Sigma-Aldrich, Industriestrasse 25, CH-9470 Buchs, Switzerland.
Curr Opin Biotechnol. 2010 Dec;21(6):713-24. doi: 10.1016/j.copbio.2010.09.016. Epub 2010 Oct 26.
The ongoing trends to process improvements, cost reductions and increasing quality, safety, health and environment requirements of industrial chemical transformations have strengthened the translation of global biocatalysis research work into industrial applications. One focus has been on biocatalytic single-step reactions with one or two substrates, the identification of bottlenecks and molecular as well as engineering approaches to overcome these bottlenecks. Robust industrial procedures have been established along classes of biocatalytic single-step reactions. Multi-step reactions and multi-component reactions (MCRs) enable a bottom-up approach with biocatalytic reactions working together in one compartment and recations hindering each other within different compartments or steps. The understanding of the catalytic functions of known and new enzymes is key for the development of new sustainable chemical transformations.
持续的工艺改进、成本降低以及提高工业化学转化的质量、安全性、健康和环境要求的趋势,加强了将全球生物催化研究工作转化为工业应用的力度。其中一个重点是具有一个或两个底物的生物催化单步反应,确定瓶颈以及克服这些瓶颈的分子和工程方法。沿着生物催化单步反应的类别建立了稳健的工业程序。多步反应和多组分反应(MCR)可以采用一种自下而上的方法,使生物催化反应在一个隔室中协同作用,而在不同隔室或步骤中相互抑制的反应。了解已知和新酶的催化功能是开发新的可持续化学转化的关键。