Laboratory of Biocatalysis and Synthetic Biotechnology, State Key Laboratory of Bioreactor Engineering, East China University of Science and Technology, Shanghai 200237, China.
Biotechnol Adv. 2012 Nov-Dec;30(6):1279-88. doi: 10.1016/j.biotechadv.2011.10.007. Epub 2011 Oct 30.
Chiral secondary alcohols play an important role in pharmaceutical, agrochemical, and chemical industries. In recent years, impressive steps forward have been achieved towards biocatalytic ketone reduction as a green and useful access to enantiopure alcohols. An increasing number of novel and robust enzymes are now accessible as a result of the ongoing progress in genomics, screening and evolution technologies, while process engineering provides further success in areas of biocatalytic reduction in meeting synthetic challenges. The versatile platform of these techniques and strategies offers the possibility to apply high substrate loading and thus to overcome the limitation of low volumetric productivity of usual enzymatic processes which is the bottleneck for their practical application. In addition, the integration of bioreduction with other enzymatic or chemical steps allows the efficient synthesis of more complex chiral products.
手性仲醇在制药、农化和化学工业中发挥着重要作用。近年来,通过生物催化酮还原来获得对映纯醇的方法作为一种绿色且有用的方法,已经取得了令人瞩目的进展。由于基因组学、筛选和进化技术的不断发展,现在可以获得越来越多的新型和强大的酶,而过程工程在满足合成挑战的生物催化还原领域提供了进一步的成功。这些技术和策略的多功能平台提供了应用高底物负载的可能性,从而克服了通常的酶促过程的低体积产率的限制,这是其实际应用的瓶颈。此外,将生物还原与其他酶或化学步骤集成,可以有效地合成更复杂的手性产物。