WO2019213707A1 - Sub-micron emulsions - Google Patents
Sub-micron emulsions Download PDFInfo
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- WO2019213707A1 WO2019213707A1 PCT/AU2019/050426 AU2019050426W WO2019213707A1 WO 2019213707 A1 WO2019213707 A1 WO 2019213707A1 AU 2019050426 W AU2019050426 W AU 2019050426W WO 2019213707 A1 WO2019213707 A1 WO 2019213707A1
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- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61K—PREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
- A61K9/00—Medicinal preparations characterised by special physical form
- A61K9/10—Dispersions; Emulsions
- A61K9/107—Emulsions ; Emulsion preconcentrates; Micelles
- A61K9/1075—Microemulsions or submicron emulsions; Preconcentrates or solids thereof; Micelles, e.g. made of phospholipids or block copolymers
-
- 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
- A61K31/57—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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- 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
- A61K—PREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
- 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
- A61K47/06—Organic compounds, e.g. natural or synthetic hydrocarbons, polyolefins, mineral oil, petrolatum or ozokerite
- A61K47/08—Organic compounds, e.g. natural or synthetic hydrocarbons, polyolefins, mineral oil, petrolatum or ozokerite containing oxygen, e.g. ethers, acetals, ketones, quinones, aldehydes, peroxides
- A61K47/10—Alcohols; Phenols; Salts thereof, e.g. glycerol; Polyethylene glycols [PEG]; Poloxamers; PEG/POE alkyl ethers
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- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61K—PREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
- 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
- A61K47/06—Organic compounds, e.g. natural or synthetic hydrocarbons, polyolefins, mineral oil, petrolatum or ozokerite
- A61K47/08—Organic compounds, e.g. natural or synthetic hydrocarbons, polyolefins, mineral oil, petrolatum or ozokerite containing oxygen, e.g. ethers, acetals, ketones, quinones, aldehydes, peroxides
- A61K47/12—Carboxylic acids; Salts or anhydrides thereof
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- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61K—PREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
- 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
- A61K47/06—Organic compounds, e.g. natural or synthetic hydrocarbons, polyolefins, mineral oil, petrolatum or ozokerite
- A61K47/16—Organic compounds, e.g. natural or synthetic hydrocarbons, polyolefins, mineral oil, petrolatum or ozokerite containing nitrogen, e.g. nitro-, nitroso-, azo-compounds, nitriles, cyanates
- A61K47/18—Amines; Amides; Ureas; Quaternary ammonium compounds; Amino acids; Oligopeptides having up to five amino acids
- A61K47/183—Amino acids, e.g. glycine, EDTA or aspartame
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61K—PREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
- 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
- A61K47/44—Oils, fats or waxes according to two or more groups of A61K47/02-A61K47/42; Natural or modified natural oils, fats or waxes, e.g. castor oil, polyethoxylated castor oil, montan wax, lignite, shellac, rosin, beeswax or lanolin
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- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61K—PREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
- A61K9/00—Medicinal preparations characterised by special physical form
- A61K9/0012—Galenical forms characterised by the site of application
- A61K9/0014—Skin, i.e. galenical aspects of topical compositions
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- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61K—PREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
- A61K9/00—Medicinal preparations characterised by special physical form
- A61K9/06—Ointments; Bases therefor; Other semi-solid forms, e.g. creams, sticks, gels
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61K—PREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
- A61K9/00—Medicinal preparations characterised by special physical form
- A61K9/10—Dispersions; Emulsions
- A61K9/12—Aerosols; Foams
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- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61K—PREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
- A61K9/00—Medicinal preparations characterised by special physical form
- A61K9/10—Dispersions; Emulsions
- A61K9/12—Aerosols; Foams
- A61K9/122—Foams; Dry foams
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61K—PREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
- A61K9/00—Medicinal preparations characterised by special physical form
- A61K9/10—Dispersions; Emulsions
- A61K9/12—Aerosols; Foams
- A61K9/124—Aerosols; Foams characterised by the propellant
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- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61P—SPECIFIC THERAPEUTIC ACTIVITY OF CHEMICAL COMPOUNDS OR MEDICINAL PREPARATIONS
- A61P17/00—Drugs for dermatological disorders
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61P—SPECIFIC THERAPEUTIC ACTIVITY OF CHEMICAL COMPOUNDS OR MEDICINAL PREPARATIONS
- A61P17/00—Drugs for dermatological disorders
- A61P17/06—Antipsoriatics
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61P—SPECIFIC THERAPEUTIC ACTIVITY OF CHEMICAL COMPOUNDS OR MEDICINAL PREPARATIONS
- A61P17/00—Drugs for dermatological disorders
- A61P17/10—Anti-acne agents
Definitions
- the present disclosure relates to sub-micron emulsions and processes for their preparation.
- the disclosure relates to sub-micron emulsion compositions containing pharmaceutically active ingredients, and to delivery vehicles, such as foams, comprising the sub micron emulsion compositions.
- the emulsion compositions and foams may advantageously deliver pharmaceutically active ingredients.
- Emulsion compositions comprising sub-micron particles have previously been applied to the delivery of active pharmaceutical ingredients across the skin barrier. As particles become smaller their ability to cross the skin barrier is enhanced and, further, as their surface to volume ratio increases potential efficacy increases.
- Sub-micron emulsions have also been utilized in the topical delivery of active pharmaceutical ingredients where the active pharmaceutical ingredient is insoluble or substantially insoluble in water.
- United States application publication No. 2006/0057168 describes a process for the preparation of oil in water microemulsions or sub-micron emulsion compositions, in particular oil in water microemulsion or sub-micron emulsion foam compositions. These sub micron or microemulsion foams have a comparatively high oil content and require both hydrophilic and lipophilic surfactants.
- the publication also teaches that propylene glycol, which is used as solvent for an active pharmaceutical ingredient, is disruptive of emulsion formulations and further teaches the requirement that propylene glycol be added after formation of the emulsion.
- the present disclosure is directed to an oil in water sub-micron emulsion having a water phase and an oil phase, said emulsion comprising water, at least one oil, optionally at least one hydroxyl containing organic solvent, and at least one hydrophilic surfactant having an HLB greater than about 10.
- the present disclosure advantageously provides for a low oil and a low surfactant content in an oil in water sub-micron emulsion.
- the present disclosure also provides an oil in water sub-micron emulsion composition having a water phase and an oil phase, said composition comprising at least one active pharmaceutical ingredient, water, at least one oil, optionally at least one hydroxyl containing organic solvent, and at least one hydrophilic surfactant having an HLB greater than about 10.
- the present disclosure also provides an oil in water sub-micron emulsion aerosol foam comprising water, at least one oil, optionally at least one hydroxyl containing organic solvent, and at least one hydrophilic surfactant having an HLB greater than about 10.
- the present disclosure further provides an oil in water sub-micron emulsion aerosol foam composition comprising at least one active pharmaceutical ingredient, water, at least one oil, optionally at least one hydroxyl containing organic solvent, and at least one hydrophilic surfactant having an HLB greater than about 10.
- the present sub-micron emulsions and sub-micron emulsion compositions are stable over long periods of time and are advantageously straightforward to prepare utilizing a minimum number of components.
- the present disclosure provides an oil in water sub-micron emulsion, said emulsion comprising an oil phase dispersed throughout a water phase, said oil in water emulsion comprising:
- the at least one surfactant is miscible both with water and the at least one hydroxyl containing organic solvent.
- an oil in water sub-micron emulsion composition comprising:
- the at least one surfactant is miscible both with water and the at least one hydroxyl containing organic solvent.
- an oil in water sub-micron emulsion aerosol foam comprising an oil phase dispersed throughout a water phase, said foam comprising:
- the at least one surfactant is miscible both with water and the at least one hydroxyl containing organic solvent.
