Claims
- 1. A process for preparing 1-(6-methylpyridin-3-yl)-2-[4-(methylsulfonyl)phenyl]ethanone of the formula: comprising:in first step (a), converting 4-(methylthio)benzyl alcohol into 4-(methylthio)benzyl chloride, in second step (b), converting the 4-(methylthio)benzyl chloride with an alkali metal cyanide into 4-(methylthio)phenylacetonitrile, in third step (c), condensing the 4-(methylthio)phenylacetonitrile with a 6-methylnicotinic ester to give 3-[2-(4-(methylthio)phenyl)-2-cyanoacetyl](6-methyl)-pyridine of the formula: in fourth step (d), hydrolyzing and decarboxylating the 3-[2-(4-(methylthio)phenyl)-2-cyanoacetyl](6-methyl)pyridine under acidic conditions to give 3-{2-(4-(methylthio)phenyl)acetyl](6-methyl)pyridine of the formula: and, in last step (e), oxidizing the 3-[2-(4-(methylthio)phenyl)acetyl](6-methyl)-pyridine to give the end product.
- 2. The process according to claim 1, wherein the reaction in step (a) is carried out at a temperature of from 10 to 40° C. and in an organic solvent.
- 3. The process according to claim 1, wherein the reaction in step (b) is carried out in the presence of a phase transfer catalyst.
- 4. The process according to claim 3, wherein the reaction in step (b) is carried out at a temperature of from 60 to 100° C.
- 5. The process according to claim 3, wherein the condensation in step (c) is carried out in the presence of an alkali metal alkoxide at a temperature between 60 and 110° C.
- 6. The process according to claim 4, wherein the hydrolysis and decarboxylation in step (d) is carried out using a mixture of acetic acid and a mineral, at a temperature of from 50 to 115° C.
- 7. The process according to claim 6, wherein the oxidation in step (e) is carried out using hydrogen peroxide in the presence of an alkali metal tungstate, at a temperature of from 10 to 40° C.
- 8. The process according to claim 1, wherein the reaction in step (b) is carried out in the presence of a phase transfer catalyst.
- 9. The process according to claim 1, wherein the reaction in step (b) is carried out at a temperature of from 60 to 100° C.
- 10. The process according to claim 1, wherein the condensation in step (c) is carried out in the presence of an alkali metal alkoxide at a temperature between 60 and 110° C.
- 11. The process according to claim 1, wherein the hydrolysis and decarboxylation in step (d) is carried out using a mixture of acetic acid and a mineral acid, at a temperature of from 50 to 115° C.
- 12. The process according to claim 1, wherein the oxidation in step (e) is carried out using hydrogen peroxide in the presence of an alkali metal tungstate, at a temperature of from 10 to 40° C.
Priority Claims (1)
Number |
Date |
Country |
Kind |
99114667 |
Jul 1999 |
EP |
|
Parent Case Info
This is a 371 PCT/EP00/06825, filed on Jul. 17, 2000, that has priority benefit of European Patent Application 9911466.1, filed on Jul. 27, 1999, and of U.S. Provisional Application 60/186,680, filed on Mar. 30, 2000.
PCT Information
Filing Document |
Filing Date |
Country |
Kind |
PCT/EP00/06825 |
|
WO |
00 |
Publishing Document |
Publishing Date |
Country |
Kind |
WO01/07410 |
2/1/2001 |
WO |
A |
US Referenced Citations (4)
Foreign Referenced Citations (5)
Number |
Date |
Country |
0062238 |
Mar 1982 |
EP |
9915503 |
Sep 1997 |
WO |
9803484 |
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WO |
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Oct 1998 |
WO |
WO-9915503 |
Apr 1999 |
WO |
Non-Patent Literature Citations (3)
Entry |
Friesen, R.S., et al., Biorganic & Medical Chemistry Letters, 8, (1998), 2777-2782. |
International Search Report for applicants corresponding International Patent Application. |
Burger, A., and C.R. Walter, J., of American Chemical Soc., vol. 72, No. 5, (May 1950), pp. 1988-1990. |
Provisional Applications (1)
|
Number |
Date |
Country |
|
60/186680 |
Mar 2000 |
US |