WO2012035374A1 - Crème dermaceutique fabriquée à l'aide de fusidate de sodium, de clotrimazole et de propionate de fluticasone - Google Patents
Crème dermaceutique fabriquée à l'aide de fusidate de sodium, de clotrimazole et de propionate de fluticasone Download PDFInfo
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- WO2012035374A1 WO2012035374A1 PCT/IB2010/056120 IB2010056120W WO2012035374A1 WO 2012035374 A1 WO2012035374 A1 WO 2012035374A1 IB 2010056120 W IB2010056120 W IB 2010056120W WO 2012035374 A1 WO2012035374 A1 WO 2012035374A1
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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
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- 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
- A61K31/33—Heterocyclic compounds
- A61K31/395—Heterocyclic compounds having nitrogen as a ring hetero atom, e.g. guanethidine or rifamycins
- A61K31/41—Heterocyclic compounds having nitrogen as a ring hetero atom, e.g. guanethidine or rifamycins having five-membered rings with two or more ring hetero atoms, at least one of which being nitrogen, e.g. tetrazole
- A61K31/415—1,2-Diazoles
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- 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
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- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61K—PREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
- A61K31/00—Medicinal preparations containing organic active ingredients
- A61K31/56—Compounds containing cyclopenta[a]hydrophenanthrene ring systems; Derivatives thereof, e.g. steroids
- A61K31/575—Compounds containing cyclopenta[a]hydrophenanthrene ring systems; Derivatives thereof, e.g. steroids substituted in position 17 beta by a chain of three or more carbon atoms, e.g. cholane, cholestane, ergosterol, sitosterol
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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
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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
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- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61K—PREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
- A61K2300/00—Mixtures or combinations of active ingredients, wherein at least one active ingredient is fully defined in groups A61K31/00 - A61K41/00
Definitions
- the present invention relates to primary & secondary bacterial skin infections and inflammations and in particular it relates to the single dose treatment using a cream containing a corticosteroid in the form of Fluticasone Propionate and an
- Fusidic acid wherein the Fusidic acid has been made using Sodium Fusidate as the starting Active Pharmaceutical Ingredient (API).
- Topical and systemic inflammatory treatment compositions typically employ a combination of
- corticosteroids in a base component.
- the active ingredients typically comprise Corticosteroids such as Betamethasone Valerate, Fluticasone Propionate, Mometasone Furoate, Dexamethasone Acetate, Hydrocortisone Acetate, Clobetasol Propionate, Beclomethasone Dipropionate, Betamethasone Dipropionate and the like.
- Fungal infections sometimes follow the use of antibiotics, which kill nonpathogenic as well as pathogenic bacteria, thereby providing a free field in the body for fungal invasion.
- Topical and systemic fungal infections treatment compositions typically employ antifungal agents as active ingredients in a base component.
- the active ingredients typically comprise antifungal agents such as Miconazole Nitrate, Terbinafine Hydrochloride, Ketoconazole, Clotrimazole and the like.
- Topical and systemic bacterial infection treatment compositions typically employ at least one active pharmaceutical ingredient (API) in combination with a base component.
- APIs typically comprise an antibiotic/antibacterial such as Fusidic acid and the like.
- Fusidic acid in fine powder form is used as source API.
- the small particle size enhances its dermal contact by providing a large specific surface area and penetration, and provides a smooth feel on application to skin.
- a serious shortcoming of the fine size of Fusidic acid particles is that it presents an enormous surface area for contact and reaction with molecular Oxygen during manufacture, handling, and processing of the cream. This has serious implications to its chemical stability and results in rapid reduction in potency of the API (Fusidic acid) in the final cream formulation.
- Stabilization of medicaments containing Fusidic acid against oxidation involves observing a number of stringent precautionary procedures during manufacture and storage. These include:
- the invention discloses a dermaceutical cream containing Fluticasone Propionate as a corticosteroid, an antifungal agent in the form of Clotrimazole and an antibacterial agent in the form of Fusidic acid, which Fusidic acid is formed in situ from Sodium Fusidate as the starting raw material, wherein Sodium Fusidate is converted into Fusidic acid under oxygen-free environment.
- the cream of the present invention has greater shelf-life stability and the finer particle size of the API than the conventional creams containing Fusidic acid.