- an oil in water sub-micron emulsion aerosol foam composition comprising:
- an oil in water sub-micron emulsion foam comprising an oil phase dispersed throughout a water phase, said oil in water sub-micron emulsion foam composition comprising:
- the at least one surfactant is miscible both with water and the at least one hydroxyl containing organic solvent.
- the present disclosure provides a process for the preparation of an oil in water sub-micron emulsion, comprising water, at least one oil, at least one hydrophilic surfactant having an HLB greater than about 10 and optionally at least one hydroxyl containing organic solvent, the process comprising at least the steps of heating a mixture of at least, water, at least one oil, and at least one hydrophilic surfactant, to a temperature above the cloud point of the hydrophilic surfactant and subsequently cooling the mixture to form an oil in water sub-micron emulsion.
- the process may not include a step of phase inversion from an oil in water sub-micron emulsion to a water in oil sub-micron emulsion or a step of phase inversion from a water in oil sub micron emulsion to an oil in water sub-micron emulsion.
- the present disclosure provides a process for the preparation of an oil in water sub-micron emulsion, comprising water, at least one oil, at least one hydrophilic surfactant having an HLB greater than about 10 and optionally at least one hydroxyl containing organic solvent, the process comprising:
- step a) heating the mixture of step a) to a temperature above the cloud point of the hydrophilic surfactant so as to form a bicontinuous emulsion
- the at least one hydroxyl containing solvent may be at or above ambient temperature when added to the cooled emulsion.
- the present disclosure provides a process for the preparation of an oil in water sub-micron emulsion composition, comprising at least one active pharmaceutical ingredient, water, at least one oil, at least one hydrophilic surfactant having an HLB greater than about 10 and optionally at least one hydroxyl containing organic solvent, the process comprising:
- step a) heating the mixture of step a) to a temperature above the cloud point of the hydrophilic surfactant so as to form a bicontinuous emulsion
- the at least one hydroxyl containing solvent may be at or above ambient temperature when added to the cooled emulsion.
- the present disclosure provides a process for the preparation of an oil in water sub-micron emulsion, comprising water, at least one oil, at least one hydrophilic surfactant having an HLB greater than about 10 and optionally at least one hydroxyl containing organic solvent, the process comprising:
- step c) further heating the mixture of step c) to a temperature above the cloud point of the hydrophilic surfactant so as to form a bicontinuous emulsion
- the process may further comprise the step of cooling the oil in water sub-micron emulsion to, for example, ambient temperature.
- the present disclosure provides a process for the preparation of an oil in water sub-micron emulsion composition, comprising at least one active pharmaceutical ingredient, water, at least one oil, at least one hydrophilic surfactant having an HLB greater than about 10 and optionally at least one hydroxyl containing organic solvent, the process comprising:
- step c) heating the mixture of step c) to a temperature above the cloud point of the hydrophilic surfactant so as to form a bicontinuous emulsion
- the process may further comprise the step of cooling the oil in water sub-micron emulsion composition to, for example, ambient temperature.
- the present disclosure provides a process for the preparation of an oil in water sub-micron emulsion, comprising water, at least one oil, at least one hydrophilic surfactant having an HLB greater than about 10 and optionally at least one hydroxyl containing organic solvent, the process comprising: (a) admixing at least one oil, at least one hydrophilic surfactant having an HLB greater than about 10 and water;
- step c) heating the mixture of step c) to a temperature above the cloud point of the hydrophilic surfactant so as to form a bicontinuous emulsion
- the at least one hydroxyl containing solvent may be at a temperature at or above ambient when added in step (c).
- the present disclosure provides a process for the preparation of an oil in water sub-micron emulsion composition, comprising at least one active pharmaceutical ingredient, water, at least one oil, at least one hydrophilic surfactant having an HLB greater than about 10 and optionally at least one hydroxyl containing organic solvent, the process comprising:
- the at least one hydroxyl containing solvent may be at a temperature at or above ambient when added in step (c).
- the at least one active pharmaceutical ingredient is soluble in the at least one hydroxyl containing organic solvent.
- the at least one active pharmaceutical ingredient is insoluble or sparingly soluble in water.
- the at least one active pharmaceutical ingredient may be initially dissolved in the at least one hydroxyl containing organic solvent prior to combining with the at least one oil and at least one surfactant.
- the present disclosure provides a process for the preparation of an oil in water sub-micron emulsion aerosol foam, comprising at least one oil, at least one hydrophilic surfactant having an HLB greater than about 10, optionally at least one hydroxyl containing organic solvent and water, the process comprising:
- step c) heating the mixture of step c) to a temperature above the cloud point of the hydrophilic surfactant so as to form a bicontinuous emulsion
- the present disclosure provides a process for the preparation of an oil in water sub-micron emulsion aerosol foam composition, comprising at least one active pharmaceutical ingredient, at least one oil, at least one hydrophilic surfactant having an HLB greater than about 10, optionally at least one hydroxyl containing organic solvent and water, the process comprising:
- step (d) heating the mixture of step (c) to a temperature above the cloud point of the hydrophilic surfactant so as to form a bicontinuous emulsion
- the at least one active pharmaceutical ingredient may be initially dissolved in the at least one hydroxyl containing organic solvent prior to combining with the at least one oil and at least one surfactant.
- the oil mixture and the water are both heated, to a temperature between about 60 and about 80°C, preferably between about 70 and about 80°C.
- the cloud point may be between about 75 and about 85°C.
- a further step or steps may be performed after cooling the oil in water emulsion. These steps may be performed at ambient temperature or above ambient temperature.
- one or more excipients which do not substantially interfere with the oil in water emulsion stability, may be added after cooling the emulsion.
- the excipient is a humectant, such as glycerine.
- the present disclosure provides a product produced by any one of the hereinbefore disclosed processes.
- the present disclosure provides a method of treating a disorder or condition, comprising administering to the skin of a subject requiring such treatment an effective amount of a composition of the present disclosure.
- the present disclosure relates to the use of the compositions described herein for the preparation of a medicament for the treatment of a disease, disorder or condition.
- the oil in water sub-micron emulsion comprises:
- the oil in water sub-micron emulsion comprises:
- the at least one active pharmaceutical ingredient is insoluble or sparingly soluble in water.
- the intensity weighted mean diameter of the oil droplets in the sub-micron emulsion or submicron emulsion composition is less than 500 nm, or less than 400 nm, or less than 300 nm, or less than 200 nm, or less than 100 nm.
- the mean diameter is less than 200 nm, more preferably less than 100 nm.
- 50%, or 60%, or 70%, or 80%, or 90%, of the oil droplets in the sub-micron emulsion or sub-micron emulsion composition have an intensity weighted mean diameter less than 300 nm, or less than 280 nm, or less than 260 nm, or less than 240 nm.
- sub-micron emulsion composition have an intensity weighted mean diameter less than 300 nm, or less than 280 nm, or less than 260 nm, or less than 240 nm.
- 50%, or 60%, or 70%, or 80%, or 90% of the oil droplets in the sub-micron emulsion or sub-micron emulsion composition have an intensity weighted mean diameter less than 300 nm, or less than 280 nm, or less than 260 nm, or less than 240 nm, after storage at 5°C for four weeks.
- sub-micron emulsion composition have an intensity weighted mean diameter less than 300 nm, or less than 280 nm, or less than 260 nm, or less than 240 nm, after storage at 5°C for four weeks.
- 50%, or 60%, or 70%, or 80%, or 90% of the oil droplets in the sub-micron emulsion or sub-micron emulsion composition have an intensity weighted mean diameter less than 300 nm, or less than 280 nm, or less than 260 nm, or less than 240 nm, after storage at 25°C for four weeks.
