首页> 外文期刊>Food and Bioproducts Processing. Transactions of the Institution of Chemical Engineers, Part C >High pressure enhances activity and selectivity of Candida rugosa lipase immobilized onto silica nanoparticles in organic solvent
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High pressure enhances activity and selectivity of Candida rugosa lipase immobilized onto silica nanoparticles in organic solvent

机译:高压提高了在有机溶剂中固定在二氧化硅纳米颗粒上的假丝酵母脂肪酶的活性和选择性

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High hydrostatic pressure has been increasingly utilized to improve functions of enzymes, and most of such studies are currently focused on free enzymes in aqueous solution or organic solvent. In this work, Candida rugosa lipase (CRL) was immobilized onto silica nanoparticles and its activity and enantioselectivity in organic solvent were evaluated at high pressures under different water activities. The application of high hydrostatic pressures (50-200 MPa) led to improved activities of immobilized CRL for transesterification of (R)-1-phenylpropan-2-ol with vinyl acetate by 4-6 folds. Additionally the immobilization of CRL resulted in a significant change of selectivities, shifting the enantiomeric excess from the (R)- towards (S)-1-phenylpropan-2-yl acetate product at atmospheric pressure. The application of high pressures led to either enantiomeric excess towards (R)-1-phenylpropan-2-yl or no enantiomeric selectivity, depending on the water activities in the organic solvent and the level of pressures. The interesting behaviour of immobilized CRL under high pressures offers new opportunities to modulate enzyme functions through combination of high pressures and enzyme immobilization. Crown Copyright (C) 2015 Published by Elsevier B.V. on behalf of The Institution of Chemical Engineers. All rights reserved.
机译:高静水压力已被越来越多地用于改善酶的功能,并且目前大多数此类研究集中于水溶液或有机溶剂中的游离酶。在这项工作中,将念珠假丝酵母脂肪酶(CRL)固定在二氧化硅纳米颗粒上,并在高压下在不同水分活度下评估了其活性和在有机溶剂中的对映选择性。高静水压力(50-200 MPa)的应用导致固定化CRL用于(R)-1-苯基丙-2-醇与乙酸乙烯酯酯交换反应的活性提高了4-6倍。另外,CRL的固定化导致选择性的显着变化,在大气压下将对映体过量从(R)-转移至(S)-1-苯基丙烷-2-基乙酸酯产物。高压的施加导致对(R)-1-苯基丙-2-基的对映体过量或没有对映体选择性,这取决于有机溶剂中的水活度和压力水平。固定化CRL在高压下的有趣行为为通过组合高压和固定酶来调节酶的功能提供了新的机会。官方版权(C)2015,由Elsevier B.V.代表化学工程师学会出版。版权所有。

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