- the cream of the present invention contains Fusidic acid as the API that has been formed in situ from Sodium Fusidate, Fluticasone Propionate and Clotrimazole, in a cream base comprising a preservative, an acid, a co-solvent, emulsifiers and a waxy material along with water, preferably purified water.
- Creams containing Fusidic acid that are made using Sodium Fusidate as starting API are not available.
- Creams containing Fusidic acid that are made using Sodium Fusidate along with a corticosteroid in the form of Fluticasone Propionate as starting APIs are not available.
- Creams containing Fusidic acid that are made using Sodium Fusidate along with corticosteroid in the form of Fluticasone Propionate and Clotrimazole as antifungal agent are also not available.
- fusidic acid has very labile trans, sys, trans arrangement of these rings which forces ring B into a boat conformation.
- fusidic acid readily undergoes acid mediated dehydration of C-l l hydroxy group to generate a C9-C11 double bond which on further isomerization followed by oxidization in the presence of oxygen leads to a mixture of biologically inactive fusidic acid derivatives.
- carboxylic acid functional group present in the fusidic acid facilitates the above process more readily upon storage.
- carboxylic acid promoted decomposition is not feasible.
- sodium fusidate has superior solid state stability when compared to fusidic acid. This discovery of the inventor has also been corroborated through stability assessment of sodium fusidate and fusidic acid.
- Tables 1 and 2 also show the comparison between the stability of the Fusidic acid and Sodium Fusidate as raw APIs.
- the study was carried out using an in-house UPLC method developed by the applicant, which the applicant believes is a true stability-indicating method as opposed to the titration method suggested in British Pharmacopoeia (BP). This is because the BP method does not differentiate between the intact API and the degraded form.
- a dermaceutical cream that uses Sodium Fusidate and steroids would exploit the benefit of the fact that Sodium Fusidate is more stable than Fusidic acid and it would also provide a cream formulation which is far superior in its application qualities than an ointment. It would thus fill an existing need for a cream that has better stability than currently available creams containing Fusidic acid and steroids.
- Sodium Fusidate rather than Fusidic acid may be used as the starting API during the cream's manufacture.
- Sodium Fusidate as starting material eliminates the drawback associated with the manufacture and storage of existing Fusidic acid creams.
- the applicant has found that the stability of the cream of the present invention over the entire shelf life of the product is within acceptable level. This is strikingly advantageous over existing creams contain fusidic acid as APIs, which have a life of one month once the tube has been opened.
- the Fusidic acid and steroids cream prepared using Sodium Fusidate as the starting APIs showed good chemical stability, and efficacy.
- the application discloses a cream containing Steroids in the form of Fluticasone Propionate and Fusidic acid (the API) that has been prepared using Sodium Fusidate as the starting API, in which Fusidic acid forms in-situ under totally oxygen free environment by slow addition of an acid, into a molecular dispersion form (due to the presence of a co-solvent) at the intermediate stage, and which Fusidic acid regenerates as an extremely fine dispersion when added to a final cream base, thereby resulting in a finely and homogeneously dispersed Fusidic acid in the final cream. All these operations are performed in an environment free of atmospheric oxygen.
- the cream of the present invention contains Fusidic acid as the API that has been formed in situ from Sodium Fusidate, a steroid in the form of Fluticasone Propionate in a cream base comprising an acid, a preservative, a co-solvent, emulsifiers and a waxy material along with water, preferably purified water.
- the cream base of the present invention optionally further comprises an ingredient selected from a group comprising a buffering agent, an anti oxidant, a chelating agent, and a humectant, or any combination thereof.
- the present invention provides a novel cream that has been produced using Sodium Fusidate as the starting raw material, and which cream contains Fusidic acid of high therapeutic efficacy and of chemical stability that is generally superior to the commercially available creams containing Fusidic acid.
- the Fusidic acid and steroid cream of the present invention has been manufactured in a totally oxygen free environment under purging with inert gas and applying vacuum. Under these conditions, the Sodium Fusidate is converted in situ into Fusidic acid.
- the cream of the present invention is used in the treatment of bacterial skin infections and inflammations.
- the pH of the product of the present invention is between 3 and 6.