- sub-micron emulsion composition have an intensity weighted mean diameter less than 300 nm, or less than 280 nm, or less than 260 nm, or less than 240 nm, after storage at 25°C for four weeks.
- 50%, or 60%, or 70%, or 80%, or 90% of the oil droplets in the sub-micron emulsion or sub-micron emulsion composition have an intensity weighted mean diameter less than 500 nm or less than 400 nm, after storage at 40°C for four weeks.
- sub-micron emulsion composition have an intensity weighted mean diameter less than 500 nm or less than 400 nm, after storage at 40°C for four weeks.
- the amount of at least one active pharmaceutical ingredient in the sub-micron emulsion composition decreases by less than 10 wt.%, or less than 8 wt.%, or less than 6 wt.%, or less than 4 wt.%, or less than 2 wt.%, when the composition is stored at 40°C for eight weeks.
- the amount of at least one active pharmaceutical ingredient in the sub-micron emulsion composition decreases by less than 10 wt.%, or less than 8 wt.%, or less than 6 wt.%, or less than 4 wt.%, or less than 2 wt.%, when the composition is stored at 40°C for 12 weeks, or 16 weeks, or 20 weeks, or 24 weeks, or 28 weeks, or 32 weeks or 36 weeks or greater.
- the amount of at least one active pharmaceutical ingredient in the sub-micron emulsion composition decreases by less than 10 wt.%, or less than 8 wt.%, or less than 6 wt.%, or less than 4 wt.%, or less than 2 wt.%, when the composition is stored at 25°C for 12 weeks, or 16 weeks, or 20 weeks, or 24 weeks, or 28 weeks, or 32 weeks or 36 weeks or greater.
- the amount of at least one active pharmaceutical ingredient in the sub-micron emulsion composition decreases by less than 10 wt.%, or less than 8 wt.%, or less than 6 wt.%, or less than 4 wt.%, or less than 2 wt.%, when the composition is stored at 25°C for up to 2 years.
- the at least one hydroxyl containing organic solvent is a water miscible organic solvent selected from the group consisting of an alcohol, a glycol, a polyol, and mixtures thereof.
- the emulsion or emulsion composition may comprise one or more hydrophilic surfactants.
- the surfactant may be an anionic surfactant, a cationic surfactant, a non-ionic surfactant, an amphoteric surfactant, or mixtures thereof.
- the surfactant is a non-ionic surfactant.
- the emulsion or emulsion composition comprises a single surfactant.
- the emulsion or emulsion composition is free, or substantially free, of lipophilic surfactants.
- the emulsion or emulsion composition comprises more than one surfactant wherein the HLB values of the surfactants are within 30% of each other, preferably within 20% of each other.
- the emulsion or emulsion composition may comprise up to 15% by weight of one or more surfactants based on the total weight of the emulsion or emulsion composition, or up to 10% by weight, or up to 7.5% by weight.
- the emulsion or emulsion composition may comprise about 2% to about 15% by weight surfactant, or about 5 to about 10% by weight surfactant, or about 6 to about 9% by weight, based on the total weight of the emulsion or emulsion composition.
- the emulsion or emulsion composition may have a pH less than or equal to 7.0, or less than or equal to 6.5, or less than or equal to 6.0, or less than or equal to 5.5, or less than or equal to 5.0.
- the emulsion or emulsion composition may have a pH in the range from about 7.0 to about 3.0, or from about 7.0 to about 3.5, or from about 7.0 to about 4.0, or from about 6.0 to about 3.0, or from about 6.0 to about 4.0, or from about 5.0 to about 3.0, or from about 5.0 to about 3.5, or from about 5.0 to about 4.0.
- the emulsion or emulsion composition may have a pH greater than about 7.0, or greater than about 7.5, or greater than about 8.0, or greater than about 8.5, or greater than about 9.0.
- the emulsion or emulsion composition may have a pH in the range from about 7.0 to about 11.0, or from about 7.0 to about 10.0, or from about 7.0 to about 9.0.
- the emulsion or emulsion composition may have a pH that changes by less than 0.5 pH units, or less than 0.4 pH units, or less than 0.3 pH units, when the emulsion or emulsion composition is stored for a period of one year at a temperature of 40°C.
- the combined amount of surfactant and oil in the emulsion or emulsion composition may be less than 25% by weight, or less than 20% by weight, or less than 15% by weight.
- the emulsion or the emulsion composition may have a dynamic viscosity of less than ⁇ 100 cps.
- the sub-micron emulsions or emulsion compositions may comprise one or more acceptable carriers and excipients, including preservatives, anti-oxidants, anti-inflammatories, emollients, moisturisers, buffers, humectants, solubilisers, fragrances, colourants, viscosity modifying agents and essential oils, selected to facilitate and/or enhance application, user experience and/or efficacy.
- Other agents may be contemplated.
- the further components are preferably miscible and compatible and do not detract from the function of the pharmaceutically active ingredient or detract from the stability and function of the emulsion.
- the sub-micron emulsions of the present disclosure may possess one or more of the following advantages compared to prior art sub-micron emulsions.
- the sub-micron emulsions may be foamed to provide stable foams.
- FIG. 1 is a flow diagram of a prior art process for preparing a sub-micron emulsion composition which utilizes both hydrophilic and lipophilic surfactants.
- FIG. 2 is a flow diagram of a process for preparing a sub-micron emulsion composition according to an embodiment of the present disclosure where a thermolabile active pharmaceutical ingredient is added after the sub-micron emulsion if formed and cooled.
- FIG. 3 is a flow diagram of a process for preparing a sub-micron emulsion composition according to an embodiment of the present disclosure where a thermostable active pharmaceutical ingredient is added prior to emulsion formation.
- FIG. 4 is a flow diagram of a process for preparing a sub-micron emulsion composition according to an embodiment of the present disclosure.
- FIG. 5 is a graph of conductivity vs temperature of a sub-micron emulsion composition according to an embodiment of the present disclosure.
- FIG. 6 shows the particle size distribution of a sub-micron emulsion composition according to an embodiment of the present disclosure.
- FIG. 7 shows the particle size distribution of a sub-micron emulsion composition according to an embodiment of the present disclosure after storage at 5°C for four weeks.
- FIG. 8 shows the particle size distribution of a sub-micron emulsion composition according to an embodiment of the present disclosure after storage at 25°C for four weeks.
- FIG. 9 shows the particle size distribution of a sub-micron emulsion composition according to an embodiment of the present disclosure after storage at 40°C for four weeks.
- FIG. 10 is a photograph of a sub-micron emulsion foam composition according to an embodiment of the present disclosure.
- the term‘about’ is understood as within a range of normal tolerance in the art, for example within two standard deviations of the mean.‘About’ can be understood as within 10%, 9%, 8%, 7%, 6%, 5%, 4%, 3%, 2%, 1%, 0.5%, 0.1%, 0.05%, or 0.01% of the stated value. Unless otherwise clear from context, all numerical values provided herein in the specification and the claim can be modified by the term ‘about’.
- Ranges provided herein are understood to be shorthand for all of the values within the range.
- a range of 1 to 50 is understood to include any number, combination of numbers, or sub-range from the group consisting 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25, 26, 27, 28, 29, 30, 31, 32, 33, 34, 35, 36, 37, 38, 39, 40, 41, 42,
- administering and‘administered’ refer to any method which delivers the present compositions to a subject in such a manner as to provide a therapeutic effect.
- derivative(s) thereof refers to prodrugs, solvates, hydrates, esters and acids of the active pharmaceutical ingredient.
- an ‘effective amount’ of an active agent or ingredient, or active pharmaceutical ingredient or ingredient, which are synonymous herein, refers to an amount of the active pharmaceutical ingredient sufficient to have a therapeutic effect upon administration.
