Literature DB >> 24056082

Stereoselective synthesis of caffeic acid amides via enzyme-catalyzed asymmetric aminolysis reaction.

Peiliang Xiao1, Suoqin Zhang, Huayu Ma, Aijun Zhang, Xiaoli Lv, Liangyu Zheng.   

Abstract

In this study, a new method was developed to prepare enantiopure caffeic acid amides by enzyme-catalyzed asymmetric aminolysis reaction. Methoxymethyl chloride (MOMCl) was first introduced as a protective and esterified reagent to obtain the MOM-protected caffeic acid MOM ester 1d. Aminolysis reaction occurred between 1d and (R, S)-α-phenylethylamine in the presence of an immobilized lipase (Novozym 435) from Candida antarctica. Compared with the methyl-protected caffeic acid methyl ester 1c, 1d as substrate improved the lipase-catalyzed reaction rate by 5.5-fold. After Novozym 435-catalyzed aminolysis reaction was established, we evaluated the effects of synthesis parameters on the catalytic activity and enantioselectivity of Novozym 435. A reaction conversion rate of 25.5% and an E value of >100 were achieved under the following optimum conditions: reaction solvent, anhydrous isooctane; reaction temperature, 70°C; reaction time, 24h; ester-to-amine substrate molar ratio, 1:40; and enzyme additive amount, 40 mg. Kinetic and thermodynamic analyses were conducted to determine the main factors affecting enantiomeric discrimination. Novozym 435 still showed 80% of its initial activity after recycling five times. Highly optically pure caffeic acid amides with an enantiomeric excess of 98.5% were finally obtained by HCl deprotection. The established enzyme-catalyzed asymmetric aminolysis method in this study might be used to prepare other caffeic acid amides.
Copyright © 2013 Elsevier B.V. All rights reserved.

Entities:  

Keywords:  Aminolysis reaction; Caffeic acid amide; Lipase; Stereoselective synthesis

Mesh:

Substances:

Year:  2013        PMID: 24056082     DOI: 10.1016/j.jbiotec.2013.09.004

Source DB:  PubMed          Journal:  J Biotechnol        ISSN: 0168-1656            Impact factor:   3.307


  2 in total

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Authors:  Meina Sun; Kaili Nie; Fang Wang; Li Deng
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Authors:  Carlos A Enríquez-Núñez; Alejandro A Camacho-Dávila; Víctor H Ramos-Sánchez; Gerardo Zaragoza-Galán; Lourdes Ballinas-Casarrubias; David Chávez-Flores
Journal:  Chem Cent J       Date:  2015-09-09       Impact factor: 4.215

  2 in total

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