- Sodium Fusidate ointments that are commercially available are greasy and cosmetically non elegant. It is essential that the active drug penetrates the skin for the optimum bio-dermal efficacy.
- the particle size of the active drug plays an important role here. It is necessary that the active drug is available in a finely dispersed form for the product to be being efficacious. Also this is to be achieved in the safe pH compatible environment of skin (4.0 to 6.0). To achieve all these, it is essential to choose proper vehicles or co-solvents for the dissolution or dispersion of the drug.
- the product of the present invention is efficacious due to the pronounced antiinflammatory, antibacterial activity of the steroid and regenerated Fusidic acid which is available in reduced particle size than the conventional products, and in a finely dispersed form.
- the average size of the fusidic acid particles in the present invention has been found to be approximately 1 ⁇ whereas that for the existing creams varies between 14 ⁇ to 22 ⁇ . Equally importantly, the minimum particle size observed was approx. 0.28 ⁇ whereas the minimum particle size observed for existing creams ranged between 4 ⁇ and 10 ⁇ . The cream of the present invention is therefore physically distinct from any of the existing creams and easily distinguishable.
- Table 2A Particle Size Distribution of Fusidic Acid
- the reduced particle size of the fusidic acid of the present invention is of particular significance as it has been achieved without compromising the stability of fusidic acid.
- WO2007087806 by Leo Pharma have employed mechanical means such as mortar and pestle to mechanically grind fusidic acid for adding to a cream base.
- mechanical means such as mortar and pestle to mechanically grind fusidic acid for adding to a cream base.
- WO2007087806 is silent on the particle size achieved, it will be known to a person skilled in the art that its particle size of fusidic acid cannot be finer than that of the present invention.
- the stability of the fusidic acid in creams produced by the teachings of WO2007087806 or indeed any fusidic acid creams that employ grinding of fusidic acid in presence of oxygen cannot be as good as that of the present invention as evidenced by the data included in Table 2A.
- the inventor has screened different co-solvents such as Propylene Glycol, Hexylene Glycol, PolyEthyleneGlycol-400 & the like and dissolved the Sodium Fusidate in one of above co-solvents varying between 5% (w/w) to 40% (w/w) under inert gas purging and under vacuum and converted to Fusidic acid in- situ by adding an acid such as HC1, H 2 SO 4 , HNO 3 , Lactic acid and the like between 0.005% (w/w) and about 0.5% (w/w) under stirring and obtained Fusidic acid in more stabilized and solution form, which makes our final product in a cream base which easily penetrates the skin and highly efficacious, and also highly derma compatible by having a pH of about 3.0 to about 6.0.
- co-solvents such as Propylene Glycol, Hexylene Glycol, PolyEthyleneGlycol-400 & the like and dissolved the Sodium Fusidate in one of above
- a novel dermaceutical cream as described in the preferred embodiment 1 wherein said corticosteroid is added in the form of Fluticasone propionate, added in an amount between 0.005% (w/w) and about 2.5% (w/w) , preferably between 0.005% (w/w) and about 1.00% (w/w) , and most preferably about
- said antifungal agent is added in the from if Clotrimazole, added in an amount between 0.5% (w/w) to about 5.0% (w/w), preferably from about 0.5% (w/w) to about 3.0% (w/w), and most preferably from about 1.0 % (w/w), and said Fusidic acid is present in an amount between 0.1 % (w/w) and about 25% (w/w), preferably between 0.5% (w/w) and about 5%(w/w), and more preferably about 2.00 % (w/w), and in which the amount of said Sodium Fusidate used to form in situ said Fusidic acid is in the range between about
- said preservatives is selected from a group comprising Methylparaben, Propylparaben, Chlorocresol, Potassium sorbate, Benzoic acid and the like, either singly or any combination thereof, in an amount between 0.05% (w/w) and 0.5% (w/w), preferably 0.3% (w/w), more preferably 0.2% (w/w)
- said primary and secondary emulsifiers are selected from a group comprising Cetostearyl alcohol, Cetomacrogol-1000, Polysorbate-80, Span-80 and the like, either singly or any combination thereof, in an amount between 1% (w/w) and 25% (w/w), preferably 20% (w/w), more preferably 15% (w/w)
- said waxy material is selected from a group comprising white soft paraffin, liquid
- an anti-oxidant is selected from a group comprising Butylated Hydroxy Anisole, Butylated Hydroxy Toluene and the like, either singly or any combination thereof, in an amount between 0.001% (w/w) and 5% (w/w), preferably 0.1 % (w/w), more preferably 0.01% (w/w).
