Method for preparation of glycolipid carboxylic acids
The present invention relates to a method of preparation of Glycolipid carboxylic acids of Formula I by selective hydrolysis of corresponding esters by enzymes. The method provides preparation of compounds of Formula I in high yield by an environmentally benign, robust, economical, simple and convenient method.
1 . A process for preparing compounds of Formula (I)
wherein:
“n” ranges from 1-15;
A1, A2 and A3 are each independently selected from H or
Provided that A1, A2 and A3 together are not H;
G is selected from the following groups:
X is selected from the following groups:
Y is selected from the following groups:
and —NH—;
Z is selected from the following groups:
Wherein R 2 is selected from alkyl, aryl, alkoxy, aryloxy or arylalkyl groups;
“l” and “p” each independently ranges from 0-15;
Comprising the step of:
(a) Subjecting the compound of Formula (Ia)
wherein R is selected from alkyl, aryl or aralkyl groups to hydrolysis in the presence of enzyme, selected from lipases, protease, amylase, trypsin, papain or combinations thereof, and water;
(b). Stirring the reaction mixture of step (a) followed by concentrating, drying and dilution with solvent;
(c) Removal of the enzyme solid precipitate from the reaction mixture of step (b) followed by purification to obtain compounds of Formula (I).
2 . The process according to claim 1 , wherein A 1 , A 2 and A 3 is each independently
and the substituent
is selected from the following groups:
Wherein R 2 is selected from alkyl, aryl, alkoxy, aryloxy or arylalkyl groups;
“l”, “m”, “n” and “p” and “q” each independently ranges from 0-15.
3 . The process according to claim 1 , wherein the enzyme at step (a) is present in an amount ranging from 1 to 100% by weight of glycolipid esters of Formula (Ia).
4 . The process according to claim 1 , wherein the enzymatic hydrolysis at step (a) is carried out for 1-48 hrs at 20-45° C.
5 . The process according to claim 1 , wherein the solvent at step (b) is selected from water, methanol, ethanol isopropyl alcohol Methyl tert-butyl ether, dichloromethane, ethyl acetate, acetone, dimethyl formamide, tetrahydrofuran and acetonitrile or combinations thereof.
6 . A process for preparing compounds of Formula (I′):
Wherein:
“n” ranges from 1-15;
Wherein G is selected from the following groups:
X is selected from the following groups:
or Y is selected from the following groups:
and —NH—;
Z is selected from the following groups:
Wherein R 2 is selected from alkyl, aryl, alkoxy, aryloxy or arylalkyl groups;
“l”, “m” and “p” each independently ranges from 0-15;
Comprising the steps of:
(i). Coupling a reactant selected from Glycolipid carboxylic acid of Formula (z-b)
or a Glycolipid amine compound of Formula (z-bb) Formula (z-bb)
with esters of Formula (z-c)
to form compound of Formula (Ia)
(ii). Subjecting the ester compound of Formula (Ia)′ to hydrolysis in presence of enzyme selected from lipases, protease, amylase, trypsin, papain or combinations thereof, and water to obtain compounds of Formula (I)′.
7 . The process according to claim 6 , wherein the coupling at step (i) is in presence of a coupling agent selected from a group comprising hydroxybenzotriazole (HOBt), Hexafluorophosphate Benzotriazole Tetramethyl Uronium (HBTU), ethyl-(N′,N′-dimethylaminojpropylcarbodiimide hydrochloride (EDC·HCl) or combinations thereof.
8 . The process according to claim 6 , wherein the coupling reaction at step (i) is conducted in the presence of a base selected from N,N-diisopropylethylarmne (DIPEA).
9 . The process according to claim 6 , further comprising:
Subjecting the Glycolipid carboxylic ester of Formula (z-a)
to hydrolysis in presence of enzyme and water to obtain Glycolipid carboxylic acid of Formula (z-b).
10 . The process according to claim 6 , wherein the compound of Formula (I)′ is selected from:
11 . A process for preparing a compound of Formula (1-e)
comprising the steps of:
(i). Subjecting the Glycolipid carboxylic ester of Formula (1-a) to hydrolysis in presence of enzyme and water;
to form Glycolipid carboxylic acid of Formula (1-b)
(ii). Coupling compound of Formula (1-b) with esters of Formula (1-c)
to form compound of Formula (1-d)
(iii). Subjecting the ester compound of Formula (1-d) to hydrolysis in presence of enzyme and water to obtain compounds of Formula (1-e).