WO2012058424A1 - Hypersulfated disaccharides to treat elastase related disorders - Google Patents
Hypersulfated disaccharides to treat elastase related disorders Download PDFInfo
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- WO2012058424A1 WO2012058424A1 PCT/US2011/058085 US2011058085W WO2012058424A1 WO 2012058424 A1 WO2012058424 A1 WO 2012058424A1 US 2011058085 W US2011058085 W US 2011058085W WO 2012058424 A1 WO2012058424 A1 WO 2012058424A1
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- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
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- A61K31/00—Medicinal preparations containing organic active ingredients
- A61K31/70—Carbohydrates; Sugars; Derivatives thereof
- A61K31/7016—Disaccharides, e.g. lactose, lactulose
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- A61K31/70—Carbohydrates; Sugars; Derivatives thereof
- A61K31/715—Polysaccharides, i.e. having more than five saccharide radicals attached to each other by glycosidic linkages; Derivatives thereof, e.g. ethers, esters
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- A61K31/16—Amides, e.g. hydroxamic acids
- A61K31/165—Amides, e.g. hydroxamic acids having aromatic rings, e.g. colchicine, atenolol, progabide
- A61K31/167—Amides, e.g. hydroxamic acids having aromatic rings, e.g. colchicine, atenolol, progabide having the nitrogen of a carboxamide group directly attached to the aromatic ring, e.g. lidocaine, paracetamol
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- A61K31/00—Medicinal preparations containing organic active ingredients
- A61K31/33—Heterocyclic compounds
- A61K31/395—Heterocyclic compounds having nitrogen as a ring hetero atom, e.g. guanethidine or rifamycins
- A61K31/435—Heterocyclic compounds having nitrogen as a ring hetero atom, e.g. guanethidine or rifamycins having six-membered rings with one nitrogen as the only ring hetero atom
- A61K31/44—Non condensed pyridines; Hydrogenated derivatives thereof
- A61K31/445—Non condensed piperidines, e.g. piperocaine
- A61K31/4523—Non condensed piperidines, e.g. piperocaine containing further heterocyclic ring systems
- A61K31/4545—Non condensed piperidines, e.g. piperocaine containing further heterocyclic ring systems containing a six-membered ring with nitrogen as a ring hetero atom, e.g. pipamperone, anabasine
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- A61K31/33—Heterocyclic compounds
- A61K31/395—Heterocyclic compounds having nitrogen as a ring hetero atom, e.g. guanethidine or rifamycins
- A61K31/435—Heterocyclic compounds having nitrogen as a ring hetero atom, e.g. guanethidine or rifamycins having six-membered rings with one nitrogen as the only ring hetero atom
- A61K31/47—Quinolines; Isoquinolines
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- A61K31/395—Heterocyclic compounds having nitrogen as a ring hetero atom, e.g. guanethidine or rifamycins
- A61K31/495—Heterocyclic compounds having nitrogen as a ring hetero atom, e.g. guanethidine or rifamycins having six-membered rings with two or more nitrogen atoms as the only ring heteroatoms, e.g. piperazine or tetrazines
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- A61K31/505—Pyrimidines; Hydrogenated pyrimidines, e.g. trimethoprim
- A61K31/519—Pyrimidines; Hydrogenated pyrimidines, e.g. trimethoprim ortho- or peri-condensed with heterocyclic rings
- A61K31/52—Purines, e.g. adenine
- A61K31/522—Purines, e.g. adenine having oxo groups directly attached to the heterocyclic ring, e.g. hypoxanthine, guanine, acyclovir
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- A61K31/56—Compounds containing cyclopenta[a]hydrophenanthrene ring systems; Derivatives thereof, e.g. steroids
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- A61K31/56—Compounds containing cyclopenta[a]hydrophenanthrene ring systems; Derivatives thereof, e.g. steroids
- A61K31/57—Compounds containing cyclopenta[a]hydrophenanthrene ring systems; Derivatives thereof, e.g. steroids substituted in position 17 beta by a chain of two carbon atoms, e.g. pregnane or progesterone
- A61K31/573—Compounds containing cyclopenta[a]hydrophenanthrene ring systems; Derivatives thereof, e.g. steroids substituted in position 17 beta by a chain of two carbon atoms, e.g. pregnane or progesterone substituted in position 21, e.g. cortisone, dexamethasone, prednisone or aldosterone
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- A61K31/58—Compounds containing cyclopenta[a]hydrophenanthrene ring systems; Derivatives thereof, e.g. steroids containing heterocyclic rings, e.g. danazol, stanozolol, pancuronium or digitogenin
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- A61K47/00—Medicinal preparations characterised by the non-active ingredients used, e.g. carriers or inert additives; Targeting or modifying agents chemically bound to the active ingredient
- A61K47/30—Macromolecular organic or inorganic compounds, e.g. inorganic polyphosphates
- A61K47/36—Polysaccharides; Derivatives thereof, e.g. gums, starch, alginate, dextrin, hyaluronic acid, chitosan, inulin, agar or pectin
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- A61K9/00—Medicinal preparations characterised by special physical form
- A61K9/0012—Galenical forms characterised by the site of application
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- A61K9/0073—Sprays or powders for inhalation; Aerolised or nebulised preparations generated by other means than thermal energy
- A61K9/0078—Sprays or powders for inhalation; Aerolised or nebulised preparations generated by other means than thermal energy for inhalation via a nebulizer such as a jet nebulizer, ultrasonic nebulizer, e.g. in the form of aqueous drug solutions or dispersions
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- A61K9/12—Aerosols; Foams
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- A—HUMAN NECESSITIES
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- A61P11/00—Drugs for disorders of the respiratory system
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- C—CHEMISTRY; METALLURGY
- C13—SUGAR INDUSTRY
- C13K—SACCHARIDES OBTAINED FROM NATURAL SOURCES OR BY HYDROLYSIS OF NATURALLY OCCURRING DISACCHARIDES, OLIGOSACCHARIDES OR POLYSACCHARIDES
- C13K13/00—Sugars not otherwise provided for in this class
Definitions
- the present invention relates to the use of a hypersulfated disaccharide compound of formula I as further described below and other hypersulfated disaccharides as disclosed herein in the treatment of diseases or conditions associated with leukocyte elastase.