- a novel dermaceutical cream as described in the preferred embodiment 1 and embodiments nos. 1 to 4 which further comprises a chelating agent, wherein said chelating agent is selected from a group comprising Disodium EDTA and the like, either singly or any combination thereof, in an amount between 0.01% (w/w) and 1% (w/w), preferably 0.5% (w/w), more preferably 0.1 % (w/w).
- a novel dermaceutical cream as described in the preferred embodiment 1 and embodiments nos. 1 to 5 which further comprises a humectant, wherein said humectant is selected from a group comprising Glycerin, Sorbitol, Propylene glycol and the like, either singly or any combination thereof, in an amount between 5% (w/w) and 40% (w/w), preferably 35% (w/w), more preferably 30% (w/w).
- a process to make a cream containing Fluticasone Propionate, Clotrimazole and_fusidic acid said cream being as disclosed in preferred embodiment 1 and embodiment 1 , said process comprising the step of using sodium fusidate as the raw active pharmaceutical ingredient and converting said sodium fusidate in situ into fusidic acid under oxygen-free environment in a cream base, to which Fluticasone Propionate and Clotrimazole are added.
- a preservative selected from a group comprising Methylparaben, Propylparaben, Chlorocresol, Potassium sorbate, Benzoic acid and the like, either singly or any combination thereof, in an amount between 0.05% (w/w) and 0.5% (w/w), preferably 0.3% (w/w), more preferably 0.2% (w/w), more preferably Benzoic acid, c. mixing the mixture using an agitator at 10 to 50 RPM while maintaining the temperature of the mixture at 70 0 C to 80 0 C,
- waxy materials selected from a group comprising white soft paraffin, liquid paraffin, hard paraffin and the like, either singly or any combination thereof, in an amount between 5% (w/w) and 20% (w/w), preferably 15% (w/w), more preferablyl2.5% (w/w), to an oil-phase vessel and melting said wax by heating to 70 ° C to 80 ° C, adding to said oil-phase vessel of a primary emulsifier, preferably in the form of a non ionic surfactant, selected from a group comprising Cetostearyl alcohol, Cetomacrogo 1-1000, either singly or any combination thereof, wherein Cetostearyl alcohol is added in an amount between 1% (w/w) and 15% (w/w), preferably 15% (w/w), more preferably 12.5% (w/w), and Cetomacrogo 1-1000 is added in an amount between 0.1 % (w/w) and 5% (w/w), preferably 1% (w/w), more preferably 0.5% (w
- a co-solvent selected from a group comprising
- an acid selected from a group comprising acids such as HC1, H 2 SO 4 , HNO 3 , Lactic acid and the like, either singly or any combination thereof, preferably Nitric acid in an amount from about 0.005% (w/w) to 0.5% (w/w), preferably 0.3% (w/w), more preferably 0.25% (w/w), adding in a second API- vessel propylene glycol in an amount between 1% (w/w) and 20% (w/w), preferably 15% (w/w), more preferably 5% (w/w) and purified water in an amount between 1 % (w/w) and 20 % (w/w), preferably 15 % (w/w), more preferably 5% (w/w), and dissolving surfactant preferably Cetomacro go 1-1000 in an amount between 0.1 % (w/w) and 3% (w/w), preferably 1% (w/w), more preferably 0.
- an acid selected from a group comprising acids such as HC1, H 2 SO 4
- step g transferring the contents of said first API-vessel of step i to the mixing vessel of step g with continuous stirring at 10 to 50 RPM and homogenizing the mixture at 1000 to 3000 RPM under inert gas flushing and under vacuum of minus 1000 to minus 300 mm of mercury, said inert gas being preferably nitrogen,
- the process described in embodiment no. 10 further incorporates after the step of adding a preservative, a step of adding a chelating agent, selected from a group comprising Disodium EDTA and the like, either singly or any combination thereof, in an amount from about 0.01 % (w/w) to 1 % (w/w), preferably 0.5% (w/w), more preferably 0.1 % (w/w).
