This application is the U.S. National Stage of International Application No. PCT/IN2006/000053, filed Feb. 17, 2006, published in English, and claims priority under 35 U.S.C. §365 to Indian Application No. 781/CHE/2005, filed Jun. 22, 2005.
The present invention relates to cost effective and industrially advantageous process for the preparation of (3R,4S)-1-(4-Fluorophenyl)-3-[3(S)-3-(4-fluorophenyl)-3-hydroxypropyl)]-4-(4-hydroxyphenyl)-2-azetidinone, referred to here as Ezetimibe. It is represented as Formula-1.
This invention relates to an improved, cost effective and industrially advantageous process for the preparation of (3R,4S)-1-(4-Fluorophenyl)-3-[3(S)-3-(4-fluorophenyl)-3-hydroxypropyl)]-4-(4-hydroxyphenyl)-2-azetidinone (Ezetimibe), useful as cholesterol absorption inhibitor, claimed in U.S. Pat. No. 5,767,115. Preparation of Ezetimibe is also described in the above said patent. It comprises of (S)-4-phenyl-2-oxazolidinone is reacted with methyl-4-(chloroformyl)butyrate to obtain a compound of ester and it is condensed with 4-benzyloxy benzylidine (4-fluoro) aniline in the presence of titanium isopropoxide and titanium tetrachloride to give an amide compound and it is cyclised in the presence of tetrabutyl ammonium fluoride and bis trimethyl silyl acetamide to give protected lactam, it undergoes hydrolysis to give a carboxylic acid and further it reacts with p-fluoro phenyl magnesium bromide and zinc chloride in the presence of tetrakis (triphenyl phosphine) palladium to give an aromatic ketone, it is further reduced selectively in the presence of chiral catalyst to obtain an hydroxy compound and it undergoes debenzylation to give the title compound of formula-I.
By following the above process in the hydrolysis stage after completion of the reaction, pH adjusted to acidic side (below pH-4) and extracting the compound resulted more impure product because as the Lactam ring is acid sensitive, it is opened up while adjusting the pH to below 4. In the organometallic condensation reaction between acid chloride and para fluoro phenyl zinc halide, tetrakis (triphenyl phosphine) palladium is used as a catalyst which is highly expensive as well as molecular weight is higher which resulted in more byproducts and obtained compound is less pure.
The above said process is both uneconomical, inconsistency in reproducibility and more of byproduct/waste generation like triphenyl phosphine oxide, DMS, etc., and hence it is not suitable for commercial production.
Therefore, the main objective of the present invention is to prepare formula-1 through a process which is cost-effective, commercially viable, eco-friendly and consistent.
The formula-1 is prepared in the present invention, in a novel process that is cost effective and suitable for commercial scale up.
This invention provides an improved simple and cost effective, eco-friendly and well suited for commercial scale up of (3R,4S)-1-(4-Fluorophenyl)-3-[3(S)-3-(4-fluorophenyl)-3-hydroxypropyl)]-4-(4-hydroxyphenyl)-2-azetidinone, referred to here as Ezetimibe. It is represented as Formula-1.
Comprising:
The present invention relates an improved process for the preparation of (3R,4S)-1-(4-Fluorophenyl)-3-[3(S)-3-(4-fluorophenyl)-3-hydroxypropyl)]-4-(4-hydroxyphenyl)-2-azetidinone, referred to here as (Ezetimibe).
The process of the present invention is schematically represented as follows.
Comprising:
Chiral auxiliary such as the compound of formula-IV is used like S—POZ, S—BOZ, preferably S—POZ. This reaction is carried out inpresence of dimethyl amino pyridine as a catalyst at the temperature of 10-50° C., preferably at 40-50° C. for 30 minutes to 10 hrs, preferably 4-6 hrs.
