrest, cardiomyopathy, and pulmonary embolism), renal failure, oc
- drugs and toxins
- hepatitis is used to describe a liver condition which implies injury to the liver characterized by the presence of inflammatory cells in the tissue of the organ.
- the condition can be self-limiting, healing on its own, or can progress to scarring of the liver.
- Hepatitis is acute when it lasts less than six months and chronic when it persists longer than six months.
- a group of viruses known as the hepatitis viruses cause most cases of liver damage worldwide. Hepatitis can also be due to toxins (notably alcohol), other infections or from autoimmune process.
- Hepatitis includes hepatitis from viral and or bacterial and or fungal and or parasitic infections, including Hepatitis A through E (A, B, C, D and E— more than 95% of viral and or bacterial and or fungal and or parasitic cause), Herpes simplex, Cytomegalovirus, Epstein-Barr virus, yellow fever virus, adenoviruses; non-viral and or bacterial and or fungal and or parasitic infections, including toxoplasma, Leptospira, Q fever, rocky mountain spotted fever, alcohol, toxins, including amanita toxin in mushrooms, carbon tetrachloride, asafetida, among others, drugs, including paracetamol, amoxycillin, antituberculosis medicines, minocycline and numerous others as described herein; ischemic hepatitis (circulatory insufficiency); pregnancy; autoimmune conditions, including Systemic Lupus Erythematosus (SLE); and non-alcoholic
- Sterile inflammation is used to describe inflammation of the liver which is triggered by intracellular molecules released from dying cells that have lost integrity of their plasma membrane. This inflammation occurs in the absence of causative agents such as viruses or bacteria and alcohol. A number of intracellular molecules have been identified that can stimulate other cells to produce proinflammatory cytokines and chemokines. Such proinflammatory cellular molecules are thought to function by engaging receptors on cytokine -producing cells. If left untreated, sterile inflammation may progress to non-alcoholic fatty liver disease (NAFLD), non-alcoholic steatohepatitis (NASH) or cyrrhosis.
- NAFLD non-alcoholic fatty liver disease
- NASH non-alcoholic steatohepatitis
- cyrrhosis cyrrhosis
- Non-alcoholic steatohepatitis or NASH is a condition of the liver in which inflammation is caused by a buildup of fat in the liver.
- NASH is part of a group of liver diseases, known as nonalcoholic fatty liver disease, in which fat builds up in the liver and sometimes causes liver damage that gets worse over time (progressive liver damage).
- "Non-alcoholic fatty liver disease” (NAFLD) is fatty inflammation of the liver which is not due to excessive alcohol use. It is related to insulin resistance and the metabolic syndrome, obesity, high cholesterol and triglycerides, and diabetes and may respond to treatments originally developed for other insulin resistant states (e.g. diabetes mellitus type 2), such as weight loss, metformin and thiazolidinediones.
- NASH Non-alcoholic steatohepatitis
- NAFLD Non-alcoholic steatohepatitis
- NASH is a condition that may get worse over time (called a progressive condition) and can cause scarring (fibrosis) of the liver, which leads to cirrhosis.
- "Cirrhosis” describes a condition in which liver cells have been replaced by scar tissue.
- the term “cirrhosis of the liver” or “cirrhosis” is used to describe a chronic liver disease characterized by replacement of liver tissue by fibrous scar tissue as well as regenerative nodules, leading to progressive loss of liver function. Cirrhosis is most commonly caused by fatty liver disease, including NASH, as well as alcoholism and hepatitis B and C, but also may be of unknown cause.
- Cirrhosis has historically been thought to be generally irreversible once it occurs, and historical treatment focused on preventing progression and complications. In advanced stages of cirrhosis, the only option is a liver transplant.
- Each of the compounds above, specifically in the combined compositions and methods of the present invention can be used to treat, prevent or control chemical liver trauma and hepatotoxicity.
- chemical trauma or acute chemical trauma to the liver refers to serious injury which occurs to a patient over a short duration as a consequence of chemical toxicity, including drug-induced toxicity or trauma.
- Drug-induced acute liver trauma including acetaminophen-induced acute liver trauma, is acute liver injury which occurs as a result or consequence of exposure to a drug (e.g., drug overdose), especially acetaminophen toxicity.
- Compounds according to the present invention are useful for reducing the injury to the liver which occurs from physical and chemical trauma, especially including drug-induced (drug overdose) and acetaminophen-induced acute liver trauma.
- Hepatotoxocity is chemical liver trauma resulting from a hepatotoxic agent, or hepatotoxicity- inducing bioactive agent.
- hepatotoxic agent and "a hepatotoxicity inducing bioactive agent” are used synonymously in context to describe compounds which often produce hepatotoxicity in patients administered such agents.
- hepatoxicity agents include, for example, anaesthetic agents, antiviral and or bacterial and or fungal and or parasitic agents, anti-retroviral and or bacterial and or fungal and or parasitic agents (nucleoside reverse transcriptase inhibitors and non-nucleoside reverse transcriptase inhibitors), especially anti-HIV agents, anticancer agents, organ transplant drugs (cyclosporin, tacrolimus, OKT3), antimicrobial agents (anti-TB, anti-fungal, antibiotics), anti-diabetes drugs, vitamin A derivatives, steroidal agents, especially including oral contraceptives, anabolic steroids, androgens, non-steroidal antiinflammatory agents, anti-depressants (especially tricyclic antidepressants) glucocorticoids, natural products and herbal and alternative remedies, especially including St. John's wort.
- anaesthetic agents antiviral and or bacterial and or fungal and or parasitic agents
- Hepatotoxicity may manifest as triglyceride accumulation which leads to either small droplet (microvesicular) or large droplet (macrovesicular) fatty liver.
- small droplet microvesicular
- macro droplet macroparticle
- phospholipid accumulation leads to a pattern similar to the diseases with inherited phospholipid metabolism defects (e.g. Tay-Sachs disease).
- Tay-Sachs disease a separate type of steatosis where phospholipid accumulation leads to a pattern similar to the diseases with inherited phospholipid metabolism defects. It must be understood that the combined compositions and methods of the invention are particularly applicable for treating any of the hepatic disorders described herein above.
- the method of the invention may optionally further comprises the concurrent or parallel administration of at least one additional therapeutic agent.
- additional therapeutic agent may be any one of insulin, NAC, vitamin Bl, a benzodiazepine, an anti-viral and or bacterial and or fungal and or parasitic or anti-inflammatory drug, a chemotherapeutic agent and any gut hormone.