- a chelating agent selected from a group comprising Disodium EDTA and the like, either singly or any combination thereof, in an amount from about 0.01 % (w/w) to 1 % (w/w), preferably 0.5% (w/w), more preferably 0.1 % (w/w).
- the process described in embodiments no. 10 and 11 further incorporates after the step of adding the chelating agent, a buffering agent, selected from a group comprising Di Sodium Hydrogen Ortho Phosphate, Sodium Hydrogen Ortho Phosphate and the like from about 0.01 % (w/w) to 2.00% (w/w), preferably 1.5 % (w/w), more preferably 1% (w/w).
- a buffering agent selected from a group comprising Di Sodium Hydrogen Ortho Phosphate, Sodium Hydrogen Ortho Phosphate and the like from about 0.01 % (w/w) to 2.00% (w/w), preferably 1.5 % (w/w), more preferably 1% (w/w).
- the process described in embodiments no. 10, 11 , and 12 further incorporate in the step h of embodiment 10, an anti oxidant selected from a group comprising Butylated Hydroxy Anisole, Butylated Hydroxy Toluene and the like from about 0.001% (w/w) to 5% (w/w), preferably 0.1 % (w/w), more preferably 0.01 % (w/w).
- an anti oxidant selected from a group comprising Butylated Hydroxy Anisole, Butylated Hydroxy Toluene and the like from about 0.001% (w/w) to 5% (w/w), preferably 0.1 % (w/w), more preferably 0.01 % (w/w).
- the process described in embodiments no. 10, 11 ,12 and 13 further incorporate a humectant in the step a of embodiment 10, wherein said humectant is selected from a group comprising Glycerin, Sorbitol, Propylene glycol and the like, either singly or any combination thereof, in an amount between 5% (w/w) and 40% (w/w), preferably 35% (w/w), more preferably 30% (w/w).
- a humectant is selected from a group comprising Glycerin, Sorbitol, Propylene glycol and the like, either singly or any combination thereof, in an amount between 5% (w/w) and 40% (w/w), preferably 35% (w/w), more preferably 30% (w/w).
- a process to make a cream containing Fluticasone Propionate and fusidic acid as described in embodiment no 8 comprising the steps of: a. heating purified water in the range from 5% (w/w) to 60% (w/w), preferably 10% (w/w) to 50% (w/w), more preferably 30% (w/w) to 45%
- a preservative selected from a group comprising Methylparaben, Propylparaben, Chlorocresol, Potassium sorbate, Benzoic acid and the like, either singly or any combination thereof, added in an amount between 0.05% (w/w) and 0.5% (w/w), preferably 0.3% (w/w), more preferably 0.2% (w/w), the preferred preservative being Benzoic acid,
- chelating agent is preferably Disodium edetate, added in an amount preferably between 0.01 and 1 %, more preferably 0.1%
- buffering agent is preferably Di Sodium Hydrogen Ortho Phosphate, added in an amount preferably 0.01% (w/w) to 2.00% (w/w), preferably 1% (w/w), more preferably 0.5% (w/w)
- humectant is preferably Propylene Glycol, added in an amount preferably 5% (w/w) to 40% (w/w), more preferably 25% (w/w),
- step c mixing the mixture of said water-phase vessel of step c using an agitator at 10 to 50 RPM while maintaining the temperature of the mixture at 70 0 C to 80 ° C,
- an emulsifying wax preferably Cetostearyl alcohol, in an amount preferably between 1 and 15 %, more preferably 12.5 % and a waxy material, preferably white soft paraffin, in an amount preferably between 5 and 20 %, more preferably 12.5 %, and melting them by heating to 70 ° C to 80 ° C,
- a non ionic surfactant or emulsifier in an amount preferably between 1 and 5 %, more preferably 2 % of Polysorbate 80 and 0.5% of Cetomacrogol 1000, and mixing the mixture thoroughly using an agitator at 10 to 50 RPM while maintaining the temperature of the mixture at 70 0 C to 80 0 C,
- a co-solvent selected from a group comprising Propylene Glycol, Hexylene Glycol, PolyEthylene Glycol-400adding propylene glycol, or any mixture thereof, in an amount preferably between 5% (w/w) and 30% (w/w), more preferably 20% (w/w), and optionally adding and dissolving an antioxidant, selected from a group comprising Butylated Hydroxy Anisole, Butylated Hydroxy Toluene and the like, or any combination thereof, added in an amount preferably between 0.01 % (w/w) and 0.1 % (w/w), more preferably 0.01 % (w/w) Butylated Hydroxy Toluene in it by continuous mixing,