Acid chloride is further condensed with a Grignard reagent (it is prepared from the reaction of para bromo fluoro benzene with magnesium turnings to form 4-fluoro phenyl magnesium bromide and it is further converted to 4-fluoro phenyl zinc halide with anhydrous zinc chloride) in the presence of a transition metal catalyst like palladium, cobalt, nickel, iron, or rhodium having its anionic part either halides or acetates to give the condensed product as formula X. The palladium catalyst is palladium acetate or palladium chloride, preferably palladium acetate. This reaction is carried out with a suitable solvent like dichloromethane, toluene, xylene or ethyl acetate, preferably toluene. This reaction is carried out in an inert atmosphere like nitrogen at −10° C. to 40 ° C. for 10 minutes to 3.00 hours. Preferably at 10-15° C. for 30-60 minutes.
The examples mentioned below demonstrate specific preparations of the present invention. The examples are provided to illustrate the details of the invention and should not be constrained to limit the scope of the present invention.
Taken 100 gm of glutaric anhydride of formula-II and methanol (250 ml) and sodium methoxide (1 gm) in a 1 lit round bottom flask and stirred for 6 hrs at 25-35° C. Distilled the solvent completely under vacuum at below 60° C. Residue is taken to next stage directly without any purification. Yield: 125 gm
Formula-III material (45 gm) is dissolved in dichloromethane (225 ml) in 1 lit cleaned RBF. Added triethyl amine to the reaction mixture and stirred for 10 minutes. Pivaloyl chloride is added to the reaction mass in 45 minutes at 25-35° C. Maintained the reaction mass for 2 hrs. Added S—POZ (formula-IV), DMAP and DMF to the refluxed the reaction mixture for 7 hrs. Reaction mixture is quenched with water and separated the organic layer. Organic layer washed with water (100 ml) and distilled the solvent completely under vacuum and recrystallised the material in pet-ether. Yield: 50 gm.
Titanium tetrachloride (18 ml) and dichloromethane (600 ml) were taken into a clean RBF, cooled the reaction mixture to 0° C. and added titanium isopropoxide (16 ml) at 0-5° C. Dissolved the Formula-V material (50 gm) in dichloromethane and added to the reaction mass at 0-5° C. and maintained the reaction mass for 15 minutes. Diisopropyl ethyl amine (65 ml) is added to the reaction mixture and maintained for 45 minutes and cooled to −20 to −10° C. and charged the benzylated imine (92 gm) of formula-VI to the reaction mixture, maintained for 4 hrs at −20 to −10° C. Quenched the reaction with acetic acid and washed the organic layer with sulfuric acid solution, distilled the solvent completely and material is recrystalised in methanol. Yield: 65 gm.
Taken toluene (100 ml) and compound of formula VII (25 gm) into cleaned RB.Flask, heated to 45° C. and added N,O-bis trimethyl silyl acetamide (17 gm) and TBAF.3H2O (1.1 gm) and maintained for 2 hrs at 45-50° C. Reaction mass is quenched with methanol and washed with 1 N Hcl solution, 1N sodium bicarbonate solution followed by saturated sodium chloride solution, distilled the solvent completely under vacuum and toluene is charged and isolated Rec S—POZ, filtrate is concentrated and product is isolated in methanol and dried the product at 50-60° C. (Yield: 13 gm). M.R 60-65° C.
Compound of formula-VIII (25 gm) is dissolved in acetone (25 ml) in a cleaned R.B.Flask. Water (62.5 ml) and sodium hydroxide (2.8 gm) added to the reaction mass. Maintained the reaction mass for 3 hrs at ambient temperature. Reaction mass quenched with water and pH adjusted to 6.5-7.0 with aqueous hydrochloric acid. Reaction mass extracted with ethyl acetate and distilled the solvent completely under vacuum to give residue of the compound. It is used into next stage without any purification.
Yield: 22 gm.
Compound of formula-IX (25 gm) is dissolved in dichloromethane in a R.B.Flask. and catalytical amount of Dimethyl formamide is added. Oxalyl chloride is slowly added at ambient temperature, maintained the reaction mass for 3 hrs at ambient temperature. Distilled the solvent completely under vacuum and toluene is added and again distilled completely under vacuum. Toluene is added to the crude and cooled to 10-15° C. and then the palladium acetate and maintained for 15 minutes.