- the methods, compositions and the combined compositions of the invention may be used as an add-on to any type of drugs or therapeutic compounds administered orally, intravenously, intradermaly, by inhalation or intrarectaly.
- drugs or therapeutic compounds include, but are not limited to at least one of tissue derived antigens, tumor associated antigens, viral, bacterial, fungal, and parasitic derived antigens, as well as any type of organism derived antigens.
- the add-on composition that may comprise as an active ingredient at least one of natural or synthetic plant sterols, lunasin peptide/s and extract of a plant from the genus Moringa or any combinations thereof and optionally, further additional components that may be at least one of, soy extract/s (SE) natural or synthetic beta-glycolipid or any derivative thereof and at least one adjuvant selected from group of polyethylene glycol, polyethoxylated castor oil; beta cyclo dextrin or a derivative thereof according to the invention may be added to any type of tissue derived antigens obtained from a healthy or diseased subject, any type of drug or compound, any type of organism derived antigens, hormones, cytokines, therapeutic antibody, or any type of natural or non-natural therapeutic compound.
- the methods of the invention may be applicable for treating, preventing, ameliorating, reducing or delaying the onset of acute or chronic toxic effect of a drug.
- a drug may be an analgesic or an antipyretic drug.
- a soft or an alcoholic beverage as well as food with high sugar content.
- a soft or an alcoholic beverage or food with high sugar content may comprise:
- the soft or alcoholic beverage of the invention may comprise sterol or a derivative or a mixture thereof.
- sterol may be at least one plant stanols and sterol and any esters or mixtures thereof.
- plant stanols and sterol comprised within the beverage of the invention may be CardioaidTM comprising at least one of CardioAid-S, CardioAid-XF, CardioAid-SWD and CardioAid-SF.
- soft or alcoholic beverage of the invention may comprise lunasin peptide/s. More specifically, the lunasin peptide or a derivative thereof may be a peptide comprising the amino acid sequence as denoted by SEQ ID NO. 1, or any derivatives or functional fragments thereof, specifically, any one of the peptides as denoted by SEQ ID NO. 2-
- these derivative of lunasin peptide may be any one of Lunasin Reliv, LunaRichX and Relive.
- the soft or alcoholic beverage according to the invention may comprise extract of a plant from the genus Moringa. More specifically, such extract may be an extract of Moringa oleifera.
- these soft or alcoholic beverage further comprise additional components that may be at least one of, soy extract/s (SE) natural or synthetic beta-glycolipid or any derivative thereof and at least one adjuvant selected from group of polyethylene glycol, polyethoxylated castor oil; beta cyclo dextrin or a derivative thereof.
- SE soy extract/s
- a soft or alcoholic beverage according to the above in addition to at least one of natural or synthetic plant sterols, lunasin peptide/s and extract of a plant from the genus Moringa or any combinations thereof may further comprise as soy extract or any fraction thereof, a soy-derived polar (Ml) or non-polar fraction (OS).
- Ml soy-derived polar
- OS non-polar fraction
- such soft or alcoholic beverage comprising the Ml fraction may comprise phosphatides that are characteristic thereof, namely any one of phosphatidylcholine (PC), phosphatidylinositol (PI) or a combination thereof.
- a soft or alcoholic beverage comprising the OS fraction, in addition to at least one of natural or synthetic plant sterols, lunasin peptide/s and extract of a plant from the genus Moringa or any combinations thereof, may further comprise at least one of glycerides, phospholipids and phosphatides, which are characteristic of OS.
- a soft or alcoholic beverage of the invention in addition to at least one of natural or synthetic plant sterols, lunasin peptide/s and extract of a plant from the genus Moringa or any combinations thereof, may further comprise as a natural or synthetic beta- glycolipid, any one of a glucosylceramide, glycosphingolipid, monosaccharide ceramide, galatosylceremide, lactosylceramide, gal-gal-glucosyl-ceramide, GM2 ganglioside, GM3 ganglioside, globoside or any soy derivative or a combination thereof.
- the soft or alcoholic beverage according to the above in addition to at least one of natural or synthetic plant sterols, lunasin peptide/s and extract of a plant from the genus Moringa or any combinations thereof, may further comprise glucosylceramide that is a beta glucosylceramide (GC).
- glucosylceramide that is a beta glucosylceramide (GC).
- a soft or alcoholic beverage according to the invention in addition to at least one of natural or synthetic plant sterols, lunasin peptide/s and extract of a plant from the genus Moringa or any combinations thereof, may further comprise a particular derivative of polyethoxylated castor oil that is Cremophore EL (C:E).
- a sugar sweetened beverage is any beverage that contains water (carbonated or still), a natural or an artificial sweetener and a natural or artificial flavor.
- a high sugar content may result from the presence of natural beverage ingredients (e.g. a fruit-based drink to which no additional sugar has been added) or the beverage may comprise added sugar.
- SSBs include for example but are not limited to fruit-based or fruit-flavored drinks, vegetable- based or vegetable flavored drinks, flavored water or sodas, energy drinks (also referred to as soft drinks), as well as milk-based beverages (for example chocolate milk, fruit-based milk drinks), coffees, teas and nonalcoholic wines and beers (in which the total alcohol content is less than 0.5% of the total volume).
- the terms added sugar, sugar sweetened and high sugar content are interchangeable. Risks of weight gain, obesity and diabetes which have been linked to consumption of sweetened beverages will be discussed further below.
- the invention further encompasses foods with high sugar content comprising the at least one of natural or synthetic plant sterols, lunasin peptide/s and extract of a plant from the genus Moringa or any combinations thereof, and additional components that may be at least one of, soy extract/s (SE) natural or synthetic beta-glycolipid or any derivative thereof and at least one adjuvant selected from group of polyethylene glycol, polyethoxylated castor oil; beta cyclo dextrin or a derivative thereof.
- SE soy extract/s
- food with high sugar content encompasses but is not limited to sugar-sweetened foods, namely foods which inherently comprise high sugar level, e.g. honey, syrup (e.g. maple, corn or date honey (silan), etc.), fruit- or dried fruit-based foods (for example but not limited to cereal, jams, spreads, yogurt, canned whole, chopped or minced fruit preserves and sauces), vegetable-based foods (soups, sauces, preserves, noodles, to name but few) or foods to which natural or artificial sugar or a sweetener was added prior to consumption, for example but not limited to milk-based foods (e.g.
- milk condensed milk, yogurt, ice cream, milk shake, cream, cheese, etc.
