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固体表面的酶催化作用。

Enzyme catalysis on solid surfaces.

作者信息

Laurent Nicolas, Haddoub Rose, Flitsch Sabine L

机构信息

Manchester Interdisciplinary Biocentre and School of Chemistry, The University of Manchester, 131 Princess Street, Manchester M1 7DN, UK.

出版信息

Trends Biotechnol. 2008 Jun;26(6):328-37. doi: 10.1016/j.tibtech.2008.03.003. Epub 2008 Apr 20.

Abstract

Enzyme-catalysed reactions in which substrates are bound (immobilised) to solid surfaces are becoming increasingly important in biotechnology. There is a general drive for miniaturisation and automation in chemistry and biology, and immobilisation of the reaction intermediates and substrates, for example on microarrays or nanoparticles, helps to address technical challenges in this area. In bionanotechnology, enzyme catalysis can provide highly selective and biocompatible tools for the modification of surfaces on the nano-scale. Here, we review the range of enzyme-catalysed reactions that have been successfully performed on the solid phase and discuss their application in biotechnology.

摘要

底物与固体表面结合(固定化)的酶催化反应在生物技术中变得越来越重要。化学和生物学领域普遍存在小型化和自动化的趋势,将反应中间体和底物固定化,例如固定在微阵列或纳米颗粒上,有助于应对该领域的技术挑战。在生物纳米技术中,酶催化可为纳米尺度表面的修饰提供高度选择性和生物相容性的工具。在此,我们综述了已在固相上成功进行的一系列酶催化反应,并讨论了它们在生物技术中的应用。

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