- the present invention relates to formulations of a compound of formula I to improve lung function (tracheal mucous velocity) and/or to treat/mitigate diseases or conditions such as chronic obstructive pulmonary disease (COPD) and/or cystic fibrosis (CF).
- COPD chronic obstructive pulmonary disease
- CF cystic fibrosis
- Emphysema and chronic bronchitis are sub-types of COPD.
- the walls of the alveoli are structurally damaged which ultimately reduces the surface area for gas exchange and lung capacity.
- Chronic bronchitis is characterized by excessive mucous production and airflow limitations develop with disease progression.
- Patients with COPD have significant airflow limitations and eventually lose the ability to adequately oxygenate the blood.
- COPD is a leading cause of death worldwide and the rate of COPD-related deaths is rising. New England . of Med. Sep. 16, 2010.
- Progressive loss of lung function, a hallmark of COPD is not prevented by currently available therapy. There is thus a severe need for drugs or effective treatments for this disease.
- Elastases are typically released from leukocytes such as macrophages and neutrophils and contribute to the significant structural damage caused in COPD.
- Human neutrophil elastase (HNE) is known as a very potent protease that can degrade the macromolecular components of connective tissue such as elastin, induces mucus hypersecretion and causes or is associated with diseases such as COPD, CF and other inflammatory disorders such as rheumatoid arthritis.
- Elastase is also known to bind to adhesion molecules such as Mac- 1 which regulates or participates in neutrophil adhesion and transmigration.
- elastase can cleave intercellular adhesion molecule 1 (ICAM- 1 ) which is a ligand for Mac- 1 .
- IAM- 1 intercellular adhesion molecule 1
- the disease is currently treated with inhaled anticholinergic bronchodilating agents (ipratropium bromide, tiotropium) or inhaled beta agonists (albuterol, salmeterol or formoterol) or the combination of such agents with steroids (Advair®, Symbicort®) or methylxanthines (theophylline).
- inhaled anticholinergic bronchodilating agents ipratropium bromide, tiotropium
- beta agonists albuterol, salmeterol or formoterol
- steroids Advanced®, Symbicort®
- methylxanthines theophylline
- the current therapy includes DNASE, inhaled antibiotics (e.g. tobramycin), anti-inflammatory agents (e.g. high dose ibuprofen) along with the above treatment(s) for COPD.
- Heparin is extremely potent against HNE, both in vitro and in vivo. This potency and relative activity is apparently due to the specific chemical properties of heparin's molecular structure. These properties include mass, chain length, degree of sulfation, charge density, specific sulfation and iduronic acid content. Heparin is also known to affect leukocyte interactions with vascular endothelium and it also affects the release of elastase in addition to being an inhibitor of elastase. It is also known that heparin has
- a short length, low molecular weight polysulfated disaccharide of formula I treats or mitigates the effects of human neutrophil elastase and is thus useful as a 'drug to treat conditions or diseases associated with elevated elastase activity or an imbalance of elastase/anti-elastase activities.
- United States Patent No. 7,056,898 discloses and claims certain hypersulfated disaccharides and methods of using same to treat certain inflammatory disorders.
- the '898 patent specifically describes the use of the claimed compounds to treat pulmonary inflammations including asthma and asthma-related pathologies, such as allergic reactions or an inflammatory disease or condition.
- the compounds disclosed therein are described as being capable of preventing, reversing and/or alleviating the symptoms of asthma and asthma-related pathologies, particularly die late phase response in asthma patients following antigen stimulation.
- U.S. Provisional 61 /266,361 discloses that certain formulations comprising the hypersulfated disaccharides recited herein and a delivery agent selected from the group consisting of a pharmaceutically acceptable natural or synthetic polymer as well as other vehicles that heretofore have been utilized to improve delivery of large compounds (e.g., those compounds having molecular weights of greater than 4,500 daltons as average molecular weight) have enhanced absorption/bioavailability/efficacy relative to the same compounds delivered orally without the claimed additives.
- a delivery agent selected from the group consisting of a pharmaceutically acceptable natural or synthetic polymer as well as other vehicles that heretofore have been utilized to improve delivery of large compounds (e.g., those compounds having molecular weights of greater than 4,500 daltons as average molecular weight) have enhanced absorption/bioavailability/efficacy relative to the same compounds delivered orally without the claimed additives.
- the present invention relates to pharmaceutical formulations comprising a compound of formula I and pharmaceutically acceptable salts thereof and a vehicle suitable for inhalation,
- , R , R3, R , Rj and R ⁇ - are independently selected from the group consisting of H, SO3H or PO3H and provided that at least two of R
- the present invention further relates to formulations having compounds of formula I wherein at least three of Ri-R ⁇ are selected from SO3H or PO3H.
- the present invention further relates to formulations having compounds of formula 1 wherein at least four of R1 -R6 are selected from SO3H or PO3H.
- the present invention further relates to formulations having compounds of formula 1 wherein at least five of R1- 6 are selected from SO3H or PO 3 H.