- candies cereal- or granola-based foods, flour-based foods (e.g. bread, cookies, cakes, pasta, pastries, etc.), fruit- or dried fruit-based foods and vegetable-based foods.
- cereal- or granola-based foods e.g. bread, cookies, cakes, pasta, pastries, etc.
- flour-based foods e.g. bread, cookies, cakes, pasta, pastries, etc.
- fruit- or dried fruit-based foods e.g. bread, cookies, cakes, pasta, pastries, etc.
- compositions for use in a method for prevention of liver steatosis or liver disease in a healthy subject exposed to conditions inducing a liver disease comprising as an active ingredient a therapeutically effective amount of:
- composition of the invention may optionally further comprise at least one of:
- composition of the invention may be used for treating, preventing and protecting from any damage caused by a therapeutic compound to any tissue or organ, and for restoring the biological function of said damaged tissue or organ.
- a further important aspect of the present invention is to provide a pharmaceutical composition for use in a method for prevention of diabetes in a subject with pre diabetic condition, said composition comprising as an active ingredient a therapeutically effective amount of:
- composition of the invention may optionally further comprise at least one of:
- composition optionally further comprising a pharmaceutically acceptable carrier.
- the method may optionally further comprise providing at least one of:
- the compound/s or any combinations or compositions thereof used by the method of the invention as defined in any one of (I), and optionally any one of (II) and (III) exert any one of an additive, an adjuvant or a synergistic therapeutic effect to said therapeutic compound.
- drugs or therapeutic compounds include, but are not limited to at least one of tissue derived antigens, tumor associated antigens, viral, bacterial, fungal, and parasitic derived antigens, as well as any type of organism derived antigens.
- tissue derived antigens tissue derived antigens
- tumor associated antigens viral, bacterial, fungal, and parasitic derived antigens
- organism derived antigens such as any type of organism derived antigens.
- Such therapeutic compound may be derived from any type of allogeneic, syngeneic or augologous tissue derived antigens obtained from a healthy or diseased subject, any type of drug or compound, any type of organism derived antigens, hormones, cytokines, therapeutic antibody, or any type of natural or non-natural therapeutic compound.
- the methods of the invention may be used for exerting an adjuvant effect and for promoting and improving the therapeutic effect of said therapeutic agent. It should be noted that in certain embodiments such augmenting and enhancing effect may be synergistic, additive
- the pharmaceutical composition of the invention is intended for treating, preventing, ameliorating, reducing or delaying the onset of acute or chronic toxic effect of a therapeutic compound and drug.
- the invention provides a method for enhancing and augmenting the therapeutic effect of therapeutic agent such as anyone of insulin, N-acetyl cysteine (NAC), thiamine (vitamin Bl), a benzodiazepine or any combination thereof and a tissue derived preparation or compound.
- therapeutic agent such as anyone of insulin, N-acetyl cysteine (NAC), thiamine (vitamin Bl), a benzodiazepine or any combination thereof and a tissue derived preparation or compound.
- the compound/s or any combinations or compositions thereof as defined in any one of (I) and optionally, any one of (II) and (III), is administered concurrently or in parallel with the administration of said therapeutic agent.
- composition of the invention is applied for use in enhancing and augmenting the therapeutic effect of at least one therapeutic agent in a subject treated with said at least one therapeutic agent, said composition comprising as an active ingredient a therapeutically effective amount of:
- composition of the invention may optionally further comprise at least one of:
- composition optionally further comprising a pharmaceutically acceptable carrier.
- compositions of the invention according to the above may be used for enhancing and augmenting the therapeutic effect of any one of insulin, N-acetyl cysteine (NAC), thiamine (vitamin B l), a benzodiazepine or any combination thereof and a tissue derived preparation or compound.
- NAC N-acetyl cysteine
- vitamin B l thiamine
- a benzodiazepine or any combination thereof and a tissue derived preparation or compound.
- the methods of the invention involve various routes of administering the above described compositions.
- the administration is at least one of oral, mucosal, nasal, transdermal, pulmonary, buccal or sublingual administration, or any combinations thereof.
- Other administration modes are also applicable, for example, subcutaneous, rectal, or parenteral (including intramuscular, intraperitoneal (IP), intravenous (IV) and intradermal) administration.
- Amounts effective for this use will depend upon the severity of the condition and the general state of the patient's own immune system, but generally range from about 0.001 to about 1000 mg /Kg body weight. Further including dosages from 0.0001 to 5000 mg and 0.01 to 2.5, specifically, 0.001, 0.002, 0.003, 0.004, 0.005, 0.01, 0.02, 0.03, 0.04, 0.05, 0.06, 0.07, 0.08, 0.09, 0.1, 0.2, 0.3 0.4, 0.5, 0.6, 0.7, 0.8, 0.9, 1, 1.5, 2, 2.5, 3, 3.5, 4, 4.5 and 5 mg of a combined composition.
- Single or multiple administrations on a daily, weekly or monthly schedule can be carried out with dose levels and pattern being selected by the treating physician.
- compositions of the invention may comprise an effective amount of natural or synthetic sterol, specifically CardioAid, range from about 0.00001 to about 10000 mg /Kg body weight.
- compositions of the invention may comprise an effective amount of lunasin peptide, ranging from about 0.00001 to about 10000 mg /Kg body weight.
- compositions of the invention may comprise an effective amount of extract of a plant from the genus Moringa in an amount ranging from about 0.00001 to about 100000 mg /Kg body weight.
- any of the compositions of the invention may comprise in addition to at least one of CardioAid, lunasin and Moring, also an effective amount of at least one of soy extract (SE), natural or synthetic beta-glycolipid/s and at least one adjuvant selected from group of polyethylene glycol, polyethoxylated castor oil; beta cyclo dextrin or a derivative thereof.
- SE soy extract
- Such effective amount may range between about 0.00001 to about 100000 mg /Kg body weight.
- the active ingredient used by the invention may be administered with or in combination with at least one of (d) at least one soy extract (SE) or any fraction thereof; (e) at least one natural or synthetic beta-glycolipid or any derivative thereof; (f) at least one adjuvant selected from group of polyethylene glycol, polyethoxylated castor oil; and beta cyclo dextrin or a derivative thereof and optionally, with at least one further additional therapeutic agent.
- combination with refers to administration or two or more therapies over the course of a treatment regimen, where the therapies may be administered together or separately, and, where used in reference to drugs, may be administered in the same or different formulations, by the same or different routes, and in the same or different dosage form type.