- An effective amount of the active agent may, will, or is expected to cause relief of symptoms. Effective amounts of the active agent will vary with the particular disease or diseases being treated, the severity of the disease, the duration of the treatment, and the specific components of the composition being used.
- the droplet size or particle size of an emulsion refers to the intensity weighted mean diameter as measured by dynamic light scattering.
- a‘submicron emulsion’ refers to a mixture of two or more immiscible liquids wherein the droplet or particle diameter of the dispersed phase (i.e. oil in the case of an oil in water emulsion) is in the range from about 20 nm to about 1000 nm expressed as an intensity weighted distribution.
- bicontinuous emulsion is an emulsion composition wherein oil in water and water in oil emulsions coexist as a mixture.
- coexist as a mixture is meant that the microstructure of the emulsion fluid is such that regions of oil in water intermingle with regions of water in oil.
- a bicontinuous emulsion exhibits regions of water continuity and regions of oil continuity.
- a bicontinuous emulsion is by character a micro-heterogeneous biphasic fluid.
- cloud point refers to the temperature above which a non ionic surfactant or wax loses some of its water solubility and becomes ineffective as a surfactant.
- phase inversion temperature refers to a temperature where an oil in water emulsion inverts to a water in oil emulsion or vice versa.
- pH adjusting agent refers to a specific pH adjusting agent or agents, including but not limited to, a buffer, a base or an acid, salts thereof and mixtures thereof, added to a composition.
- salts refers to salts that are pharmaceutically acceptable and that possess the desired pharmacological activity of the parent compound.
- Such salts include: (1) acid addition salts, formed with acids such as, for example, acetic acid, benzoic acid, citric acid, gluconic acid, glutamic acid, glutaric acid, glycolic acid, hydrochloric acid, lactic acid, maleic acid, malic acid, malonic acid, mandelic acid, phosphoric acid, propionic acid, sorbic acid, succinic acid, sulfuric acid, tartaric acid, naturally and synthetically derived amino acids, and mixtures thereof; or (2) salts formed when an acidic proton present in the parent compound is either (i) replaced by a metal ion e.g.
- a‘subject’,‘individual’ or‘patient’ refers to any subject, particularly a human, for whom therapy is desired.
- a ‘treatment’ or ‘treating’ of a disease, disorder or condition encompasses alleviation of at least one symptom thereof, a reduction in the severity thereof, or the delay, prevention or inhibition of the progression thereof. Treatment need not mean that the disease, disorder or condition is totally cured.
- a useful composition herein need only to reduce the severity of a disease, disorder or condition, reduce the severity of symptoms associated therewith, provide improvement to a patient's quality of life, or delay, prevent or inhibit the onset of a disease, disorder or condition.
- the term‘substantially free’ of a specified component refers to a composition with less than about 1% of the specified component.
- the present disclosure is directed to an oil in water sub-micron emulsion or sub-micron emulsion composition, said emulsion having a water phase and an oil phase.
- the present disclosure provides low oil and low surfactant content, oil in water emulsion aerosol foam compositions.
- the present disclosure provides an oil in water sub micron emulsion, said emulsion comprising an oil phase dispersed throughout a water phase, said emulsion comprising:
- the at least one surfactant is miscible both with water and the at least one hydroxyl containing organic solvent.
- an oil in water sub micron emulsion composition comprising:
- an oil in water sub-micron emulsion comprising an oil phase dispersed throughout a water phase, said oil in water sub-micron emulsion comprising:
- the at least one surfactant is miscible both with water and the at least one hydroxyl containing organic solvent.
- an oil in water sub micron emulsion aerosol foam comprising an oil phase dispersed throughout a water phase, said foam comprising:
- the at least one surfactant is miscible both with water and the at least one hydroxyl containing organic solvent.
- the present disclosure provides an oil in water sub micron emulsion aerosol foam composition said, the composition comprising:
- an oil in water sub-micron emulsion foam comprising an oil phase dispersed throughout a water phase, said oil in water sub-micron emulsion foam composition comprising:
- the at least one surfactant is miscible both with water and the at least one hydroxyl containing organic solvent.
- the oil and optional hydroxyl containing organic solvent comprise the oil phase of the composition, along with any oil miscible excipients.
- the intensity weighted mean particle or droplet diameter of the oil phase is about 100 nm.
- the oil is present in the composition in an amount from about 1% to about 10% by weight. In another embodiment the oil is present in an amount from about 3% to about 9% by weight, such as about 3%, 4%, 5%, 6%, 7% or 8% by weight.
- the oil is in the internal phase of the oil in water emulsion system.
- the oil is a hydrocarbon.
- the hydrocarbon is selected from a linear, branched or cyclic alkane or alkene, or mixtures thereof.
- the linear, branched or cyclic alkane or alkene is selected from the group consisting of isoparaffin, dodecene, diethylhexylcyclohexane, eicosane, isododecane, isoeicosane, isohexadecane, longifolene, mineral oil, paraffin, pentahydrosqualene, petrolatum, squalane, squalene, tetradecene, derivatives thereof, and mixtures thereof.
- the oil is mineral oil.
- the mineral oil is present in an amount from about 1% to about 9% by weight. In another embodiment the mineral oil is present in about 3% to about 8% by weight, such as about 3%, 4%, 5%, 6%, 7% or 8% by weight.
- the oil is a vegetable oil.
- the vegetable oil is selected from palm oil, soybean oil, rapeseed oil, sunflower oil, peanut oil, com oil, olive oil, coconut oil, cottonseed oil, linseed oil, grapeseed oil, hazelnut oil or sesame oil, and mixtures thereof.
- the present sub-micron emulsions and emulsion compositions comprise a surfactant component.
- the surfactant is present in an amount from about 1% to about 15% by weight.
- the surfactant is present in an amount from about 2% to about 12% by weight, such as about 2%, 3%, 4%, 5%, 6%, 7%, 8%, 9%, 10%, 11% or 12% by weight.
- a surfactant's hydrophilic/lipophilic balance describes the surfactant's affinity toward water or oil.
- the HLB scale ranges from 1 (totally lipophilic) to 20 (totally hydrophilic), with 10 representing an equal balance of both characteristics.
- the HLB of a blend of two surfactants equals the weight fraction of surfactant A times its HLB value plus the weight fraction of surfactant B times its HLB value (weighted average).
- the surfactant component comprises a single hydrophilic surfactant, and in another embodiment, the surfactant component comprises more than one hydrophilic surfactant and the weighted average of their HLB values is greater than about 10, or between about 10 and about 24.
- the surfactant component consists of non-ionic surfactants.
- Suitable non-ionic surfactants include but are not limited to ethoxylated fatty alcohol ethers, PEG derivatives, ethoxylated fatty acids, propylene glycol esters, fatty alcohols, glycerol esters and derivatives, polymeric ethers and sorbitan esters, and mixtures thereof.
- the hydrophilic ethoxylated fatty alcohol ether is selected from the group consisting of steareth-lO, steareth-20, ceteareth-lO, ceteareth-12, ceteareth-l5, ceteareth-20, ceteareth-2l, ceteareth-22, ceteareth-25, ceteareth-30, ceteareth-31 , ceteareth-32, ceteareth-33, ceteareth-6, laureth-5, laureth-9, laureth-10, laureth-12, laureth-15, laureth-20, laureth-21, laureth- 22, laureth-23, nonoxynol-9, oleth-lO and oleth-20.
- the hydrophilic ethoxylated fatty alcohol ether is oleth-lO.
- the oleth-lO is present in the composition in an amount from about 1% to about 15% by weight. In another embodiment the oleth-lO is present in an amount from about 2% to about 12% by weight, such as about 2%, 3%, 4%, 5%, 6%, 7%, 8%, 9%, 10%, 11% or 12% by weight.
- the Oleth-lO is present in an amount between 5 and 10% by weight.