- the present invention preferably relates to a compound of formula 1 and pharmaceutically acceptable salts thereof wherein R]-R ⁇ ; are selected from SO3H.
- the present invention also relates to formulations having a compound of formula I wherein RpR6 are independently selected from SO3H or PO3H.
- the invention further includes pro-drugs, derivatives, active metabolites, partially ionized and fully ionized derivatives of the compounds of formula I and stereoisomers thereof.
- the monomers which make up the disaccharides of the invention may be D or L isomers and the hydroxyl moieties or sulfated or phosphated versions thereof around the carbocyclic ring (or intermediates thereof) may have the alpha or beta designation at any particular stereocenter.
- the linking oxygen atom between the monosaccharide moieties may also be alpha or beta.
- the molecular weight of the compounds of the invention is typically less than 1 ,000 daltons.
- the present invention also relates to the use of polysulfated disaccharides having two six-membered rings in the treatment of elastase related disorders.
- the most preferred embodiment relates to an aerosol/nebulizable formulation containing a compound of formula I and pharmaceutically acceptable salts thereof wherein Ri-Rc are selected from SO3H.
- the present invention also relates to oral formulations of a compound of formula I with the variables as defined above for the treatment of elastase related disorders.
- the present invention also encompasses a method of treating an elastase- associated condition in an organism in need of treatment thereof comprising administering a pharmaceutically effective amount of a compound comprising a compound of formula I
- -R 6 are independently selected from SO 3 H, PO3H or H and provided that at least two of R
- Figure 1 illustrates the effects of inhaled hypersulfated disaccharide on the HNE- induced reduction in Tracheal Mucus Velocity (TIvlV).
- Figure 2 shows the effects of equivalent doses of disaccharide sodium on the HNE-induced effects.
- FIG. 3 illustrates that hypersulfated disaccharide can also reverse the effects of
- Figure 4 illustrates the positive effects of oral hypersulfated disaccharide in a Carbopol formulation on HNE-induced Reduction in TMV.
- the present invention relates to pharmaceutical formulations suitable for delivery to the lungs of a patient in need of such treatment and uses thereof wherein the formulation comprises a compound of formula I and phannaceutically acceptable salts thereof
- Ri, R 2 , R3 ⁇ 4, 4, Rs and Re are independently selected from the group consisting of H, SO3H or PO3H and provided that at least two is selected from SO3H or
- the present invention also relates to a pharmaceutical formulation suitable for delivery to the lungs of a patient in need of such treatment comprising
- R,, R., and R5 are independently selected from H, SO .3 ⁇ 4 H or PO 3 H and R 2 .
- R3 and Rc are independently selected from SC H or PO . iH .
- the present invention also relates to a pharmaceutical formulation suitable for delivery to the lungs of a patient in need of such treatment comprising
- R 2 and R are independently selected from H, SO3H or PO3H and Ri, R3, R4 and Rs are independently selected from SO3H or PO3H .
- the invention relates to a pharmaceutical formulation suitable for delivery to the lungs of a patient in need of such treatment comprising
- R R 2 and R f are independently selected from H, SO 3 H or PO 3 H and R3 ⁇ 4, R4 and R5 are independently selected from SO3H or PO3H .
- the present invention relates to a pharmaceutical formulation suitable for delivery to the lungs of a patient in need of such treatment comprising (i) a compound of formula II
- , R 2 , R4, R5 and Rr are independently selected from the group consisting of SO 3 H or POjH .
- the invention relates to a pharmaceutical formulation suitable for delivery to the lungs of a patient in need of such treatment comprising (i) a compound of formula II and pharmaceutically acceptable salts thereof
- and R4 are SOjH and R2, R5 and e are independently selected from H, SO. ⁇ H or PO H .
- the invention relates to a
- composition suitable for delivery to the lungs of a patient in need of such treatment comprising (i) a compound of formula II and pharmaceutically acceptable salts thereof
- R t is SOiH
- R 2 is H
- R 4 , R5 and R 6 are independently selected from SO3H or
- the present invention also relates to liquid or solid dosage forms suitable for delivery to the lungs of a patient in need of such treatment comprising a compound of formula I or II and their pharmaceutically acceptable salts with R[ -Rc, as defined above.
- the present invention also encompasses a method of treating or alleviating a condition associated with elastase or in imbalance of elastase/anti-elastase comprising administration of (i) a pharmaceutically effective amount of a formulation comprising a compound of formula I
- R ⁇ -R are independently selected from SO 3 H, PO H or H and provided that at least two of Ri-R fi is SO 3 H or PO3H.
- the present invention preferably relates to a nebulizable, dry-powder or aerosol pharmaceutical formulation comprising a compound of formula I wherein Ri , R?, R3, R 4 , R5 and R6 are selected from the variables shown in Table 1 as compounds 1- 1.4 .
- Table 1
- the compounds in the formulation are selected from a metal salt of a compound of formula I shown above in Table 1 wherein the carboxylic acid group is ionized and each sulfate group around the disaccharide is ionized to form a metal salt wherein the metals are selected from, for example, sodium.
- other salts including amine salts may form at the carboxylate or sulfate positions.
- the most preferred compound is the fully ionized form as the sodium salt of compound 14
- the compounds of the invention may be obtained as described herein in the examples from, for example, heparin. Although the specific process used utilized porcine heparin, heparin from any mammal may be used to produce the compounds of the invention. In addition, the compounds may be derived synthetically. Various other polysaccharides may also be utilized as source materials for the recited disaccharides including, but not limited to, heparan sulfate, dermatan sulfate, chondroitin sulfate, pentosan polysulfate and other glycosaminoglycans and mucopolysaccharides.