- the present invention involves the use of different active ingredients, for example, at least one of: (a) at least one natural or synthetic sterol or a derivative or a mixture thereof; (b) lunasin peptide or a derivative thereof; and (c) at least one extract of a plant from the genus Moringa, and optionally, at least one of (d) at least one soy extract (SE) or any fraction thereof; (e) at least one natural or synthetic beta-glycolipid or any derivative thereof; (f) at least one adjuvant selected from group of polyethylene glycol, polyethoxylated castor oil; and beta cyclo dextrin or a derivative thereof, that may be administered through different routes, dosages and combinations.
- active ingredients for example, at least one of: (a) at least one natural or synthetic sterol or a derivative or a mixture thereof; (b) lunasin peptide or a derivative thereof; and (c) at least one extract of a plant from the genus Moringa, and optionally, at least
- kits providing a convenient modular format of the active ingredients of the invention required for treatment , would allow the required flexibility in the above parameters.
- the invention provides a kit comprising: I. at least one of: (a) at least one natural or synthetic sterol or a derivative or a mixture thereof; (b) lunasin peptide or a derivative thereof; and (c) at least one extract of a plant from the genus Moringa.
- the kit of the invention may further comprise at least one of: II. at least one of: (d) at least one soy extract (SE) or any fraction thereof; (e) at least one natural or synthetic beta-glycolipid or any derivative thereof; (f) at least one adjuvant selected from group of polyethylene glycol, polyethoxylated castor oil; and beta cyclo dextrin or a derivative thereof.
- SE soy extract
- each of the combined ingredient is provided in a separate dosage form.
- the kit of the invention may facilitate combined treatment using different modes of administration for each compound as well as different duration of treatment.
- each of the multiple components of the kit may be administered simultaneously.
- each of said multiple dosage forms may be administered sequentially in either order.
- kits described herein can include a composition as described, or in separate multiple dosage unit forms, as an already prepared liquid topical, nasal or oral dosage form ready for administration or, alternatively, can include the composition as described as a solid pharmaceutical composition that can be reconstituted with a solvent to provide a liquid dosage form.
- the kit may optionally include a reconstituting solvent.
- the constituting or reconstituting solvent is combined with the active ingredient to provide liquid dosage forms of each of the active ingredients or of a combination thereof.
- the active ingredients are soluble in so the solvent and forms a solution.
- the solvent can be, e.g., water, a non-aqueous liquid, or a combination of a non-aqueous component and an aqueous component.
- Suitable non-aqueous components include, but are not limited to oils, alcohols, such as ethanol, glycerin, and glycols, such as polyethylene glycol and propylene glycol.
- the solvent is phosphate buffered saline (PBS).
- PBS phosphate buffered saline
- the term “treat” or “treating” and their derivatives includes substantially inhibiting, slowing or reversing the progression of a condition, substantially ameliorating symptoms of a condition or substantially preventing the appearance of symptoms of a condition, said condition is any one of an immune-related disorder and a hepatic disorder in a subject in need thereof.
- prevent and all variations of this term is intended to mean the countering in advance of pathologic symptoms or a pathologic process progress. In this case it is understood that the composition is applied prior to the observation of clinical symptoms.
- ameliorate and “amelioration” relate to the improvement in the treated subject condition brought about by the compositions and methods according to the invention, wherein said improvement may be manifested in the forms of inhibition of pathologic processes associated with any one of an immune -related disorder and a hepatic disorder, a significant reduction in their magnitude, or an improvement in a diseased subject physiological state.
- inhibitor and all variations of this term is intended to encompass the restriction or prohibition of the progress and exacerbation of pathologic symptoms or a pathologic process progress, said pathologic process symptoms or process are associated with.
- delay means the slowing of the progress and/or exacerbation of an immune-related disorder or a hepatic disorder and their symptoms slowing their progress, further exacerbation or development, so as to appear later than in the absence of the treatment according to the invention.
- subject in need or “patient” it is meant any mammal who may be affected by the above- mentioned conditions, and to whom the treatment and diagnosis methods herein described is desired, including human, bovine, equine, canine, murine and feline subjects.
- the patient is a human.
- Administering of the composition according to the method of the invention to the patient includes both self-administration and administration to the patient by another person.
- the invention further encompasses the use of the composition and methods of the invention for treating any condition related to the conditions described above.
- association when referring to pathologies herein, mean diseases, disorders, conditions, or any pathologies which at least one of: share causalities, co-exist at a higher than coincidental frequency, or where at least one disease, disorder condition or pathology causes the second disease, disorder, condition or pathology described herein.
- the invention provides a pharmaceutical composition for use in a method for treating liver damage in a subject in need thereof. More specifically, such composition may comprise as an active ingredient a therapeutically effective amount of a polyethoxylated castor oil or any derivative or a combination thereof, and optionally further comprising a pharmaceutically acceptable carrier.
- the invention further encompasses the use of the combined compositions of the invention in healthy people for prevention of liver steatosis or liver disease when exposed to conditions that possibly can induce any type of liver disease.
- the invention provides methods and compositions for prevention of diabetes in patients with pre diabetes.
- Concanavalin A (ConA, MP Biomedicals, USA).
- Soy extracts containing the polar (Ml) and/ or non-polar (OS) fractions were obtained by standard processing procedures for extracting soy oil and soy protein. Ml and OS fractions were subjected to qualitative LC-MS and 31 P-NMR analyses to identify characteristic chemical profiles. Specific procedures pertaining to these methods are detailed below.
- OS- fraction derived from the solvent extraction of soybeans into oil, and contains tri- and di -glycerides, free fatty acids and phosphatides;
- Ml- fraction which is derived from aqueous-ethanol extraction left after the solvent extraction, and contains isoflavones, sugars (oligo-, di-, mono-), and lipids (including - phosphatides, phytosterols, saponins).
- Ml (polar) fraction was obtained by standard hydro-alcoholic extraction of defatted soy milk to food soy protein.
- Qualitative LC-MS analysis used Ml dissolved in DMSO that was analyzed using C-18 reversed column and polar mobile phase consisting of water (modified with ammonium formate) and methanol.
- Qualitative 3 ⁇ 4-NMR analysis was carried out using different solvents to identify various constituents.
- Ml contained typical ratio of phosphatidylcholine (PC) and in phosphatidylinositol (PI), in declining order. More accurate 31 P-NMR analysis showed that Ml was characterized with highly heterogeneous content of phospholipids and phosphatides.
- Ml was predominantly enriched in phosphatidylcholine (PC) and phosphatidylinositol (PI).
