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固定化微流控酶反应器

Immobilized microfluidic enzymatic reactors.

作者信息

Krenková Jana, Foret Frantisek

机构信息

Institute of Analytical Chemistry, Brno, Czech Republic.

出版信息

Electrophoresis. 2004 Nov;25(21-22):3550-63. doi: 10.1002/elps.200406096.

Abstract

The use of enzymes for cleavage, synthesis or chemical modification represents one of the most common processes used in biochemical and molecular biology laboratories. The continuing progress in medical research, genomics, proteomics, and related emerging biotechnology fields leads to exponential growth of the applications of enzymes and the development of modified or new enzymes with specific activities. Concurrently, new technologies are being developed to improve reaction rates and specificity or perform the reaction in a specific environment. Besides large-scale industrial applications, where typically a large processing capacity is required, there are other, much lower-scale applications, benefiting form the new developments in enzymology. One such technology is microfluidics with the potential to revolutionize analytical instrumentation for the analyses of very small sample amounts, single cells or even subcellular assemblies. This article aims at reviewing the current status of the development of the immobilized microfluidic enzymatic reactors (IMERs) technology.

摘要

使用酶进行切割、合成或化学修饰是生物化学和分子生物学实验室中最常用的过程之一。医学研究、基因组学、蛋白质组学以及相关新兴生物技术领域的不断进步,导致酶的应用呈指数增长,以及具有特定活性的修饰酶或新酶的开发。同时,新技术也在不断发展,以提高反应速率和特异性,或在特定环境中进行反应。除了通常需要大规模处理能力的大规模工业应用外,还有其他规模小得多的应用,受益于酶学的新发展。微流控技术就是其中之一,它有可能彻底改变用于分析极少量样品、单细胞甚至亚细胞组件的分析仪器。本文旨在综述固定化微流控酶反应器(IMERs)技术的发展现状。

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