- the compounds can generally be prepared by a process which comprises ( 1 ) dissolving heparin sodium in water and adjusting the pH to be slightly acidic (about pH 6) and (2) treating this solution with sodium nitrite (NaNO?) in an aqueous solution to form nitrous acid to depolymerize the heparin (and deaminate, for example,
- R 6 is H and the carboxy group (C0 2 H) is C0 2 " Na + and ( 10) treating the resulting disacchandes with a sulfate source (e.g. (CH ⁇ NSO. under suitable conditions to form the hypersulfated disacchandes utilized in the formulations of the invention.
- a sulfate source e.g. (CH ⁇ NSO. under suitable conditions to form the hypersulfated disacchandes utilized in the formulations of the invention.
- heparin and other carbohydrates or complex carbohydrates are chiral molecules with hydroxyl groups as well as sulfate groups or carboxylic acid groups present on the ring with set or absolute stereochemistry.
- the most common disaccharide unit in heparin is, for example, ldoA(2S)-GlcNS(6S) which is a 2-O-sulfated iduronic acid and 6-O-sulfated
- the source of the polysaccharide which generates the oligosaccharides and disacchandes utilized in the fonnulations of the invention will determine, for the most part, the absolute stereochemistry of the chiral centers around the carbohydrate rings. Additional sulfate groups are added by chemical means by the process described generally above or by any known means to afford the most active moieties (hypersulfated disacchandes and salts thereof) which are further purified to form pharmaceutical grade disaccharides which are further formulated with an excipient to form a formulation suitable for delivery to the lungs of a patient in need of treatment thereof.
- the molecule shown above as a polysulfated derivative will be active in the treatment of elastase-related disorders. Such polysulfated derivative would have more than the three sulfate groups shown above.
- Nuclear magnetic resonance imaging and/or other known structure identification methods may be used to determine the chemical structures of the molecules obtained from depolymerizing heparin (derived from any known source thereof) or other selected polysaccharide.
- the skilled artisan can use standard organic chemistry techniques to protect the desired hydroxyl moiety with a protecting group known to those of ordinary skill in the art.
- a compound of formula 1 as described above (or mixtures thereof) is then formulated with aerosol excipients or nebulizable excipients to form the formulations of the invention.
- the excipient is selected from the group consisting of any known or discovered inhalant, propellant and/or other additives that are suitable to deliver to the lungs of a patient.
- Such formulations and/or active ingredient described herein may also be delivered with or combined with or used in combination with known treatments for COPD, a sub-disease thereof, CF or other elastase related conditions.
- COPD the disease is currently treated with inhaled anticholinergic bronchodilating agents
- the current therapy includes DNASE, inhaled antibiotics (e.g. tobramycin), anti-inflammatory agents (e.g. high dose ibuprofen) along with the above treatment(s) for COPD.
- inhaled antibiotics e.g. tobramycin
- anti-inflammatory agents e.g. high dose ibuprofen
- the combination of the present invention and any one of the above- treatments for the named diseases may be used to treat a patient.
- Steroids are typically not effective for COPD patients so there is a tremendous need for therapy such as the claimed polysulfated disaccharide formulations.
- compositions of the invention can be delivered to the patient or other organism by any suitable known means.
- the percentages of the additive and type of additive added to the formulation relative to the active ingredient and other excipients will be based upon the type of formulation desired.
- suitable propellants as well as aqueous solutions may be employed to deliver the drug in a suitable delivery device such as an inhaler.
- suitable compositions of the invention further comprise pharmaceutically acceptable excipients suitable for aerosol delivery means or nebulizable means.
- the compounds of formula I and II form, as stated above, pharmaceutically acceptable salts.
- the metal salts include for example salts having Na, , Ca, Ng or Ba or Al, Zn, Cu, Zr, Ti, Bi, Mn or Os or salts formed by reacting the compounds of formula I or II with an organic base such as an amino acid or with any amine.
- the preferred salt is a sodium salt.
- the preferred formulations of the invention includes those compounds shown in Table 1 and which are hypersulfated disaccharides and which further include a delivery agent selected from, for example, an aqueous nebulizable solution.
- the preferred active ingredient is in the form of a sodium salt wherein sodium replaces the carboxylic hydrogen atom in formula 1.
- formulations are useful in treating those conditions associated with an elevated or abnormal level of human neutrophil elastase such as COPD, cystic fibrosis and the like.
- Cystic fibrosis is characterized by the production in patients lungs of an abnormally viscous mucus which leads to chronic infection by pathogenic bacteria.
- the bacterial colonies initiate an influx of inflammatory cells which further cause an elevation in inflammatory cytokines (IL-6 and TL-8).
- IL-6 and TL-8 inflammatory cytokines
- a drug which is mucolytic and pennits clearing of the mucus from the lungs and which also has anti-inflammatory and anti-elastase activity would help mitigate or treat this disease.
- treating or alleviating the symptoms means reducing, preventing and/or reversing the symptoms of the individual to which a formulation of the invention has been administered as compared to the symptoms of the individual or an individual which is untreated.
- TMV Tracheal mucus velocity
- Neutrophil elastase is used in the animal models (sheep) as an agent that induces mucociliary dysfunction and as an agent that depresses MCC for up to 8 hours in sheep.
- the compound of formula I was then used as a medicament to increase TMV and restore MCC in the elastase treated animals.
- Sheep used in the studies were treated with humane care.
- the sheep were conscious throughout the studies and instrumentation was performed after treating the animals with a local anesthetic.
- anesthetic 2% lidocaine in nasal passages
- the cuff of the tube was placed just below the vocal cords to permit maximal exposure of the tracheal surface area.