- Exemplary PEG derivatives include PEG-25 hydrogenated castor oil, PEG-30 castor oil, PEG-31 castor oil, PEG-32 castor oil, PEG-33 castor oil, PEG-34 castor oil, PEG-35 castor oil, PEG-40 hydrogenated castor oil, PEG-50 castor oil and PEG-60 hydrogenated castor oil.
- Exemplary ethoxylated fatty acids include, PEG-6 oleate, PEG- 10 oleate, PEG-6 stearate, PEG-8 stearate and PEG-9 stearate, PEG- 20 stearate, PEG-40 stearate, PEG-41 stearate, PEG-42 stearate, PEG-43 stearate, PEG-44 stearate, PEG-45 stearate, PEG-46 stearate, PEG-47 stearate, PEG-48 stearate, PEG-49 stearate, PEG-50 stearate and PEG- 100 stearate.
- Exemplary propylene glycol esters include propylene glycol palmitate and propylene glycol stearate.
- Exemplary fatty alcohols include cetyl alcohol and stearyl alcohol.
- Exemplary glyceryl esters and derivatives include glyceryl behenate, glyceryl dibehenate, glyceryl dioleate, glyceryl distearate, glyceryl linoleate, glyceryl oleate, glyceryl stearate, PEG-23 glyceryl cocoate, PEG-6 caprylic/capric glycerides, PEG-7 glyceryl cocoate, polyglyceryl- 10 diisostearate, polyglyceryl-2 diisostearate, polyglyceryl-3 diisostearate and polyglyceryl-6 diisostearate.
- Exemplary polymeric ethers include poloxamer 124, poloxamer 182, poloxamer 184, poloxamer 188, poloxamer 237, poloxamer 331, poloxamer 338 and poloxamer 407.
- Exemplary sorbitan derivatives include polysorbate 20, polysorbate 40, polysorbate 60, polysorbate 80, sorbitan laurate, sorbitan oleate, sorbitan palmitate, sorbitan sesquioleate, sorbitan stearate and sorbitan trioleate.
- the surfactant component comprises one or more hydrophilic non ionic surfactants and is substantially free, or free of lipophilic surfactant.
- the surfactant component comprises a hydrophilic ethoxylated fatty alcohol ether. In another embodiment, the surfactant component comprises a hydrophilic ethoxylated fatty alcohol ether and is substantially free, or free of lipophilic surfactant.
- the surfactant has an HLB between about 10 and about 18, or between about 11 and about 17, or between about 11 and about 16, or between about 12 and about 14.
- the surfactant HLB is between about 12 and about 14.
- the pharmaceutically acceptable active agent for use in the compositions herein may be selected from corticosteroids, antihistamines, antibacterial agents, antifungal agents, antiviral agents, antiseptics, sunscreens, anaesthetics, analgesics, and skin conditioning agents, salts thereof, derivatives thereof and mixtures thereof.
- the compositions may comprise more than one active pharmaceutical ingredient, salt or derivative thereof. Suitable concentration ranges for the active pharmaceutical ingredient range from about 0.001% to about 30% by weight, depending on the nature of the active agent or combination of active agents.
- the active pharmaceutical ingredient is present in an amount from about 0.01% to about 5% by weight or in an amount from about 0.02% to about 2% by weight.
- Suitable corticosteroids include, but are not limited to, alclometasone dipropionate, amcinonide, beclomethasone dipropionate, betamethasone benzoate, betamethasone dipropionate, betamethasone valerate, budesonide, clobetasol propionate, clobetasone butyrate, cortisone acetate, desonide, desoximetasone, diflorasone diacetate, diflucortolone valerate, fluclorolone acetonide, flumethasone pivalate, fluocinolone acetonide, fluocinonide, fluocortin butyl, fluocortolone, fluprednidene acetate, flurandrenolide, flurandrenolone, fluticasone propionate, halcinonide, halobetasol propionate, hydrocortisone, hydrocortisone acetate,
- Suitable antihistamines include, but are not limited to, cetirizine, vapitadine, diphenhydramine, triprolidine, pyrilamine, chlorcyclizine, promethazine, carbinoxamine, tripelennamine, brompheniramine, hydroxyzine, terfenadine, chlorpheniramine, salts thereof, derivatives thereof, and mixtures thereof.
- a particularly preferred corticosteroid is hydrocortisone butyrate.
- Suitable antibacterial agents include, but are not limited to, gentamicin, neomycin, streptomycin, cefpodoxime proxetil, clindamycin, lincomycin, erythromycin, bacitracin, gramicidin(s), vancomycin, doxycycline, minocycline, oxytetracycline, tetracycline, fosfomycin, fusidic acid, mupirocin, sulfacetamide, metronidazole and dapsone, salts thereof, derivatives thereof, and mixtures thereof.
- Suitable antifungal agents include, but are not limited to, those selected from the group consisting of echinocandins such as anidulafunin, caspofungin and micafungin; polyenes such as amphotericin B, candicidin, filipin, fungichromin, hachimycin, hamycin, lucensomycin, mepartricin, natamycin, nystatin, pecilocin, perimycin; allylamines such as butenafine, naftifine and terbinafine; imidazoles such as bifonazole, butoconazole, chlormidazole, cloconazole, clotrimazole, econazole, enilconazole, fenticonazole, flutrimazole, isoconazole, ketoconazole, lanoconazole, miconazole, neticonazole, omoconazole, oxiconazole nitrate
- Suitable antivirals include, but are not limited to, acyclovir, desciclovir, carbovir, famciclovir, foscamet sodium, ganciclovir, interferons, penciclovir, valaciclovir, salts thereof, derivatives thereof, and mixtures thereof.
- Suitable antiseptics include, but are not limited to, hydrogen peroxide, chlorhexidine, cetrimide, povidone iodine, triclosan, salts thereof, derivatives thereof, and mixtures thereof.
- Suitable anaesthetics and analgesics include, but are not limited to, benzocaine, lidocaine, prilocaine and choline salicylate, salts thereof, derivatives thereof, and mixtures thereof.
- Suitable skin-conditioning agents include, but are not limited to, hydrocarbon oils and waxes, silicones, fatty acid derivatives, cholesterol, di- and tri-glycerides, vegetable oils, acetoglyceride esters, alkyl esters, alkenyl esters, lanolin, milk tri-glycerides, wax esters, beeswax, sterols, phospholipids, derivatives thereof, and mixtures thereof.
- the emulsions and emulsion compositions of the present disclosure also comprise water.
- Water forms the continuous phase of the emulsion system.
- the emulsions and emulsion compositions comprise water in an amount from about 55% to about 95% by weight.
- the water is present in an amount from about 60% to about 90% by weight.
- the water is present in an amount from about 65% to about 85% by weight.
- the present emulsions and emulsion compositions optionally comprise a hydroxyl containing organic solvent to, when necessary or desirable, facilitate solubilisation of the active pharmaceutical ingredient.
- the hydroxyl containing organic solvent is present in an amount from about 1 % to about 20% by weight. According to a further embodiment, the hydroxyl containing organic solvent is present in an amount of about 10% by weight.
- Suitable hydroxyl containing organic solvents include, but are not limited to, alcohols, including amyl alcohol, benzyl alcohol, cyclohexanedimethanol, diacetone alcohol, ethyl alcohol, hexyl alcohol, isobutyl alcohol, isopropyl alcohol, methyl alcohol, n-butyl alcohol, propyl alcohol, t-butyl alcohol, tetrahydrofurfuryl alcohol; carboxylic acids, including acetic acid; diols, including 1 ,2-hexanediol, butylene glycol, diethylene glycol, dipropylene glycol, ethyl hexanediol, ethylene glycol, hexylene glycol, pent
- the hydroxyl containing organic solvent is propylene glycol.
- the present foams and foam compositions may utilise a propellant in order to produce the foam upon application.