- the OS (non-polar) fraction was dissolved in chloroform.
- the LC/MS analysis was carried out using a reversed column C-18 and non-polar mobile phase consisting of methanol and ethyl acetate.
- the LC/MS and NMR analyses showed mainly glycerides and phospholipids, in declining order. More accurate quantitative 31 P-NMR spectroscopy showed that OS was mainly enriched in phosphatidic acid (PA), phosphatidylethanolamine (PE) and phosphatidylcholine (PC).
- OS and Ml fractions were distinct by ratios of various phosphatides.
- mice Male C57BL/6 mice (10-12 weeks old) were obtained from Harlan Laboratories (Jerusalem, Israel) and maintained in the Animal Core of the Hadassah-Hebrew University Medical School. All animal experiments were carried out according to the guidelines of the Hebrew University- Hadassah Institutional Committee for the Care and Use of Laboratory Animals and with the committee's approval.
- mice were fed high fat diet (Harlan, TD88137 comprising 42% calories from fat) and water ad libitum starting at the age of 10 weeks (day #0), in a liberal, restriction-free manner. Mice were kept on a 12 hour light/dark cycle. In addition the mice were orally fed, by gavage, three times a week for 25 weeks with the indicated agent (CardioAid or Lunasin).
- mice All mice were administered standard laboratory chow and water ad libitum and kept in a 12- hour light/dark cycle.
- mice were administered by gavage with chocolate drink using a commercially available sweetened chocolate drink (prepared by mixing 400 ul DDW with 400 ⁇ chocolate solution prepared by mixing 20 mg sweetened chocolate drink in 400 ⁇ DDW) with and without CardioAid following on overnight fast. All animals were followed by measurements of serum blood glucose for three hours on the following time points: 0, 15 min, 30, 60, 90, 120, ISO. Experimental groups are described in the Examples (T able 1 ).
- mice/group Males 11-12 old, 2 mice/group were fasted overnight followed by oral administration of high sugar containing carbonated drink. Mice underwent serum glucose measurements at the following time points: 0, 15, 30, 45, 60, 90, 120 min.
- mice All mice were administered standard laboratory chow and water ad libitum and kept in a 12-hour light/dark cycle.
- mice were treated on days 1 and 2 with Moringa and soybean extracts (OS, Ml) as indicated in Examples (Table 5). Moringa and soybean extracts were prepared as detailed below. At day 2 mice were intravenously (iv) injected with 200 ⁇ 1 Con A solution (0.5 mg per mouse prepared by mixing 2.5 mg Con A with 1 ml distilled water).
- mice Prior to ConA injection, mice were treated on days 1 and 2 with Moringa and soy extracts according to the following dosages.
- Moringa and OS solution was prepared from 10 mg Moringa and 10 mg OS in 2 ml OS (10 mg OS in 300 ⁇ absolute EtOH, to which 10 mg Moringa in 100 ⁇ Cremophor and 1.6 ml PBS were added). Each mouse was administered with 200 ⁇ by gavage (1 mg/day/mouse of Moringa/OS).
- Moringa and Ml solution was prepared from 10 mg Moringa and 10 mg Ml in 2 ml Ml (10 mg Ml in 300 ⁇ absolute EtOH, to which 10 mg Moringa in 100 ⁇ Cremophor, and 1.6 ml PBS were added). Each mouse was administered with 200 ⁇ by gavage (1 mg/day/mouse of Moringa/Ml).
- mice were tested for serum alanine transaminase (ALT) at 24 hours after Con A administration. Serum ALT levels were measured by an automatic analyzer.
- NASH Nonalcoholic Steatohepatitis
- mice were fed, starting at the age of 10 weeks (day #0), in a liberal, restriction-free, commercially available HFD (Harlan, TD88137; 42% of the calories are from fat), until their sacrifice after 25 weeks. Mice were weighted weekly.
- Spleens were obtained from sacrificed mice and were kept in RPMI-1640 supplemented with fetal calf serum (FCS). Spleens were crushed through a 70 ⁇ nylon cell strainer and centrifuged (1250 rpm for 7 min) to remove debris. Red blood cells were lysed with 1 ml of cold 155 mM ammonium chloride lysis buffer and immediately centrifuged (1250 rpm for 3 min). The splenocytes were then washed and suspended in 1 ml of FACS buffer. Any remaining connective tissue was removed. The viability, as assessed using trypan blue staining, was above 90%.
- FCS fetal calf serum
- Flow cytometry was performed on splenocytes lymphocytes with antibodies for CD4, CD8, (eBioscience, San Diego, CA, USA) epitopes using the LSR-II. Analysis was performed using FSC express software.
- Serum Interleukin l-a(IL-la) Serum Interleukin l-a(IL-la), levels were measured in each animal using Custom Q-plex- lOplex ELISA-based Chemiluminescent assay (Quansys Biosciences, Logan, UT, USA), according to manufacturer's instructions.
- TGF Transforming Growth Factor beta
- AST serum Aspartate aminotransferase
- ALT Alanine aminotransferase
- gGT gammaglutamyl transferase
- TG Serum triglyceride
- the total body fat content was evaluated in-vivo by using EchoMRITM-100H (EchoMRI, Houston, TX, USA) at week 25, prior to sacrifice.
- H&E hematoxylin-eosin
- a high-fat diet (HFD) is widely used to produce hepatic steatosis and nonalcoholic steatohepatitis (NASH) in experimental animals.
- NASH was induced by feeding mice, starting at the age of 10 weeks with HFD, as detailed above.
- mice were administered with CardioAid and Lunasin as described above.
- mice were orally fed (in addition to the HFD), by gavage, three times a week for 25 weeks as indicated below: Group A did not received any treatment and served as a control; Group B received CardioAid (3 mg/mouse/feed) and Group C received Lunasin (LunaRichX, 3 mg/mouse/feed).
- Group A did not received any treatment and served as a control
- Group B received CardioAid (3 mg/mouse/feed)
- Group C received Lunasin (LunaRichX, 3 mg/mouse/feed).
- the effect of the treatment on the systemic immune system was determined by FACS analysis and by measuring the levels of serum cytokines.
- liver enzymes levels, liver histology, total body fat, liver triglycerides and glucose levels were analyzed as described above.
- Figure 2 shows the effect of treatment on serum cytokines profile.