- the cuff was deflated throughout the study period except during the period of drug delivery in order to minimize impairment of TMV by the tube.
- the inspired air was warmed and humidified.
- TM V was measured in vivo by the methods generally described in the publication Chest, Vol 128/5/ November 2005, pp3742-3749.
- TMV was measured in vivo by a roentgenographic technique using five to 10 radiopague Teflon/bismuth trioxide disks, 1 mm in diameter, 0.8-mm thick, and 1.8 mg in weight.
- the disks were insufflated into the trachea via a modified suction catheter connected to a source of continuous compressed air (3-4 L/min). The catheter remains in the endotracheal tube and no contact with the tracheal surface is made.
- the cephalid-axial velocities of the individual disks are recorded on videotape from an image intensifier unit.
- Individual disk velocities are calculated by measuring the distance traveled by each disk during a 1 -min observation period. For each run, the mean value of all individual disk velocities is then calculated.
- the sheep used in the studies wore collars containing radiopaque reference markers of known length as a standard to correct for magnification errors inherent in the
- HNE was obtained from Elastin Product Company (Owensville, MO). A stock solution was prepared according to the specifications of the manufacturer. Sheep were administered the stated amount of HNE using a Raindrop Nebuilizer (Nellcor Puritan- Bennett, Carlsbad, CA) aerosol delivery system which produces a droplet with a MMAD of approximately 1 .1 micrometers.
- the nebulizer was connected to a dosimeter consisting of a solenoid valve and a source of compressed air at 20 pounds per square inch (psi). The output of the nebulizer was connected to a T-piece, with one end attached to a Harvard respirator (Harvard Apparatus Inc., Holliston MA).
- the respirator was set at an inspiratory/expiratory ratio of 1 : 1 and a rate of twenty breaths per min.
- the solenoid valve was activated for one second at the beginning of the respiratory cycle of the respirator.
- a Tidal volume of 500 ml was used to deliver the agents.
- any suitable means to deliver a compound of fonnula I to the lungs of a patient may be used.
- Aerosol delivery means, nebulizable delivery means and propellant and/or inhalant device means are known in the art and may be utilized herein.
- the compounds utilized herein are preferably used as dry powders that are then prepared as a solution on the day of delivery to the patient using a sterilized container and deionized water or other suitable solvent/delivery system.
- dry powders of a compound of formula I may be utilized to deliver medicine to the patient without the need for solublizers or solutions.
- the formulations of the invention may also be administered in combination with other suitable medications or active ingredients and depending upon the particular disease or condition being treated.
- the present invention relates to a method of treatment of COPD comprising administering to an organism in need thereof a therapeutically effective amount of a compound of formula 1 or IT with Ri-Ri as defined herein (i.e., with at least two sulfate groups) .
- the additional active ingredients that may be administered in the form of combination therapy or in the form of a single dosage unit having at least two active ingredients wherein the first active is a compound of formula 1 or II with R
- Such medicaments include anti-inflammatory agents, leukotriene antagonists or modifiers, anticholinergic drugs, mast cell stabilizers, corticosteroids, immunomodulators, beta-adrenergic agonists (short acting and long acting), methyl xanthines, and other general classes or specific drugs used to treat such disorders including, but not limited to, montelukast sodium; albuterol; levoalbuterol; salmeterol; formoterol, fluticasone propionate; budesonide; ceterizine; loratadine;
- desloratadine desloratadine; theophylline, ipratropium, cromolyn, nedocromil, beclomethasone, flunisolide, mometasone, triaminoclone, prednisoline, prednisone, zafirlukast, zileuton or omalziunab.
- the compounds utilized in the formulation of the invention were prepared by initially depolymerizing heparin sodium.
- the starting material for preparation of the active drug substance is, for example, porcine intestinal mucosal hepartin (polydisperse sulfated copolymer of 1 to 4 linked glucosamine and uronic acid residues).
- the active drug substance (ADS), a hypersulfated disaccharide, as described herein was shown to have anti-allergic activity in the sheep model.
- the production of the ADS was generally as follows:
- Compound 14a has a solubility of > 0.5 g/mL.
- the following procedure describes one of many possible ways to make the compounds described herein.
- 250 g of commercially available porcine heparin-Na obtained from commercially available sources including, for example, SPL of Waunakee, Wisconsin
- the pH in the heparin solution was then adjusted to about pH 6 (5.98).
- To this solution was added 17.25 g of NaNCK (0.25 mmol, J.T.
- the depolymerized heparin solution obtained above was diluted to a final volume of 8 liters with dtH ⁇ O and filtered (Millipore (Bedford, Mass.), Pellicon 2, 3k PLBC-C having an area of 0.5m2 (Cassett: Cat # P2 PLBCC 05), (molecular weight cut off of 3kDa) to collect and enrich for heparin oligosaccharides of less than 3kDa (3000 daltons) in size (i.e., the permeate consisted of those oligosaccharides of less than 3000 daltons).
- the retentate that was larger than 3000 daltons was subjected to a second depolymerization treatment of nitrous acid using a 20 M solution to farther initiate the degradation of heparin.
- the resulting permeate (with a molecular weight of less than 3kDa) was added to the permeate from the first ultrafiltration and then the entire batch was concentrated by reverse osmosis to reduce the final volume to 2.5 liters. This was then freeze dried.
- the freeze-dried oligosaccharide preparation (50 g) was dissolved in 1 liter purified water and then cooled in an ice bath to 2- 10° C. NaHCO;, (21 g) was added to the cooled oligosaccharide solution and the preparation stirred until completely dissolved.
