Microwave-Assisted Kinetic Resolution of Homochiral (Z)-Cyclooct-5-ene-1,2-diol and (Z)-2-Acetoxycyclooct-4-enyl Acetate Using Lipases

Over the last decade, the use of biocatalysts has become an attractive alternative to conventional chemical methods, especially for organic synthesis, due to their unusual properties. Among these enzymes, lipases are the most widely used, because they are cheap, easily available, cofactor-free, and...

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Main Authors: Hervé Rouillard, Emmanuel Deau, Lisianne Domon, Jean-René Chérouvrier, Marianne Graber, Valérie Thiéry
Format: Article
Language:English
Published: MDPI AG 2014-07-01
Series:Molecules
Subjects:
Online Access:http://www.mdpi.com/1420-3049/19/7/9215
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spelling doaj-1b589330e13e436ab30587b3db4651502020-11-24T23:37:16ZengMDPI AGMolecules1420-30492014-07-011979215922710.3390/molecules19079215molecules19079215Microwave-Assisted Kinetic Resolution of Homochiral (Z)-Cyclooct-5-ene-1,2-diol and (Z)-2-Acetoxycyclooct-4-enyl Acetate Using LipasesHervé Rouillard0Emmanuel Deau1Lisianne Domon2Jean-René Chérouvrier3Marianne Graber4Valérie Thiéry5Université de La Rochelle, UMR CNRS 7266 LIENSs, Avenue Crépeau, La Rochelle 17042, FranceUniversité de La Rochelle, UMR CNRS 7266 LIENSs, Avenue Crépeau, La Rochelle 17042, FranceUniversité de La Rochelle, UMR CNRS 7266 LIENSs, Avenue Crépeau, La Rochelle 17042, FranceUniversité de La Rochelle, UMR CNRS 7266 LIENSs, Avenue Crépeau, La Rochelle 17042, FranceUniversité de La Rochelle, UMR CNRS 7266 LIENSs, Avenue Crépeau, La Rochelle 17042, FranceUniversité de La Rochelle, UMR CNRS 7266 LIENSs, Avenue Crépeau, La Rochelle 17042, FranceOver the last decade, the use of biocatalysts has become an attractive alternative to conventional chemical methods, especially for organic synthesis, due to their unusual properties. Among these enzymes, lipases are the most widely used, because they are cheap, easily available, cofactor-free, and have broad substrate specificity. Combined to microwave heating in non-aqueous medium, recent results suggest that irradiation may influence the enzyme activity. This Communication reports the benefits of lipases and the microwave irradiation on the kinetic resolution of racemic homochiral (Z)-cyclooct-5-ene-1,2-diol and (Z)-2-acetoxycyclooct-4-enyl acetate. In order to best achieve the kinetic resolution, different parameters were studied including the type of lipase, the temperature, the impact of microwave power compared to conventional heating. Optimization of the reaction parameters lead to the obtainment of highly enriched or enantiopure diols and diesters in a clean, efficient and safe way.http://www.mdpi.com/1420-3049/19/7/9215biocatalysismicrowave irradiationlipasehomochiral diolskinetic resolution
collection DOAJ
language English
format Article
sources DOAJ
author Hervé Rouillard
Emmanuel Deau
Lisianne Domon
Jean-René Chérouvrier
Marianne Graber
Valérie Thiéry
spellingShingle Hervé Rouillard
Emmanuel Deau
Lisianne Domon
Jean-René Chérouvrier
Marianne Graber
Valérie Thiéry
Microwave-Assisted Kinetic Resolution of Homochiral (Z)-Cyclooct-5-ene-1,2-diol and (Z)-2-Acetoxycyclooct-4-enyl Acetate Using Lipases
Molecules
biocatalysis
microwave irradiation
lipase
homochiral diols
kinetic resolution
author_facet Hervé Rouillard
Emmanuel Deau
Lisianne Domon
Jean-René Chérouvrier
Marianne Graber
Valérie Thiéry
author_sort Hervé Rouillard
title Microwave-Assisted Kinetic Resolution of Homochiral (Z)-Cyclooct-5-ene-1,2-diol and (Z)-2-Acetoxycyclooct-4-enyl Acetate Using Lipases
title_short Microwave-Assisted Kinetic Resolution of Homochiral (Z)-Cyclooct-5-ene-1,2-diol and (Z)-2-Acetoxycyclooct-4-enyl Acetate Using Lipases
title_full Microwave-Assisted Kinetic Resolution of Homochiral (Z)-Cyclooct-5-ene-1,2-diol and (Z)-2-Acetoxycyclooct-4-enyl Acetate Using Lipases
title_fullStr Microwave-Assisted Kinetic Resolution of Homochiral (Z)-Cyclooct-5-ene-1,2-diol and (Z)-2-Acetoxycyclooct-4-enyl Acetate Using Lipases
title_full_unstemmed Microwave-Assisted Kinetic Resolution of Homochiral (Z)-Cyclooct-5-ene-1,2-diol and (Z)-2-Acetoxycyclooct-4-enyl Acetate Using Lipases
title_sort microwave-assisted kinetic resolution of homochiral (z)-cyclooct-5-ene-1,2-diol and (z)-2-acetoxycyclooct-4-enyl acetate using lipases
publisher MDPI AG
series Molecules
issn 1420-3049
publishDate 2014-07-01
description Over the last decade, the use of biocatalysts has become an attractive alternative to conventional chemical methods, especially for organic synthesis, due to their unusual properties. Among these enzymes, lipases are the most widely used, because they are cheap, easily available, cofactor-free, and have broad substrate specificity. Combined to microwave heating in non-aqueous medium, recent results suggest that irradiation may influence the enzyme activity. This Communication reports the benefits of lipases and the microwave irradiation on the kinetic resolution of racemic homochiral (Z)-cyclooct-5-ene-1,2-diol and (Z)-2-acetoxycyclooct-4-enyl acetate. In order to best achieve the kinetic resolution, different parameters were studied including the type of lipase, the temperature, the impact of microwave power compared to conventional heating. Optimization of the reaction parameters lead to the obtainment of highly enriched or enantiopure diols and diesters in a clean, efficient and safe way.
topic biocatalysis
microwave irradiation
lipase
homochiral diols
kinetic resolution
url http://www.mdpi.com/1420-3049/19/7/9215
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