- a significant decrease in ILlot was noted (From 137.4 pg/mL to 24.8 pg/mL and 51.0 pg/mL, in controls vs. CardioAid and LunaRichX, respectively, p value ⁇ 0.05 for CardioAid), along with a significant increase in TGFp serum levels shown in Fig. 2B (From 4.4 ng/mL to 63.4 ng/mL and 79.3 ng/mL, in controls vs. CardioAid and LunaRichX, respectively, p values ⁇ 0.001).
- the data suggests an immunomodulatory effect of both compounds on the systemic immune system.
- Fig. 3A and Fig. 3B show the effect of treatment on several serum liver enzymes levels (ALT and AST in Fig. 3A and GGT in Fig. 3B). Both treated groups showed a decreased serum liver enzymes levels, hepatocellular and Cholestatic. ALT was decreased from 900 U/L for the control group to 264 U/L for CardioAid treated group and 417 U/L for LunaRichX treated group (p value NS). A similar decrease was noted at AST levels (1021 U/L, 268 U/L and 426 U/L, respectively. P value ⁇ 0.05 for CardioAid) and GGT levels (55 U/L, 22 U/L and 29 U/L, respectively, both p values ⁇ 0.05).
- Figure 4 shows the effect of treatment on liver histology, where a significant improvement in the NAS score, which is a quantitative score for NASH, and in the ballooning, which is the hisotological hallmark for NASH was seen in the LunaRichX -treated mice (as shown in Fig. 4A and Fig. 4B, respectively).
- Figure 5 shows the effect of treatment on total body fat (%) as measured by EchoMRI.mA, as detailed above. As evident from Figure 5, decrease from 37.2% in the control group to 32.7% in the CardioAid-treated group (p value ⁇ 0.05) and to 35.3% in the LunaRichX-treated group were observed.
- Figure 6 shows the effect of treatment on triglycerides (TG). As demonstrated in Figure 6, a significant decrease was noted at the serum TG levels, from 103 mg/dL in the control group to 65 mg/dL in the CartioAid treated group (p value ⁇ 0.05) and to 75 mg/dL in the LunaRichX treated group.
- Figure 7 shows the effect of treatment on serum glucose levels.
- a significant reduction at serum glucose level was noted for both treatments, namely CardioAid and LunaRichX.
- the serum glucose level in the control group was 170.3 mg/dL, wherein it was only 117 mg/dL in the CardioAid treated group and 116.6 mg/dL in the LunaRichX treated group (both p values ⁇ lxlO "10 ).
- CardioAid protects against the increase of serum sugar levels when added to high-sugar beverages
- mice The effect of CardioAid administered with a high sugar soft drink on the serum glucose level was examined in mice, as detailed above. Briefly, male C57B1/6 mice (11-12 weeks old) were obtained from Harlan Laboratories (Jerusalem, Israel) and were administered standard laboratory chow and water ad libitum. Mice were divided into the following experimental and control groups:
- mice were administered with a chocolate drink prepared as described above with or without CardioAid, following on overnight fast. All animals were followed-up by measurements of serum blood glucose for three hours on the following time points: 0, 15 min, 30, 60, 90, 120, 180.
- CardioAid The inventors have next examined the protective effect of CardioAid on additional sugar sweetened beverages, specifically soda.
- Mice were administered with a cola drink prepared as described above with or without CardioAid and different combinations thereof, following on overnight fast. All animals were followed-up by measurements of serum blood glucose for three hours on the following time points: 0, 15 min, 30, 60, 90, 120, 180.
- the results show the increase in blood sugar levels between time 0 and 15 minutes and from 0 to 30 minutes after drinking of Cola showing a synergism between CardioAid and all five adjuvants.
- Table 4 A synergistic effect between CardioAid and adjuvants in reducing blood sugar levels following administration of soft drinks.
- CardioAid As shown above, addition of CardioAid to soft drinks, either alone or in combination with different additional compounds and adjuvants, clearly reduce the elevation in blood sugar levels caused by consumption of SSB. Moreover, as shown in Table 4, the protective effect of CardioAid has been synergistically enhanced when different combinations of CardioAid were used.
- Moringa is a plant native to the sub-Himalayan areas of India, Pakistan, Bangladesh, and Afghanistan and is also grown in many other areas of the world. As indicated herein before, the leaves, bark, flowers, fruit, seeds, and root are used to prepare different extracts applicable in treating different conditions.
- the Soybean extracts were previously shown by the inventors as performing hepatoprotective effect. The inventors therefore examined the hepatoprotective effect of Moringa, and the potential effect of combinations thereof with different soy extracts. To examine the hepatoprotective effect of Moringa preparations on liver, the inventors used mice model of autoimmune hepatitis induced by injecting Concavalin A (Con A).
- mice were treated on days 1 and 2 with Moringa and soy extracts as specified in Table 5.