- a 0.5 M solution of sodium borohydride (NaBH 4 ) in 400 niL of 0.01 M NaOH solution was prepared and slowly added to the cooled oligosaccharide NaHC(>j solution over a 60 minute period.
- the treatment of 0.5 M solution of NaBH 4 was to reduce the aldehyde formed on the five membered ring (which formed after deamination) to the alcohol moiety.
- the reaction preparation was stirred at 2- 10° C for 3 hours, then quenched with concentrated HC1 to pH 4.0.
- the pH of the solution was then adjusted to 6.75 with NaOH and finally concentrated to a minimal volume by reverse osmosis and later freeze- dried to afford the reduced oligosaccharides.
- the reduced oligosaccharide preparation of less than 3 kDa in size were later subjected to fractionization by size exclusion chromatography (SEC) using Bio-Rad Biogel P6 resin (elution with 0.2 M NH4HCO3) for the fractionization of the oliogmix and to collect disaccharide ammonium salts.
- Method 1 a solution of the above fraction containing 2.5 grams disaccharide in 50 mL water was acidified through reaction with Dowex 500WX200 acidic resin commercially available from Sigma-Aldrich according to die manufacturer's instructions. The acidic filtrate was neutralized with tetrabutylammonium hydroxide and the solution was freeze-dried to obtain the tetrabutylammonium (Bu 4 N+) salt as a flocculent solid.
- This compound was also prepared according to Method 2.
- Method 2 a mixture of 0.5 grams of the fraction containing compounds A and B and 3 grams of in 15 mL DMF under Argon was heated at 60° C for 48 hours. The reaction mixture was then cooled to room temperature, diluted with 20 mL of a 10% aqueous sodium acetate solution, and stirred 20 minutes at room temperature, 100 mL of ethanol was added and the reaction mixture was concentrated under high vacuum to obtain a solid residue. The residue was dissolved in 500 mL of water and filtered against a 500 dalton membrane (washing 3x with H 2 0). The sodium salt retentate which contained the hypersulfated 14a product was freeze-dried to an off-white solid.
- TMV was measured in vivo by fluoroscopic technique utilizing a Siremobile 2000 fluoroscope (Siemens). Five to seven radiopaque Teflon/bismuth trioxide disks ( 1 mm in diameter, 0.8-mm in thickness, and 1 .8 mg in weight) were insufflated into the mid-portion of the animal's trachea. A catheter connected to a source of continuous compressed air at 3 to 4 L/min, was used to deliver the discs on to surface of the trachea via the endotracheal tube. The catheter remained within the endotracheal tube only during insufflation of the disks and made no contact with the tracheal surface.
- the cephalad-axial velocity of each individual disk was recorded on videotape from a portable image intensifier unit in-line with the fluoroscope.
- the velocities were calculated by measuring the distance traveled by each disk during a 1 -min observation period. For each run, the mean value of all individual disk velocities was calculated.
- a collar containing radiopaque reference markers of known length was secured around the sheep's neck and was used as a standard to correct for magnification effects inherent in the fluoroscopy unit.
- HNE Human Neutrophil Elastase
- Disaccharide sodium and hypersulfated disaccharide were provided as dry powders. Solutions were prepared fresh on the day of the experiment. A sterilized container was used to weigh the compounds and a total of 3.0 mL of deionized water was added into the container. Once the compounds were completely dissolved, the solution was administered to the animals by aerosol using the system described. All agents were nebulized to dryness (approximately 10- 12 minutes).
- Oral dosage forms in the form of capsules were prepared using a 1 :2 ratio of active ingredient to Carbopol ( 15 mg active/30 mgs Carbopol). The dosage utilized as shown in Figure 4 was two capsules of 15 mg each. Other suitable excipients similar to Carbopol may also be utilized in oral formulations.
- Protocol 1 The Effects of Pretreatmei with Disaccharide Sodium and Hypersulfated Disaccharide on HNE induced reduction in TMV: After initial baseline TMV measurements were obtained, the animals were treated on separate occasions with disaccharide sodium ( 10 mg, 30 mg or 100 mg) or hypersulfated disaccharide ( 10 mg, 30 mg, or 100 mg). After 30 minutes, the sheep were then challenged with aerosolized HNE. Measurements of TMV were obtained 15 min, 30 min, and 45 min after HNE administration, and then hourly for up to 6 hours.
- Protocol 2 The Effects of Hypersulfated Disaccharide on Reversing HNE induced reduction in TMV: After obtaining baseline TMV measurements, the sheep were challenged with aerosolized HNE. TMV measurements were then obtained hourly for the first four hours after administration of HNE. Immediately, after the 4 h TMV measurement, the sheep were treated with l Omg, 30mg or l OOmg of hypersulfated disaccharide. Serial TMV measurements were obtained hourly out to 8h post HNE.
- Protocol 3 The Effects of Oral Hypersulfated Disaccharide on HNE-induced Reduction in TMV: The animals were treated with two doses of oral hypersulfated disaccharide ( 14a) (2 capsules of 15 mg each with 30 mg Carbopol, with total dose of active equal to 30 mg), administered every 12 hours. The last dose was administered 90 minutes before aerosol challenge with HNE. Measurements of TMV were obtained for baseline and 15 minutes after challenge with aerolized HNE and then serially for up to six hours following challenge as described above.
- Figure 1 illustrates the effects of inhaled hypersulfated disaccharide (compound 14a) on the HNE-induced reduction in T V.
- HNE alone reduced TMV to ⁇ 60% of baseline.
- Pretreatment with inhaled hypersulfated disaccharide resulted in a dose- dependent protection against this HNE induced reduction in TM V.