4-fluorophenyl magnesium bromide is taken in another vessel under nitrogen atmosphere and cooled to 0-5° C. and added anhydrous zinc chloride and stirred for 1 hr. This complex is added to the acid chloride reaction mass at ambient temperature and maintained for 45 minutes. Filtered the reaction mass through hyflow and washed with toluene and THF mixed solution. Distilled the solvent completely under vacuum, added dichloromethane and silica gel to the crude and distilled the solvent completely under vacuum, Cyclohexane is added to the silicagel mixture and stirred for 30 minutes and filtered and washed with cyclohexane. Silicagel mixture is slurried with ethyl acetate and cyclohexane. Distilled both filtrates under vacuum to get the residue. (Yield: 18 gm).
Taken toluene (250 ml) into cleaned R.B.Flask under nitrogen atmosphere and cooled to 0-5° C. Borane DMS complex and (R)-tetrahydro-1-phenyl-3,3-diphenyl-1H,3H-pyrrol (1,2-c)(1,3,2)oxaza borolidine (R-phenyl CBS) is charged into the reaction mass at 0° C. 25 gm of Keto compound of formula-X is dissolved in toluene (50 ml) and added to the reaction mass at 0-5° C. Maintained the reaction mass for 3 hrs and quenched with methanol and followed by 1 N hydrochloric acid solution. Organic layer separated and washed with 5% hydrogen peroxide solution and 5% sodium sulfate solution and followed by with 10% sodium chloride solution. Distilled the solvent completely under reduced pressure at below 75° C. Product is isolated in diisopropyl ether and dried the product at 60-70° C. for 6 hrs. (Yield: 15 gm).
Taken toluene (250 ml) into cleaned R.B.Flask under nitrogen atmosphere and cooled to 0-5° C. DIP Chloride (Mole ratio 1:1.5) into the reaction mass at 0° C. 25 gm of keto compound of formula-X is dissolved in toluene (50 ml) and added to the reaction mass at 0-5° C. Maintained the reaction mass for 3 hrs and quenched with ammonia solution. Organic layer separated and washed with 10% sodium chloride solution. Distilled the solvent completely under reduced pressure at below 75° C. Residue is taken for next stage directly without any purification.
Taken compound of formula-XII (10 gm) and isopropanol (100 ml) into a hydrogenation flask, added 5% Pd/C (4 gm) at 25° C. and maintained at 45-50° C. for 3 hrs under hydrogen pressure, filtered through hyflow and washed the Pd/C with isopropanol (20 ml). Distilled the solvent completely under vacuum at below 70° C., product is recrystallised in dichloromethane (Yield: 6 gm).
Purification of Ezetimibe (Formula-1).
Ezetimibe (10 gm) is dissolved in 30 ml of methanol and filtered through hyflow and saturated with DM. Water (30 ml) and stirred for 1 hr at 20-25° C. Product filtered and dried for 6-8 hrs at 80-85° C. (Yield: 9 gm).
Number | Date | Country | Kind |
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781/CHE/2005 | Jun 2005 | IN | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/IN2006/000053 | 2/17/2006 | WO | 00 | 5/9/2008 |
Publishing Document | Publishing Date | Country | Kind |
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WO2006/137080 | 12/28/2006 | WO | A |
Number | Name | Date | Kind |
---|---|---|---|
3683006 | Fried | Aug 1972 | A |
3787299 | Beck et al. | Jan 1974 | A |
3948973 | Phillips | Apr 1976 | A |
3993683 | Nickl et al. | Nov 1976 | A |
4044147 | Nelson | Aug 1977 | A |
4076940 | Connor et al. | Feb 1978 | A |
5767115 | Rosenblum et al. | Jun 1998 | A |
5846991 | Tanikawa et al. | Dec 1998 | A |
5856473 | Shankar | Jan 1999 | A |
20030013699 | Davis et al. | Jan 2003 | A1 |
20070049748 | Uppala et al. | Mar 2007 | A1 |
20090227786 | Gavalda I Escude et al. | Sep 2009 | A1 |
Number | Date | Country |
---|---|---|
1953140 | Aug 2008 | EP |
WO 2005049592 | Jun 2005 | WO |
WO 2008032338 | Mar 2008 | WO |
WO 2008096372 | Aug 2008 | WO |
Number | Date | Country | |
---|---|---|---|
20090048441 A1 | Feb 2009 | US |