Claims
- 1. Process for the production of 1-(aminomethyl)cyclohexane acetic acid of the formula: ##STR13## comprising: (a) alcoholyzing (1-cyanocyclohexyl)acetonitrile of the formula: ##STR14## with a lower aliphatic alcohol in the presence of a mineral acid and then hydrolyzing the reaction product with water to provide (1-cyanocyclohexyl)acetic acid alkyl ester of the formula: ##STR15## in which R is an alkyl with 1 to 4 carbon atoms; (b) transesterifying the (1-cyanocyclohexyl)acetic acid alkyl ester with a benzyl alcohol of the formula: ##STR16## in which R.sub.1 is H, an alkoxy group, a nitro group or a halogen, in the presence of a basic catalyst to form a (1-cyanocyclohexyl)acetic acid benzyl ester of the formula: ##STR17## wherein R.sub.1 is defined as above; and (c) hydrogenating the (1-cyanocyclohexyl)acetic acid benzyl ester in the presence of a hydrogenating catalyst with hydrogen to form the 1-(aminomethyl)cyclohexane acetic acid.
- 2. Process according to claim 1, wherein hydrogen chloride, hydrogen bromide or anhydrous sulfuric acid is used as the mineral acid.
- 3. Process according to claim 1, wherein the reaction is performed at a pressure between 1 and 10 bars and at temperatures between -20.degree. and 50.degree. C.
- 4. Process according to claim 1, wherein methanol or ethanol is used as the lower aliphatic alcohol.
- 5. Process according to claim 1, wherein the reaction is performed in the presence of a solvent.
- 6. Process according to claim 1, wherein the hydrolysis takes place at temperature between -20.degree. and 100.degree. C.
- 7. Process according to claim 2, wherein the reaction is performed at a pressure between 1 and 10 bars and at temperatures between -20.degree. and 50.degree. C.
- 8. Process according to claim 7, wherein methanol or ethanol is used as the lower aliphatic alcohol.
- 9. Process according to claim 8, wherein the reaction is performed in the presence of a solvent.
- 10. Process according to claim 9, wherein the hydrolysis takes place at temperatures between -20.degree. and 100.degree. C.
- 11. Process according to claim 1 wherein the transesterification is performed at temperatures between 0.degree. C. and the boiling point of the benzyl alcohol used.
- 12. Process according to claim 11 wherein the basic catalyst in the transesterification is a cyanide, an alcoholate or a tertiary amine.
- 13. Process according to claim 11 wherein the transesterification is performed in the presence of an aprotic solvent.
- 14. Process according to claim 11 wherein the basic catalyst in the transesterification is present in an amount of 0.01 to 10 mol percent.
- 15. Process according to claim 11 wherein a platinum, palladium, ruthenium, rhodium catalyst, optionally applied to an inert support, a Raney catalyst or a metal oxide is used as the hydrogenating catalyst.
- 16. Process according to claim 11 wherein the catalyst is used in amounts of 1 to 50 percent by weight, relative to the (1-cyanocyclohexyl)acetic acid benzyl ester.
- 17. Process according to claim 11 wherein the hydrogenation is performed at a pressure between 1 and 100 bars and at a temperature between 0.degree. and 100.degree. C.
- 18. Process according to claim 11 wherein the hydrogenation is performed in the presence of a solvent.
Priority Claims (1)
Number |
Date |
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Kind |
4128/89 |
Nov 1989 |
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Parent Case Info
This is a divisional of U.S. Ser. No. 612,985, filed on Nov. 15, 1990 now U.S. Pat. No. 5,095,148, and a divisional of U.S. Ser. No. 727,939, filed on Jul. 10, 1991 pending.
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4024175 |
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May 1977 |
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4956473 |
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4958044 |
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Non-Patent Literature Citations (4)
Entry |
Krapcho et al., Synthesis (1982), pp. 805 to 821, pp. 893 to 914. |
New et al., Synthesis, (1983), pp. 388 to 389. |
Drugs of the Future, vol. 9, No. 6, (1984), pp. 418 and 419. |
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Related Publications (1)
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Number |
Date |
Country |
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727939 |
Jul 1991 |
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Divisions (1)
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Number |
Date |
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Parent |
612985 |
Nov 1990 |
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