- figure 2 shows the effects of equivalent doses of 2 6 disulfate disaccharide sodium (produced by chemical depolymerization of heparin with nitric oxide) on the HNE-induced effects.
- 2 shows the effects of equivalent doses of 2 6 disulfate disaccharide sodium (produced by chemical depolymerization of heparin with nitric oxide) on the HNE-induced effects.
- hypersulfated disaccharide neither the 10 mg nor 30 mg dose of the 2 ',6- disulfate disaccharide sodium provided protection against the HNE-induced response.
- hypersulfated disaccharide e.g. having more than 2 sulfates
- hypersulfated disaccharide e.g. having more than 2 sulfates
- the 2',6- disulfate disaccharide sodium used in this comparative example is the identical compound shown as a compound of formula 1 with hydroxyl groups instead of the sulfate groups (i.e., R l R2, R5 and R6 is H and R3 and R4 are sulfate and having the sodium salt of the carboxylate anion).
- FIG 3 illustrates that hypersulfated disaccharide can also reverse the effects of HNE.
- the 10 mg dose of hypersulfated disaccharide was ineffective, but significant reversal of the HNE-induced response was seen with both 30 mg and 100 mg of hypersulfated disaccharide.
- the animal data clearly shows that the claimed compound is an effective modulator of diseases or conditions associated with human neutrophil elastase.
- the claimed compounds of formula 1 and salts thereof are in the form of a polysulfated salt and are delivered to the lungs of a patient in need of treatment thereof.
- the present invention further relates to a method of treating an elastase related disorder with any polysulfated disaccharide including those disaccharides derived from heparin and which have the six-six ring structures and provided that at least three sulfate groups are present on the moiety.
- any polysulfated disaccharide including those disaccharides derived from heparin and which have the six-six ring structures and provided that at least three sulfate groups are present on the moiety.
- Such compounds are described in, for example, US patent publications US20030087875; 5,690,910; 6, 193,957 and 7056898 all of which are incorporated by reference.
- the N-sulfated disaccharide unit shown below and polysulfated versions thereof including stereoisomers thereof are also effective in treating elastase related disorders:
- hypotensated disaccharide thus means any disaccharide moiety having at least two sulfate moieties on the disaccharide core molecule and provided that such molecules do not include sodium disaccharide having R l , R2, R5 and R6 as H and R3 and R4 as sulfate (SO;, ' M + ) in a compound of formula I.
- the term also includes any polysulfated disaccharide derived from heparin and having a low molecular weight (e.g. around 1 ,000 daltons or less) and any polysulfated derivative or chemically/enzymatically modified version thereof and provided that said moiety has at least two sulfate groups.
- Enzymatic treatment provides a 6,6 disaccharide as shown above.
- Chemical depolymerization with NO provides the 6,5 ring structure.
- Preferred modifications or derivatives have at least three sulfate moieties. The most preferred moieties have all hydroxyl groups replaced with sulfate groups and any N groups are N- sulfated.
- Heparin and Heparan Sulphate are Inhibitors of Human Leukocyte Elastase Clinical Science ( 1991 ) 81 , 341 -346;
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Abstract
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Priority Applications (9)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| JP2013536825A JP2014500863A (en) | 2010-10-29 | 2011-10-27 | Highly sulfated disaccharides for treating elastase-related disorders |
| EP11837085.7A EP2632259A4 (en) | 2010-10-29 | 2011-10-27 | Hypersulfated disaccharides to treat elastase related disorders |
| MX2013004575A MX2013004575A (en) | 2010-10-29 | 2011-10-27 | Hypersulfated disaccharides to treat elastase related disorders. |
| KR1020137011776A KR20130132792A (en) | 2010-10-29 | 2011-10-27 | Hypersulfated disaccharides to treat elastase related disorders |
| CA2814951A CA2814951A1 (en) | 2010-10-29 | 2011-10-27 | Hypersulfated disaccharides to treat elastase related disorders |
| CN201180052056.6A CN103269585B (en) | 2010-10-29 | 2011-10-27 | The super sulfated disaccharide for the treatment of elastoser associated conditions |
| US13/880,875 US20130203695A1 (en) | 2010-10-29 | 2011-10-27 | Hypersulfated disaccharides to treat elastase related disorders |
| RU2013116520/15A RU2013116520A (en) | 2010-10-29 | 2011-10-27 | HYPERSULPHATED DISACCHARIDES FOR TREATMENT OF DISORDERS ASSOCIATED WITH ELASTASIS |
| US14/741,254 US20150283157A1 (en) | 2010-10-29 | 2015-06-16 | Hypersulfated disaccharides to treat elastase related disorders |
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|---|---|---|---|
| US40800210P | 2010-10-29 | 2010-10-29 | |
| US61/408,002 | 2010-10-29 |
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| US13/880,875 A-371-Of-International US20130203695A1 (en) | 2010-10-29 | 2011-10-27 | Hypersulfated disaccharides to treat elastase related disorders |
| US14/741,254 Continuation US20150283157A1 (en) | 2010-10-29 | 2015-06-16 | Hypersulfated disaccharides to treat elastase related disorders |