- the propellant may be any suitable liquefied gas or mixture thereof, such as a hydrocarbon, a chlorofluorocarbon, dimethyl ether, hydrofluorocarbons and a mixture thereof.
- propellants include compressed gases such as nitrogen, carbon dioxide, nitrous oxide and air.
- the propellant is a mixture of hydrocarbons.
- the mixture of hydrocarbons is a mixture of propane, n-butane and isobutane.
- the propellant is present in an amount from about 1 % to about 20% by weight, or about 3% to about 15% by weight. In one embodiment, the propellant is present in an amount from about 5% to about 10% by weight, such as about 5%, 6%, 7%, 8%, 9% or 10% by weight.
- the propellant may be introduced into the composition at the time of filling, utilising a pressurised container such as a standard aerosol dispenser.
- the composition When the composition is released from the pressurised container, the composition is an aerosol foam (also known as a mousse).
- the aerosol foam is homogeneous.
- the aerosol foam breaks easily with shear, such as gentle mechanical action e.g. rubbing or spreading.
- the propellant is absent from the composition.
- the composition may be expelled from its container by mechanical means, such as by a pump action or a squeezing action on the container.
- Suitable pressurized containers for use herein include aluminium, tin-plate and glass containers.
- the pressurized container is a one-piece aluminium container in which the inner surface is lined with a chemically inert lining.
- a chemically inert lining for use herein is polyamide-imide (PAM).
- PAM polyamide-imide
- the container may be fitted with an upright-use or inverted- use valve and a conventional foam spout actuator. Alternatively, the container may be fitted with a metered-dose valve.
- the emulsions or emulsion compositions may further comprise one or more excipients.
- excipients include diluents, suspending agents, adjuvants, preservatives, colorants, emollients, pH adjusting agents (including buffers), thickeners, humectants, fragrances, stabilisers, chelating agents, anticaking agents, viscosity increasing agents, moisturisers, solubilisers, plasticisers, penetration enhancing agents, film forming agents, antioxidants, wetting agents, foam boosters or any mixture of these components.
- the one or more excipients comprise a preservative, an antioxidant, a pH adjusting agent and a humectant.
- the present sub-micron emulsions or emulsion compositions may additionally comprise a preservative.
- the preservative is present in the composition in an amount from about 0.01% to about 3% by weight. In one embodiment the preservative is present in an amount from about 0.1% to about 2% by weight. In another embodiment the preservative is present in an amount of about 1% by weight.
- Suitable preservatives include, but are not limited to, benzyl alcohol, diazolidinyl urea, methyl paraben, ethyl paraben, propyl paraben, butyl paraben, phenoxyethanol, sorbic acid and salts thereof such as potassium sorbate, benzoic acid and salts thereof such as sodium benzoate, and mixtures thereof.
- the composition may also comprise one or more salts of EDTA, for example sodium salts of EDTA, such as Na 2 EDTA. These may serve to enhance preservation.
- the preservative is benzyl alcohol.
- the present sub-micron emulsions or emulsion compositions may further comprise an antioxidant.
- the antioxidant is present in the composition in an amount from about 0.001% to about 1% by weight. In one embodiment the antioxidant is present from about 0.05% to about 0.5% by weight. In another embodiment the antioxidant is present in an amount of about 0.1% by weight.
- Suitable antioxidants include, but are not limited to, butylated hydroxytoluene (BHT), butylated hydroxyanisole, tocopherol, propyl gallate, dl-a-tocopherol, vitamin E TPGS, derivatives thereof, and mixtures thereof.
- BHT butylated hydroxytoluene
- the antioxidant is BHT. pH Adjusting Agent
- the present sub-micron emulsion compositions may further comprise a pH adjusting agent to aid in stabilizing the active pharmaceutical ingredient.
- the pH adjusting agent is present in an amount from about 0.01% to about 10% by weight.
- the pH adjusting agent is a base. Suitable pH adjusting bases include but are not limited to amines, bicarbonates, carbonates and hydroxides (such as alkali or alkaline earth metal hydroxides, as well as transition metal hydroxides).
- the pH adjusting agent may also be an acid, an acid salt, or mixtures thereof.
- the pH adjusting agent may also be a buffer.
- Suitable buffers include, but are not limited to citrate/citric acid, acetate/acetic acid, phosphate/phosphoric acid, formate/formic acid, propionate/propionic acid, lactate/lactic acid, carbonate/carbonic acid, ammonium/ammonia, derivatives thereof, and combinations thereof.
- the pH adjusting agent is a citrate/citric acid buffer.
- the citrate/citric acid buffer is present in an amount from about 0.02% to about 2% by weight.
- the sub-micron emulsions or emulsion compositions of the present disclosure may comprise one or more humectants included to enhance the performance of the composition.
- Any humectant known in the art for use in pharmaceutical compositions may be used, for example, glycerine.
- the composition may comprise up to 30% by weight of one or more humectants, based on the total weight of the composition, or up to about 20% by weight, or up to about 15% by weight.
- the humectant may be present in an amount of about 1 to about 20% by weight, or about 2 to about 15%, or about 3 to about 10%, based on the total weight of the composition.
- FIG. 1 is a flow chart of a prior art process for producing a sub-micron emulsion composition in which both lipophilic and hydrophilic surfactants are utilized and the active pharmaceutical ingredient is added after emulsion formation.
- the oil phase may contain other components such as antioxidant BHT and preservative benzyl alcohol.
- the oil phase is heated to a temperature of about 70°C.
- Water phase (2) is prepared including water and optional further components, such as buffer citric acid/sodium citrate, preservative disodium EDTA and humectant glycerine.
- the water phase is heated to a temperature of about 70°C.
- the heated water phase is added to the heated oil phase to provide oil and water mixture (3).
- This mixture is further heated to about 85°C at which point the cloud point is observed.
- the resulting emulsion (4) is then cooled to about 40°C (5) at which point a solution of active pharmaceutical ingredient (API; hydrocortisone butyrate) in propylene glycol at about 22°C (6) is added to yield sub-micron emulsion composition (7).
- API active pharmaceutical ingredient
- the resulting sub-micron emulsion composition has an intensity weighted mean oil droplet diameter of about 56 nm. Similar results are obtained if the glycerine is added after emulsion formation rather than with the water phase.
- FIG. 2 is a flow chart of a process for producing a sub-micron emulsion composition according to one embodiment of the present disclosure in which a single hydrophilic surfactant is utilized and the active pharmaceutical ingredient is added after emulsion formation.
- the oil phase may contain other components such as antioxidant BHT and preservative benzyl alcohol.
- the oil phase is heated to a temperature of about 70°C.
- Water phase (2) is prepared including water and optional further components, such as buffer citric acid/sodium citrate, preservative disodium EDTA and humectant glycerine.
- the water phase is heated to a temperature of about 70°C.
- the heated water phase is added to the heated oil phase to provide oil and water mixture (3).
- This mixture is further heated to about 85°C at which point the cloud point is observed.
- the resulting mixture (4) is then cooled to about 40°C (5) at which point a solution of active pharmaceutical ingredient (API; hydrocortisone butyrate) in propylene glycol at about 22°C (6) is added to yield a sub-micron emulsion composition (7).
- API active pharmaceutical ingredient
- the resulting sub-micron emulsion composition has an intensity weighted mean oil droplet diameter of about 20 nm. Similar results are obtained if the glycerine is added after emulsion formation rather than with the water phase.
- FIG 3 is a flow chart of a process for producing a sub-micron emulsion composition according to another embodiment of the present disclosure in which a single hydrophilic surfactant is utilized and the active pharmaceutical ingredient is added before emulsion formation.
- the oil phase may contain other components such as antioxidant BHT and preservative benzyl alcohol.