- said inert gas preferably being nitrogen and adding Sodium Fusidate to the mixture and dissolving it in the mixture, said sodium fusidate being added in an amount between 0.1% (w/w) and about 25% (w/w), preferably between 0.5% (w/w) and about 5% (w/w) and more preferably about 2.08 % (w/w),
- step j adjusting the pH of the mixture in said first API-vessel of step j to below 2 by using an acid, selected from a group comprising acids such as HCL, H 2 SO 4 , HNO 3 , lactic acid and the like, either singly or any combination thereof, preferably Nitric acid in an amount preferably between 0.005% (w/w) and 0.5 % (w/w), preferably 0.3 % (w/w), more preferably 0.25% (w/w),
- an acid selected from a group comprising acids such as HCL, H 2 SO 4 , HNO 3 , lactic acid and the like, either singly or any combination thereof, preferably Nitric acid in an amount preferably between 0.005% (w/w) and 0.5 % (w/w), preferably 0.3 % (w/w), more preferably 0.25% (w/w),
- step h transferring the contents of said first API-vessel of step k to said mixing vessel of step h with continuous stirring at 10 to 50 RPM and homogenizing the mixture at 1000 to 3000 RPM under inert gas flushing and under vacuum of minus 1000 to minus 300 mm of mercury, said inert gas preferably being nitrogen,
- a method of treating primary & secondary skin infections and inflammations comprising applying of a cream containing at least one corticosteroid and Fusidic acid which is made in situ under oxygen-free environment using Sodium Fusidate, wherein said cream comprises Fusidic acid made using Sodium Fusidate, a cream base containing a preservative, primary and secondary emulsifiers, waxy materials, co-solvents, acids, and water.
- a method of treating primary & secondary skin infections and inflammations comprising applying of a cream as described in the preferred embodiment 1 and any of embodiments 1 to 9.
- Composition Sodium Fusidate + Fluticasone Propionate + Clotrimazole Cream
- Each gm contains: i) Sodium Fusidate BP equivalent to Fusidic Acid BP 2.0 %
- the product used for the stability studies tests contained approximately 10% extra APIs (overages). It was packaged in an aluminium collapsible tube and each gram of the product contained 20.8 mg of Sodium Fusidate (in conformance with BP), which is equivalent to 20 mg of Fusidic acid (BP conformant). The % of sodium fusidate, antifungal and the corticosteroid used in all examples are measured w/w with respect to the final product. It is evident from the foregoing description that the present invention has the following distinctions and advantages over the commercially available comparable products:
- the Fusidic acid in the present invention degrades more slowly than the conventional products
- the stability level of the Fusidic acid in the present invention remains within the acceptable limits throughout the shelf life of the product
- the particle size of the Fusidic acid is finer and overall particle distribution in the cream is better, thereby providing better dermaceutical efficacy
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Abstract
L'invention porte sur une crème dermaceutique contenant du propionate de fluticasone comme corticostéroïde, un agent antifongique sous la forme de clotrimazole et un agent antibactérien sous la forme d'acide fusidique, lequel acide fusidique est formé in situ à partir de fusidate de sodium en tant que matière première de départ, le fusidate de sodium étant converti en acide fusidique dans un environnement sans oxygène. La crème de la présente invention a une plus grande stabilité de conservation et une taille des particules plus fine du principe pharmaceutique actif que les crèmes contenant de l'acide fusidique classiques. La crème de la présente invention contient de l'acide fusidique en tant que le principe pharmaceutique actif qui a été formé in situ à partir de fusidate de sodium, du propionate de fluticasone et du clotrimazole, dans une base de crème comprenant un conservateur, un acide, un cosolvant, des émulsifiants et une matière cireuse conjointement avec de l'eau, de préférence de l'eau purifiée.