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| WO2012058424A1 true WO2012058424A1 (en) | 2012-05-03 |
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| PCT/US2011/058085 Ceased WO2012058424A1 (en) | 2010-10-29 | 2011-10-27 | Hypersulfated disaccharides to treat elastase related disorders |
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| US (2) | US20130203695A1 (en) |
| EP (1) | EP2632259A4 (en) |
| JP (1) | JP2014500863A (en) |
| KR (1) | KR20130132792A (en) |
| CN (1) | CN103269585B (en) |
| CA (1) | CA2814951A1 (en) |
| MX (1) | MX2013004575A (en) |
| RU (1) | RU2013116520A (en) |
| WO (1) | WO2012058424A1 (en) |
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| FR3144752A1 (en) * | 2023-01-10 | 2024-07-12 | Song Huang | USE OF PENTOSAN POLYSULFATE FOR THE TREATMENT OF DRY COUGH |
Citations (6)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US5977080A (en) * | 1995-08-23 | 1999-11-02 | The Regents Of The University Of California | Sulfated disaccharide inhibitors of selectins, methods for synthesis and therapeutic use |
| US20030087875A1 (en) * | 2001-04-16 | 2003-05-08 | Tahir Ahmed | Hypersulfated disaccharides and methods of using the same for the treatment of inflammations |
| US20030181400A1 (en) * | 2000-07-13 | 2003-09-25 | Vila Pahi Francisco Javier | Novel disaccharides with anti-arthrosic properties |
| US20070281893A1 (en) * | 2004-08-05 | 2007-12-06 | Ivax Drug Research Institute Ltd | Polysulfated Glycosides And Salts Thereof |
| WO2011068721A1 (en) * | 2009-12-03 | 2011-06-09 | Opko Health, Inc. | Hypersulfated disaccharide formulations |
| US20110245197A1 (en) * | 2010-03-31 | 2011-10-06 | Opko Health, Inc. | Hypersulfated glucopyranosides |
Family Cites Families (7)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US5539123A (en) * | 1994-08-26 | 1996-07-23 | University Of Kentucky Research Foundation | Low molecular weight thiocarbamates as inhibitors of elastase, uses and method of synthesis |
| US5690910A (en) * | 1995-08-18 | 1997-11-25 | Baker Norton Pharmaceuticals, Inc. | Method for treating asthma |
| US5980865A (en) * | 1995-08-18 | 1999-11-09 | Baker Norton Pharmaceuticals, Inc. | Method for treating late phase allergic reactions and inflammatory diseases |
| EP1488819A1 (en) * | 2003-06-16 | 2004-12-22 | Rijksuniversiteit te Groningen | Dry powder inhaler and method for pulmonary inhalation of dry powder |
| WO2005075490A2 (en) * | 2004-02-03 | 2005-08-18 | Ivax Corporation | Synthesis of polysulfated uronic acid glycosides |
| WO2006017752A2 (en) * | 2004-08-05 | 2006-02-16 | Ivax Corporation | Sulfated oligosaccharides |
| ES2364683B1 (en) * | 2009-12-29 | 2012-08-08 | Bioibérica S.A. | DISULATIZES SULFATED FOR THE TREATMENT OF NEURODEGENERATIVE AND / OR NEUROVASCULAR DISEASES. |
-
2011
- 2011-10-27 CN CN201180052056.6A patent/CN103269585B/en not_active Expired - Fee Related
- 2011-10-27 CA CA2814951A patent/CA2814951A1/en not_active Abandoned
- 2011-10-27 KR KR1020137011776A patent/KR20130132792A/en not_active Ceased
- 2011-10-27 US US13/880,875 patent/US20130203695A1/en not_active Abandoned
- 2011-10-27 JP JP2013536825A patent/JP2014500863A/en active Pending
- 2011-10-27 RU RU2013116520/15A patent/RU2013116520A/en not_active Application Discontinuation
- 2011-10-27 EP EP11837085.7A patent/EP2632259A4/en not_active Withdrawn
- 2011-10-27 WO PCT/US2011/058085 patent/WO2012058424A1/en not_active Ceased
- 2011-10-27 MX MX2013004575A patent/MX2013004575A/en not_active Application Discontinuation
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2015
- 2015-06-16 US US14/741,254 patent/US20150283157A1/en not_active Abandoned
Patent Citations (7)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US5977080A (en) * | 1995-08-23 | 1999-11-02 | The Regents Of The University Of California | Sulfated disaccharide inhibitors of selectins, methods for synthesis and therapeutic use |
| US20030181400A1 (en) * | 2000-07-13 | 2003-09-25 | Vila Pahi Francisco Javier | Novel disaccharides with anti-arthrosic properties |
| US20030087875A1 (en) * | 2001-04-16 | 2003-05-08 | Tahir Ahmed | Hypersulfated disaccharides and methods of using the same for the treatment of inflammations |
| US20070281893A1 (en) * | 2004-08-05 | 2007-12-06 | Ivax Drug Research Institute Ltd | Polysulfated Glycosides And Salts Thereof |
| WO2011068721A1 (en) * | 2009-12-03 | 2011-06-09 | Opko Health, Inc. | Hypersulfated disaccharide formulations |
| US20110136757A1 (en) * | 2009-12-03 | 2011-06-09 | Opko Health, Inc. | Hypersulfated disaccharide formulations |
| US20110245197A1 (en) * | 2010-03-31 | 2011-10-06 | Opko Health, Inc. | Hypersulfated glucopyranosides |
Non-Patent Citations (1)
| Title |
|---|
| See also references of EP2632259A4 * |
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| Publication number | Publication date |
|---|---|
| CN103269585B (en) | 2016-12-21 |
| JP2014500863A (en) | 2014-01-16 |
| CN103269585A (en) | 2013-08-28 |
| KR20130132792A (en) | 2013-12-05 |
| US20150283157A1 (en) | 2015-10-08 |
| US20130203695A1 (en) | 2013-08-08 |
| RU2013116520A (en) | 2014-12-10 |
| EP2632259A1 (en) | 2013-09-04 |
| EP2632259A4 (en) | 2015-04-29 |
| CA2814951A1 (en) | 2012-05-03 |
| MX2013004575A (en) | 2013-05-17 |
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