- Table 5 Experimental and control groups:
- ALT serum alanine transaminase
Landscapes
- Health & Medical Sciences (AREA)
- Life Sciences & Earth Sciences (AREA)
- Chemical & Material Sciences (AREA)
- General Health & Medical Sciences (AREA)
- Public Health (AREA)
- Veterinary Medicine (AREA)
- Animal Behavior & Ethology (AREA)
- Pharmacology & Pharmacy (AREA)
- Medicinal Chemistry (AREA)
- Engineering & Computer Science (AREA)
- Epidemiology (AREA)
- Natural Medicines & Medicinal Plants (AREA)
- Mycology (AREA)
- Botany (AREA)
- Polymers & Plastics (AREA)
- Nutrition Science (AREA)
- Food Science & Technology (AREA)
- Bioinformatics & Cheminformatics (AREA)
- Diabetes (AREA)
- Proteomics, Peptides & Aminoacids (AREA)
- General Chemical & Material Sciences (AREA)
- Nuclear Medicine, Radiotherapy & Molecular Imaging (AREA)
- Organic Chemistry (AREA)
- Chemical Kinetics & Catalysis (AREA)
- Medical Informatics (AREA)
- Biotechnology (AREA)
- Molecular Biology (AREA)
- Microbiology (AREA)
- Gastroenterology & Hepatology (AREA)
- Alternative & Traditional Medicine (AREA)
- Immunology (AREA)
- Endocrinology (AREA)
- Obesity (AREA)
- Hematology (AREA)
- Emergency Medicine (AREA)
- Pediatric Medicine (AREA)
- Medicines Containing Plant Substances (AREA)
- Medicines That Contain Protein Lipid Enzymes And Other Medicines (AREA)
- Pharmaceuticals Containing Other Organic And Inorganic Compounds (AREA)
- Acyclic And Carbocyclic Compounds In Medicinal Compositions (AREA)
Abstract
Description
Claims
Priority Applications (7)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| JP2018512325A JP2018530319A (en) | 2015-09-03 | 2016-09-01 | Combined composition for blood glucose control, liver protection, and prevention and treatment of related medical conditions |
| CA2997231A CA2997231A1 (en) | 2015-09-03 | 2016-09-01 | Combined compositions for controlling blood sugar levels, hepatoprotection, and for prevention and treatment of related medical conditions |
| US15/757,583 US20180243357A1 (en) | 2015-09-03 | 2016-09-01 | Combined compositions for controlling blood sugar levels, hepatoprotection, and for prevention and treatment of related medical conditions |
| AU2016314373A AU2016314373A1 (en) | 2015-09-03 | 2016-09-01 | Combined compositions for controlling blood sugar levels, hepatoprotection, and for prevention and treatment of related medical conditions |
| EP16840983.7A EP3344071A4 (en) | 2015-09-03 | 2016-09-01 | COMBINED COMPOSITIONS FOR REGULATING GLYCEMIA LEVELS, HEPATOPROTECTION, AND FOR THE PREVENTION AND TREATMENT OF ASSOCIATED MEDICAL CONDITIONS |
| CN201680063990.0A CN108347988A (en) | 2015-09-03 | 2016-09-01 | Compositions for controlling blood sugar levels, protecting the liver and for preventing and treating related medical conditions in combination |
| IL257813A IL257813A (en) | 2015-09-03 | 2018-03-01 | Combined preparations to control blood sugar levels, protect the liver and treat related medical conditions |
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| US201562213718P | 2015-09-03 | 2015-09-03 | |
| US62/213,718 | 2015-09-03 |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| WO2017037712A1 true WO2017037712A1 (en) | 2017-03-09 |
Family
ID=58186995
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| PCT/IL2016/050959 Ceased WO2017037712A1 (en) | 2015-09-03 | 2016-09-01 | Combined compositions for controlling blood sugar levels, hepatoprotection, and for prevention and treatment of related medical conditions |
Country Status (8)
| Country | Link |
|---|---|
| US (1) | US20180243357A1 (en) |
| EP (1) | EP3344071A4 (en) |
| JP (1) | JP2018530319A (en) |
| CN (1) | CN108347988A (en) |
| AU (1) | AU2016314373A1 (en) |
| CA (1) | CA2997231A1 (en) |
| IL (1) | IL257813A (en) |
| WO (1) | WO2017037712A1 (en) |
Cited By (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| WO2019085773A1 (en) * | 2017-11-06 | 2019-05-09 | 中山大学 | Oxyntomodulin analogue glp-1r/gcgr dual target agonist polypeptide for treating idiopathic pulmonary interstitial fibrosis |
| US20250248925A1 (en) * | 2023-06-23 | 2025-08-07 | Vaxess Technologies, Inc. | Microneedle array patches (maps), systems, and methods for manufacturing and using same |
Families Citing this family (3)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| WO2021080928A1 (en) | 2019-10-20 | 2021-04-29 | Alfredo Flores Galvez | Products and methods using sonication to increase bioactivity of soy peptides |
| CN110897164A (en) * | 2019-12-26 | 2020-03-24 | 广州莱可福生物科技有限公司 | Composition containing phytosterol and application of composition in improving blood sugar |
| JP2023096635A (en) * | 2021-12-27 | 2023-07-07 | サッポロビール株式会社 | Non-alcoholic beer-taste beverage, method for producing non-alcoholic beer-taste beverage, and method for improving flavor of non-alcoholic beer-taste beverage |
Citations (4)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| EP1731158A1 (en) * | 2004-03-31 | 2006-12-13 | Morinaga Milk Industry Co., Ltd. | Drugs, foods and drinks for ameliorating hyperglycemia |
| WO2007061871A1 (en) * | 2005-11-23 | 2007-05-31 | The Coca-Cola Company | High-potency sweetener composition with phytosterol and compositions sweetened therewith |
| JP2011057597A (en) * | 2009-09-09 | 2011-03-24 | Fancl Corp | Hyperglycemic inhibitor |
| WO2012017435A2 (en) * | 2010-08-06 | 2012-02-09 | Hadasit Medical Research Services And Development Ltd. | Soybean extracts for the treatment of hepatic disorders |
Family Cites Families (6)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN1681514A (en) * | 2002-03-14 | 2005-10-12 | 福布斯梅迪泰克公司 | A method of treating diabetes mellitus including conditions associated with diabetes mellitus and complications of diabetes mellitus |
| JP2007533632A (en) * | 2003-09-30 | 2007-11-22 | エンゾー セラピューティクス, インコーポレイテッド | Glucocerebroside treatment of disease |
| US20090232916A1 (en) * | 2004-08-09 | 2009-09-17 | Avidor Shulman | Food products for diabetics |
| CN101312660B (en) * | 2005-11-23 | 2013-07-17 | 可口可乐公司 | High-potency sweetener for weight management and compositions sweetened therewith |
| US20160015776A1 (en) * | 2013-03-15 | 2016-01-21 | Soy Labs, Llc | Products and methods using lunasin enriched soy extract mixtures to reduce free fatty acid levels, increase leptin levels and increase adiponectin levels in plasma |
| JP6294710B2 (en) * | 2013-03-22 | 2018-03-14 | ライオン株式会社 | Glucose metabolism improver |
-
2016
- 2016-09-01 AU AU2016314373A patent/AU2016314373A1/en not_active Abandoned
- 2016-09-01 EP EP16840983.7A patent/EP3344071A4/en not_active Withdrawn
- 2016-09-01 CA CA2997231A patent/CA2997231A1/en not_active Abandoned
- 2016-09-01 US US15/757,583 patent/US20180243357A1/en not_active Abandoned
- 2016-09-01 WO PCT/IL2016/050959 patent/WO2017037712A1/en not_active Ceased
