Diflorasone diacetate

Diflorasone diacetate Basic information
Product Name:Diflorasone diacetate
Synonyms:2-((6S,8S,9R,10S,11S,13S,14S,16S,17R)-17-acetoxy-6,9-difluoro-11-hydroxy-10,13,16-triMethyl-3-oxo-6,7,8,9,10,11,12,13,14,15,16,17-dodecahydro-3H-cyclopenta[a]phenanthren-17-yl)-2-oxoethyl acetate;Diflorasone diacetate Solution, 100ppm;(6-alpha,11-beta,16-beta)-thyl;pregna-1,4-diene-3,20-dione,17,21-bis(acetyloxy)-6,9-difluoro-11-hydroxy-16-me;FLORONE;DIFLORASONE DIACETATE;6a,9-difluoro-11b,17,21-trihydroxy-16b-methylpregna-1,4-diene-3,20-dione 17,21-diacetate;6ALPHA,9-DIFLUORO-11BETA,17,21-TRIHYDROXY-16BETA-METHYLPREGNA-1,4-DIENE-3,20-DIONE 17,21-DIACETATE
CAS:33564-31-7
MF:C26H32F2O7
MW:494.52
EINECS:251-575-1
Product Categories:Steroids;Intermediates & Fine Chemicals;Pharmaceuticals
Mol File:33564-31-7.mol
Diflorasone diacetate Structure
Diflorasone diacetate Chemical Properties
Melting point 221-223° (dec)
alpha D +61° (chloroform)
Boiling point 235°C (rough estimate)
density 1.2001 (estimate)
storage temp. Refrigerator
solubility Chloroform (Slightly), Methanol (Slightly)
form neat
pka12.63±0.70(Predicted)
color White to Off-White
Water Solubility 6.5mg/L(22 ºC)
CAS DataBase Reference33564-31-7(CAS DataBase Reference)
Safety Information
Hazard Codes Xn
Risk Statements 20/21/22-40
Safety Statements 22-36
WGK Germany 3
RTECS TU3722000
HS Code 2937220000
MSDS Information
ProviderLanguage
SigmaAldrich English
Diflorasone diacetate Usage And Synthesis
Chemical PropertiesWhite Solid
OriginatorFlorone,Upjohn,US,1978
UsesAnti-inflammatory (topical)
UsesAn anti-inflammatory and anti-itching corticosteroid usually present in topical creams.
DefinitionChEBI: The 17,21-diacetate derivative of diflorasone. It is used topically for its anti-inflammatory and antipruritic properties in the treatment of various skin disorders.
Manufacturing Process6α-Fluoro-9β-epoxy-17α,21-dihydroxy-16α-methyl-1,4-pregnadiene-3,20- dione-21-acetate:To a solution of 6.78 g of 6α-fluoro-9α-bromo-11β,17α,21- trihydroxy-16α-methyl-1,4-pregnadiene-3,20-dione-21-acetate in 175 ml of acetone was added 6.78 g of potassium acetate and the resulting suspension was heated under reflux for a period of 17 hours. The mixture was then concentrated to approximately 60 ml volume at reduced pressure on the steam bath, diluted with water and extracted with methylene chloride. The methylene chloride extracts were combined, washed with water, dried over anhydrous sodium sulfate and evaporated. The residue was redissolved in methylene chloride and chromatographed over 500 g of Florisil anhydrous magnesium silicate. The column was eluted with 1 liter portions of hexanes (Skellysolve B) containing increasing proportions of acetone. There was so eluted 6α-fluoro-9β,11β-epoxy-16α-methyl-17α,21-dihydroxy-1,4- pregnadiene-3,20-dione-21-acetate which was freed of solvent by evaporation of the eluates.
6α,9α-Difluoro-11β,17α,21-trihydroxy-16α-methyl-1,4-pregnadiene-3,20- dione-2-1-acetate: To approximately 1.3 g of hydrogen fluoride contained in a polyethylene bottle and maintained at -60C was added 2.3 ml of tetrahydrofuran and then a solution of 500 mg (0,0012 mol) of 6α-fluoro9β,11β-epoxy-16α-methyl-17α,21-dihydroxy-1,4-pregnadiene-3,20-dione-21- acetate in two ml of methylene chloride. The steroid solution was rinsed in with an additional 1 ml of methylene chloride. The light red colored solution was then kept at approximately -30°C for 1 hour and at -10°C for 2 hours. At the end of this period it was mixed cautiously with an excess of cold sodium bicarbonate solution and the organic material extracted with the aid of additional methylene chloride.
The combined extracts were washed with water, dried over anhydrous sodium sulfate and concentrated to approximately 35 ml. The solution was chromatographed over 130 g of Florisil anhydrous magnesium silicate. The column was developed with 260 ml portions of hexanes (Skellysolve B) containing increasing proportions of acetone. There was thus eluted 6α,9αdifluoro-11β,17α,21-trihydroxy-16α-methyl-1,4-pregnadiene-3,20-dione-21- acetate which was freed of solvent by evaporation of the eluate fractions.
6α,9α-Difluoro-11β,17α,21-trihydroxy-16α-methyl-1,4-pregnadiene-3,20- dione: 3.25 g of 6α,9α-difluoro-11β,17α,21-trihydroxy-16α-methyl-1,4- pregnadiene-3,20-dione-21-acetate was dissolved in 325 ml of methanol, previously purged of air-oxygen by passing nitrogen through it for 10 minutes and thereto was added a solution of 1.63 g of potassium bicarbonate in 30 ml of water, similarly purged of oxygen. The mixture was allowed to stand at room temperature for a period of 5 hours in a nitrogen atmosphere, thereupon neutralized with 2.14 ml of acetic acid in 40 ml of water. The mixture was concentrated to approximately one-third volume at reduced pressure on a 60°C water bath. Thereupon 250 ml of water was added and the mixture chilled. The crystalline product was collected on a filter, washed with water and dried to give 6α,9α-difluoro-11β,17α,21-trihydroxy-16αmethyl-1,4-pregnadiene-3,20-dione.
The diflorasone is reacted with orthoacetic acid trimethyl ester in the presence of toluenesulfonic acid to give diflorasone diacetate.



Brand nameFlorone (Pharmacia & Upjohn); Psorcon (Pharmacia & Upjohn); Psorcon (Sanofi Aventis).
Therapeutic FunctionAntiinflammatory
Diflorasone diacetate Preparation Products And Raw materials
Raw materialsPotassium Acetate-->hydrogen fluoride-->Trimethyl orthoacetate-->Triamcinolone acetonide 21-acetate
Diflorasone Betamethasone 21-acetate TERT-BUTYL FLUORIDE (1-FLUOROCYCLOHEXYL)METHANOL 2-FLUORO-2-METHYL-PROPAN-1-OL 3-ACETOXY-2-BUTANONE 9E,12Z-Tetradecadien-1-yl-acetate 3-METHOXY-3-METHYLBUTYL ACETATE 3-ACETOXY-3-METHYL-2-BUTANONE Diflorasone diacetate 1,3-DIMETHOXYACETONE Pancuronium bromide Betamethasone 1,3-DIACETOXYACETONE DIHYDROTERPINYL ACETATE 6-alpha-Fluoro-isoflupredone TRANS-2-FLUOROCYCLOHEXANOL Isoflupredone Acetate

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