- a solution of active pharmaceutical ingredient (API; hydrocortisone butyrate) in propylene glycol at about 22°C (2) is prepared.
- the API solution is added to the oil phase and the resulting mixture (3) heated to about 70°C.
- Water phase (4) is prepared including water and optional further components, such as buffer citric acid/sodium citrate, preservative disodium EDTA and humectant glycerine.
- the water phase is heated to a temperature of about 70°C.
- the heated water phase is added to the heated oil phase to provide oil and water mixture (5).
- This mixture is further heated to about 85°C at which point the cloud point is observed (6).
- the mixture (6) is then cooled to yield sub-micron emulsion composition (7).
- the resulting sub-micron emulsion composition has an intensity weighted mean oil droplet diameter of about 60 nm. Similar results are obtained if the glycerine is added after emulsion formation rather than with the water phase.
- FIG 4 is a flow chart of a process for producing a sub-micron emulsion composition according to one embodiment of the present disclosure in which a single hydrophilic surfactant is utilized and the active pharmaceutical ingredient is added before emulsion formation.
- the oil phase may contain other components such as antioxidant BHT and preservative benzyl alcohol.
- the oil phase is heated to a temperature of about 70°C.
- Water phase (2) is prepared including water and optional further components, such as buffer citric acid/sodium citrate, preservative disodium EDTA and humectant glycerine.
- the water phase is heated to a temperature of about 70°C.
- the heated water phase is added to the heated oil phase to provide oil and water mixture (3).
- a solution of active pharmaceutical ingredient (API; hydrocortisone butyrate) in propylene glycol at about 22°C (4) is then added and the resulting mixture (5) further heated to about 85°C at which point the cloud point is observed.
- the resulting mixture (6) is then cooled to yield sub-micron emulsion composition (7).
- the resulting sub-micron emulsion composition has an intensity weighted mean oil droplet diameter of about 20 nm. Similar results are obtained if the glycerine is added after emulsion formation rather than with the water phase.
- the emulsion aerosol foam compositions of the present disclosure are cosmetically elegant and suitable for application to the face, hands and other parts of the body including scalp, feet, legs, arms and trunk, for treating a skin disorder or condition.
- the compositions are useful for application to both large and small skin surfaces.
- the compositions are also useful for application to hair bearing areas.
- the compositions are easily spread, non-greasy, non-drying and leave minimal residue on the skin.
- the present disclosure provides for a method of treating a skin disease, disorder or condition, comprising administering to the skin of a patient requiring such treatment an effective amount of a composition of the present disclosure.
- the present disclosure also relates to the use of the compositions as described herein for the preparation of a medicament for the treatment of a skin disease, disorder or condition.
- the present disclosure also relates to a method of treating a skin disease, disorder or condition by administering to the skin of a patient requiring such treatment an effective amount of a composition of the present invention.
- Exemplary, non-limiting, skin diseases, disorders or conditions treatable by the present compositions include acne, rosacea, dermatitis, psoriasis and fungal disorders.
- the vehicle of the presently disclosed sub-micron emulsion composition is preferably suitable for use in applications that require direct contact with human or animal skin.
- the sub-micron emulsion composition is preferably in a form of a cream, foam, gel, lotion, pomade, mousse, balm, pump spray, aerosol spray, a wipe or any combinations thereof.
- Preferred embodiments of the present disclosure include:
- An oil in water sub-micron emulsion comprising an oil phase dispersed throughout a water phase, said emulsion comprising:
- the at least one surfactant is miscible both with water and the at least one hydroxyl containing organic solvent
- intensity weighted mean droplet diameter of the oil is less than 100 nm.
- An oil in water sub-micron emulsion comprising an oil phase dispersed throughout a water phase, said emulsion comprising:
- the at least one surfactant is miscible both with water and the hydroxyl containing organic solvent
- intensity weighted mean droplet diameter of the oil is less than 100 nm.
- An oil in water sub-micron emulsion comprising an oil phase dispersed throughout a water phase, said emulsion comprising: (a) at least one oil;
- the at least one surfactant is miscible both with water and the hydroxyl containing organic solvent
- intensity weighted mean droplet diameter of the oil remains below 100 nm for at least eight weeks when stored at 40°C.
- An oil in water sub-micron emulsion comprising an oil phase dispersed throughout a water phase, said emulsion comprising:
- intensity weighted mean droplet diameter of the oil remains below 100 nm for at least eight weeks when stored at 40°C.
- An oil in water sub-micron emulsion composition comprising the sub-micron emulsion according to any one of the herein disclosed embodiments and at least one pharmaceutically active ingredient.
- An oil in water sub-micron emulsion composition according to any one of the herein disclosed embodiments, wherein the at least one pharmaceutically active ingredient is hydrocortisone butyrate.
- An oil in water sub-micron emulsion composition comprising an oil phase dispersed throughout a water phase, said emulsion composition comprising:
- intensity weighted mean droplet diameter of the oil remains below 100 nm for at least eight weeks when stored at 40°C.
- An oil in water sub-micron emulsion composition comprising an oil phase dispersed throughout a water phase, said emulsion composition comprising:
- An oil in water sub-micron emulsion composition comprising an oil phase dispersed throughout a water phase, said emulsion composition comprising:
- pH of the composition is less than or equal to 5.0.
- An oil in water sub-micron emulsion composition comprising an oil phase dispersed throughout a water phase, said emulsion composition comprising:
- intensity weighted mean droplet diameter of the oil remains below 100 nm for at least eight weeks when stored at 40°C.
- An oil in water sub-micron emulsion aerosol foam composition said composition comprising:
- an oil in water sub-micron emulsion foam comprising an oil phase dispersed throughout a water phase, said oil in water sub-micron emulsion foam composition comprising:
- the at least one surfactant is miscible both with water and the at least one hydroxyl containing organic solvent
- the at least one active pharmaceutical ingredient comprises hydrocortisone butyrate.
- a oil in water sub-micron emulsion aerosol foam composition said composition comprising:
- an oil in water sub-micron emulsion foam comprising an oil phase dispersed throughout a water phase, said oil in water sub-micron emulsion foam composition comprising:
- the at least one surfactant is miscible both with water and the at least one hydroxyl containing organic solvent
- the at least one active pharmaceutical ingredient comprises hydrocortisone butyrate.
- compositions or foams are substantially free of lipophilic surfactants.
- compositions or foams contain a single hydrophilic surfactant.
- Figure 5 illustrates conductivity in pS/cm (1) and temperature °C (2) vs time in minutes of the formulation during preparation. Conductivity measurements are ideally suited to determine the phase continuity of an emulsion. A water continuous emulsion will
- a bicontinuous emulsion will have a conductivity intermediate between that of water and oil. See, for example, US 2010/0009063 (Beverungen et al ) which teaches [0064] that in a phase inversion temperature (PIT) process utilizing both hydrophilic and lipophilic surfactants in which an oil in water emulsion inverts to a water in oil emulsion the conductivity drops to zero.
- PIT phase inversion temperature
- Example 1 and Example 2 differ only in the amount of propylene glycol used.
- Sub-micron emulsion compositions were also prepared using 0.1% w/w hydrocortisone butyrate.
- Example 1 The sub-micron emulsion composition of Example 1 was also tested under accelerated stability conditions (40°C/75%RH) for up to eight weeks to determine the stability of hydrocortisone butyrate. Stability specification requirements for hydrocortisone butyrate are 90- 110% Label Claim at two years shelf life. The results are shown in Table 3.
- the particle or droplet size of the sub-micron emulsion composition of Example 1 was determined at time zero and also after storage under varied conditions. The droplet size was measured on a particle sizer using dynamic light scattering.
- Figure 6 shows the particle size distribution at time zero.
- the intensity weighted mean diameter of the droplets was 60.7 nm and 99% of the distribution was under 208 nm in diameter.