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| IN2527/MUM/2010 | 2010-09-14 | ||
| IN2527MU2010 | 2010-09-14 |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| WO2012035374A1 true WO2012035374A1 (fr) | 2012-03-22 |
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| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| PCT/IB2010/056120 Ceased WO2012035374A1 (fr) | 2010-09-14 | 2010-12-30 | Crème dermaceutique fabriquée à l'aide de fusidate de sodium, de clotrimazole et de propionate de fluticasone |
Country Status (1)
| Country | Link |
|---|---|
| WO (1) | WO2012035374A1 (fr) |
Citations (3)
| Publication number | Priority date | Publication date | Assignee | Title |
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| WO2007087806A1 (fr) | 2006-02-02 | 2007-08-09 | Leo Pharma A/S | Composition topique comprenant une substance antibactérienne |
| WO2009063493A2 (fr) * | 2007-09-10 | 2009-05-22 | Glenmark Pharmaceuticals Limited | Composition pharmaceutique topique pour la combinaison de l'acide fusidique avec un corticostéroïde |
| WO2010106465A1 (fr) * | 2009-03-17 | 2010-09-23 | Sulur Subramaniam Vanangamudi | Crème dermaceutique fabriquée à l'aide de fusidate de sodium, de clotrimazole et de propionate de fluticasone |
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2010
- 2010-12-30 WO PCT/IB2010/056120 patent/WO2012035374A1/fr not_active Ceased
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| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| WO2007087806A1 (fr) | 2006-02-02 | 2007-08-09 | Leo Pharma A/S | Composition topique comprenant une substance antibactérienne |
| WO2009063493A2 (fr) * | 2007-09-10 | 2009-05-22 | Glenmark Pharmaceuticals Limited | Composition pharmaceutique topique pour la combinaison de l'acide fusidique avec un corticostéroïde |
| WO2010106465A1 (fr) * | 2009-03-17 | 2010-09-23 | Sulur Subramaniam Vanangamudi | Crème dermaceutique fabriquée à l'aide de fusidate de sodium, de clotrimazole et de propionate de fluticasone |
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| "Fucicort-Creme", 20041014, 14 October 2004 (2004-10-14), pages 1, XP002583215, Retrieved from the Internet <URL:http://www.pharmazie.com/graphic/A/64/1-25564.pdf> [retrieved on 20041014] * |
| "Panorama Dermatologische Praxis", DER HAUTARZT ; ZEITSCHRIFT FÜR DERMATOLOGIE, VENEROLOGIE UND VERWANDTE GEBIETE, SPRINGER, BERLIN, DE, vol. 58, no. 11, 8 November 2007 (2007-11-08), pages 915 - 919, XP019548207, ISSN: 1432-1173, DOI: DOI:10.1007/S00105-007-1421-Y * |
| BOWEN P: "Particle Size Distribution Measurement from Millimeters to Nanometers and from Rods to Platelets", JOURNAL OF DISPERSION SCIENCE AND TECHNOLOGY, TAYLOR AND FRANCIS GROUP, NEW YORK, NY, US, vol. 23, no. 5, 1 January 2002 (2002-01-01), pages 631 - 662, XP009102859, ISSN: 0193-2691, DOI: DOI:10.1081/DIS-120015368 * |
| MARRAS F: "THERAPEUTIC USEFULNESS OF A CORTICOSTEROID ANTIBACTERIAL AND ANTIFUNGAL COMBINATION IN SKIN DISEASES OF VARIOUS ORIGINS", PHARMATHERAPEUTICA, CLAYTON-WRAY PUBLICATIONS, LONDON, GB, vol. 4, no. 2, 1 January 1985 (1985-01-01), pages 88 - 91, XP009133482, ISSN: 0308-051X * |
| PAZZAGLIA A: "THERAPEUTIC EFFECTS AND TOLERANCE OF AN EXTEMPORE COMBINATION OF AN ANTIBACTERIAL ANTI-INFLAMMATORY AND ANTIMYCOTIC CREAM IN SKIN DISEASES OF VARIOUS ORIGINS", PHARMATHERAPEUTICA, CLAYTON-WRAY PUBLICATIONS, LONDON, GB, vol. 4, no. 2, 1 January 1985 (1985-01-01), pages 122 - 125, XP009133483, ISSN: 0308-051X * |
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