- 2016-09-01 CN CN201680063990.0A patent/CN108347988A/en active Pending
- 2016-09-01 JP JP2018512325A patent/JP2018530319A/en active Pending
-
2018
- 2018-03-01 IL IL257813A patent/IL257813A/en unknown
Patent Citations (4)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| EP1731158A1 (en) * | 2004-03-31 | 2006-12-13 | Morinaga Milk Industry Co., Ltd. | Drugs, foods and drinks for ameliorating hyperglycemia |
| WO2007061871A1 (en) * | 2005-11-23 | 2007-05-31 | The Coca-Cola Company | High-potency sweetener composition with phytosterol and compositions sweetened therewith |
| JP2011057597A (en) * | 2009-09-09 | 2011-03-24 | Fancl Corp | Hyperglycemic inhibitor |
| WO2012017435A2 (en) * | 2010-08-06 | 2012-02-09 | Hadasit Medical Research Services And Development Ltd. | Soybean extracts for the treatment of hepatic disorders |
Non-Patent Citations (3)
| Title |
|---|
| MISAWA, ERIKO ET AL.: "Administration of phytosterols isolated from Aloe vera gel reduce visceral fat mass and improve hyperglycemia in Zucker diabetic fatty (ZDF) rats.", OBESITY RESEARCH & CLINICAL PRACTICE, vol. 2, no. 4, 31 December 2008 (2008-12-31), pages 239 - 245, XP025659142 * |
| PLAT, JOGCHUM ET AL.: "Protective role of plant sterol and stanol esters in liver inflammation: insights from mice and humans.", PLOS ONE, vol. 10, no. 9, 10 September 2014 (2014-09-10), XP055367727, Retrieved from the Internet <URL:http://journals.plos.org/plosone/article?id=10.1371/journal.pone.0110758> [retrieved on 20141030] * |
| See also references of EP3344071A4 * |
Cited By (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| WO2019085773A1 (en) * | 2017-11-06 | 2019-05-09 | 中山大学 | Oxyntomodulin analogue glp-1r/gcgr dual target agonist polypeptide for treating idiopathic pulmonary interstitial fibrosis |
| US20250248925A1 (en) * | 2023-06-23 | 2025-08-07 | Vaxess Technologies, Inc. | Microneedle array patches (maps), systems, and methods for manufacturing and using same |
Also Published As
| Publication number | Publication date |
|---|---|
| CA2997231A1 (en) | 2017-03-09 |
| EP3344071A1 (en) | 2018-07-11 |
| US20180243357A1 (en) | 2018-08-30 |
| AU2016314373A1 (en) | 2018-03-29 |
| EP3344071A4 (en) | 2019-10-16 |
| CN108347988A (en) | 2018-07-31 |
| JP2018530319A (en) | 2018-10-18 |
| IL257813A (en) | 2018-04-30 |
Similar Documents
| Publication | Publication Date | Title |
|---|---|---|
| JP6436443B2 (en) | Composition comprising sulforaphane or sulforaphane precursor and milk thistle extract or powder | |
| JP7011885B2 (en) | Composition that promotes intestinal health | |
| US20180243357A1 (en) | Combined compositions for controlling blood sugar levels, hepatoprotection, and for prevention and treatment of related medical conditions | |
| WO2013032744A2 (en) | Composition and use of a formulation to increase the ratio of gastrointestinal microbiota in phylum bacteriodites to microbiota of firmuctes phylum | |
| JP2009511468A5 (en) | ||
| US20040234631A1 (en) | Composition comprising soy and use thereof in the provention and/or treatment of various diseases | |
| US20250339485A1 (en) | Feijoa fruit extract | |
| Singh et al. | Comparative evaluation of glipizide and fenugreek (Trigonella foenum-graecum) seeds as monotherapy and combination therapy on glycaemic control and lipid profile in patients with type 2 diabetes mellitus | |
| JP3908513B2 (en) | Liver function improving agent | |
| KR20030070147A (en) | Remedies/preventives for inflammatory diseases | |
| Klatz | The Official Anti-Aging Revolution: Stop the Clock Time is on Your Side for a Younger, Stronger, Happier You | |
| US20170239306A1 (en) | Soybean extracts and combinations thereof with polyethoxylated castor oil and other adjuvants for controling blood sugar levels and for hepatoprotection | |
| US8993551B2 (en) | Composition for the regulation of the human immune system and the prevention and treatment of diseases thereof | |
| US20170035791A1 (en) | Combination of beta-glucosylceramide and polyethoxylated castor oil and other adjuvants for controling blood sugar levels, immunoprotection and hepatoprotection | |
| JP2007269631A (en) | Agent for suppressing accumulation of neutral fat | |
| Apte | Anti-diabetic effects of excipients: possibility of formulation of an anti-diabetic dosage form using pharmaceutical excipients or their constituents, or food additives | |
| CA2538494C (en) | Composition for modulating blood parameters | |
| WO2014145086A2 (en) | Products and methods using lunasin-enriched soy extract mixtures to reduce free fatty acid levels, increase leptin levels and increase adiponectin levels in plasma | |
| JP2006104080A (en) | Composition and health food having prophylactic or therapeutic effect on gout and bloodstream disorder caused by uric acid | |
| Derosa et al. | Possible therapies for obesity: Focus on the available options for its treatment | |
| RU2651711C1 (en) | Drug for gastrointestinal tract and hepatobiliary system diseases treatment and preventing recrudescences | |
| RU2785683C2 (en) | Compositions containing sulforaphane or sulforaphane precursor and extract or powder of milk thistle | |
| RU2360695C1 (en) | Agent "extraholm" for sugar control in patients suffering from diabetes complicated by hepatopathy and bile passages disorders | |
| WO2023127961A1 (en) | Gaba-containing composition | |
| Pawar et al. | Anti-diabetic uses of some Common Herbs in Pastoral Region of Dhule District of Maharashtra |
Legal Events
| Date | Code | Title | Description |
|---|---|---|---|
| 121 | Ep: the epo has been informed by wipo that ep was designated in this application |
Ref document number: 16840983 Country of ref document: EP Kind code of ref document: A1 |
|
| ENP | Entry into the national phase |
Ref document number: 2997231 Country of ref document: CA Ref document number: 2018512325 Country of ref document: JP Kind code of ref document: A |
|
| WWE | Wipo information: entry into national phase |
Ref document number: 257813 Country of ref document: IL |
|
| WWE | Wipo information: entry into national phase |
Ref document number: 15757583 Country of ref document: US |
|
| NENP | Non-entry into the national phase |
Ref country code: DE |
|
| ENP | Entry into the national phase |
Ref document number: 2016314373 Country of ref document: AU Date of ref document: 20160901 Kind code of ref document: A |
|
| REG | Reference to national code |
Ref country code: BR Ref legal event code: B01A Ref document number: 112018004253 Country of ref document: BR |
|
| WWE | Wipo information: entry into national phase |
Ref document number: 2016840983 Country of ref document: EP |
|
| ENP | Entry into the national phase |
Ref document number: 112018004253 Country of ref document: BR Kind code of ref document: A2 Effective date: 20180302 |