- Figure 7 shows the particle size distribution after storing the emulsion at 5°C for four weeks. There was very little change in the distribution with an intensity weighted mean diameter of 63.9 nm observed with 99% of the droplets under 204.7 nm in diameter.
- Figure 8 shows the distribution after storing the emulsion at 25°C for four weeks. There was very little change in the distribution with an intensity weighted mean diameter of 63.4 nm observed with 99% of the droplets under 213.8 nm in diameter.
- Figure 9 shows the distribution after storing the emulsion at 40°C for four weeks. There was very little change in the intensity weighted mean diameter of the droplets (65.1 nm). 99% of the droplets were under 372.5 nm in diameter.
- Example 1 The sub-micron emulsion composition of Example 1 was packed in a can, fitted with a valve and pressurized with P75 propellant.
- Foam assessment indicated good foam peak upon expelling and easy to collapse upon manipulation on skin.
- the foams were non-greasy, non-sticky and fast absorbing.
- foam quality did not change after storage of the sub-micron emulsion composition for a period of one year in a PAM lined can.
- the intensity weighted mean droplet size of the emulsion composition was 30 nm. After four weeks storage at 40°C there were 1.55% by weight total degradants based on the staring amount of hydrocortisone butyrate.
- the intensity weighted mean droplet size of the emulsion composition was 56 nm. After four weeks storage at 40°C there were 0.89% by weight total degradants based on the starting amount of hydrocortisone butyrate.
- Example 2 The stability of formulations prepared as for Example 2 were determined over a period of one year at 25°C. Two formulations, Examples 3 and 4 containing respectively 0.05 and 0.1 %w/w hydrocortisone butyrate, were studied.
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Abstract
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Priority Applications (4)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CA3099809A CA3099809A1 (en) | 2018-05-11 | 2019-05-09 | Sub-micron emulsions |
| EP19799871.9A EP3793524A4 (en) | 2018-05-11 | 2019-05-09 | SUBMICRON EMULSIONS |
| AU2019266360A AU2019266360A1 (en) | 2018-05-11 | 2019-05-09 | Sub-micron emulsions |
| JP2021512973A JP2021523230A (en) | 2018-05-11 | 2019-05-09 | Submicron emulsion |
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| US201862670480P | 2018-05-11 | 2018-05-11 | |
| US62/670,480 | 2018-05-11 |
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| WO2019213707A1 true WO2019213707A1 (en) | 2019-11-14 |
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| PCT/AU2019/050426 Ceased WO2019213707A1 (en) | 2018-05-11 | 2019-05-09 | Sub-micron emulsions |
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| US (1) | US20190358160A1 (en) |
| EP (1) | EP3793524A4 (en) |
| JP (1) | JP2021523230A (en) |
| AU (1) | AU2019266360A1 (en) |
| CA (1) | CA3099809A1 (en) |
| WO (1) | WO2019213707A1 (en) |
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| US12571108B2 (en) * | 2022-03-12 | 2026-03-10 | Razor Keep, LLC | Blade preserving products and methods for manufacturing |
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| WO2006045170A2 (en) * | 2004-10-26 | 2006-05-04 | Natura Cosméticos S.A. | An oil-in-water nanoemulsion, a cosmetic composition and a cosmetic product comprising it, a process for preparing said nanoemulsion |
| US20080138296A1 (en) * | 2002-10-25 | 2008-06-12 | Foamix Ltd. | Foam prepared from nanoemulsions and uses |
| WO2008077641A1 (en) * | 2006-12-22 | 2008-07-03 | Biofrontera Bioscience Gmbh | Nanoemulsion |
| WO2011118958A2 (en) * | 2010-03-23 | 2011-09-29 | (주)아모레퍼시픽 | Oil-in-water type nano-emulsion composition and method for preparing same |
| US20120064136A1 (en) * | 2010-09-10 | 2012-03-15 | Nanobio Corporation | Anti-aging and wrinkle treatment methods using nanoemulsion compositions |
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| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| AU2005279704B2 (en) * | 2004-08-31 | 2010-05-13 | Stiefel Research Australia Pty Ltd | Microemulsion and sub-micron emulsion process and compositions |
| US8449867B2 (en) * | 2004-08-31 | 2013-05-28 | Stiefel Research Australia Pty Ltd | Microemulsion and sub-micron emulsion process and compositions |
| PT2400951T (en) * | 2009-02-25 | 2018-11-26 | Mayne Pharma Llc | TOPIC FOAM COMPOSITIONS |
-
2019
- 2019-05-09 JP JP2021512973A patent/JP2021523230A/en active Pending
- 2019-05-09 CA CA3099809A patent/CA3099809A1/en active Pending
- 2019-05-09 US US16/407,740 patent/US20190358160A1/en not_active Abandoned
- 2019-05-09 EP EP19799871.9A patent/EP3793524A4/en not_active Withdrawn
- 2019-05-09 WO PCT/AU2019/050426 patent/WO2019213707A1/en not_active Ceased
- 2019-05-09 AU AU2019266360A patent/AU2019266360A1/en not_active Abandoned
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| US20080138296A1 (en) * | 2002-10-25 | 2008-06-12 | Foamix Ltd. | Foam prepared from nanoemulsions and uses |
| WO2006045170A2 (en) * | 2004-10-26 | 2006-05-04 | Natura Cosméticos S.A. | An oil-in-water nanoemulsion, a cosmetic composition and a cosmetic product comprising it, a process for preparing said nanoemulsion |
| WO2008077641A1 (en) * | 2006-12-22 | 2008-07-03 | Biofrontera Bioscience Gmbh | Nanoemulsion |
| WO2011118958A2 (en) * | 2010-03-23 | 2011-09-29 | (주)아모레퍼시픽 | Oil-in-water type nano-emulsion composition and method for preparing same |
| US20120064136A1 (en) * | 2010-09-10 | 2012-03-15 | Nanobio Corporation | Anti-aging and wrinkle treatment methods using nanoemulsion compositions |
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| CHUESIANG, P. ET AL.: "Optimization of cinnamon oil nanoemulsions using phase inversion temperature method: Impact of oil phase composition and surfactant concentration", JOURNAL OF COLLOID AND INTERFACE SCIENCE, vol. 514, 1 December 2017 (2017-12-01), pages 208 - 216, XP085344233, DOI: 10.1016/j.jcis.2017.11.084 * |
| KADRI, H.E. ET AL.: "Do oil-in-water (O/W) nano-emulsions have an effect on survival and growth of bacteria?", FOOD RESEARCH INTERNATIONAL, vol. 101, 2017, pages 114 - 128, XP055650703, DOI: 10.1016/j.foodres.2017.08.064 * |
| OKAMOTO, T. ET AL.: "Preparation and Thermal Properties of Fatty Alcohol/Surfactant/Oil/Water Nanoemulsions and Their Cosmetic Applications", JOURNAL OF OLEO SCIENCE, vol. 65, no. 1, pages 27 - 36, XP055521893, DOI: 10.5650/jos.ess15183 * |
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| SHINODA, K. ET AL.: "The Correlation between Phase Inversion Temperature In Emulsion and Cloud Point in Solution of Nonionic Emulsifer", THE JOURNAL OF PHYSICAL CHEMISTRY, vol. 68, no. 12, 1964, pages 3485 - 3490, XP055018237, DOI: 10.1021/j100794a007 * |
Also Published As
| Publication number | Publication date |
|---|---|
| AU2019266360A1 (en) | 2021-01-07 |
| CA3099809A1 (en) | 2019-11-14 |
| US20190358160A1 (en) | 2019-11-28 |
| EP3793524A4 (en) | 2022-03-30 |
| JP2021523230A (en) | 2021-09-02 |
| EP3793524A1 (en) | 2021-03-24 |
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