Department of Drug Sciences, University of Pavia, Viale Taramelli, Pavia, Lombardia, Italy.
Chirality. 2022 Nov;34(11):1403-1418. doi: 10.1002/chir.23498. Epub 2022 Aug 5.
Over the last decades, biocatalysis has achieved growing interest thanks to its potential to enable high efficiency, high yield, and eco-friendly processes aimed at the production of pharmacologically relevant compounds. Particularly, biocatalysis proved an effective and potent tool in the preparation of chiral molecules, and the recent innovations of biotechnologies and nanotechnologies open up a new era of further developments in this field. Different strategies are now available for the synthesis of chiral drugs and their intermediates. Enzymes are green tools that offer several advantages, associated both to catalysis and environmentally friendly reactants. Specifically, the use of enzymes isolated from biological sources or of whole-cell represents a valuable approach to obtain pharmaceutical products. The sustainability, the higher efficiency, and cost-effectiveness of biocatalytic reactions result in improved performance and properties that can be translated from academia to industry. In this review, we focus on biocatalytic approaches for synthesizing chiral drugs or their intermediates. Aiming to unveil the potentialities of biocatalysis systems, we discuss different examples of innovative biocatalytic approaches and their applications in the pharmaceutical industry.
在过去几十年中,由于生物催化具有提高效率、提高产量和环保的潜力,因此越来越受到关注,旨在生产具有药理相关性的化合物。特别是,生物催化在制备手性分子方面被证明是一种有效和有力的工具,生物技术和纳米技术的最新创新为该领域的进一步发展开辟了一个新时代。现在有多种策略可用于合成手性药物及其中间体。酶是绿色工具,具有与催化和环保反应物相关的多种优势。具体而言,使用从生物来源分离的酶或整个细胞代表了获得药物产品的一种有价值的方法。生物催化反应的可持续性、更高的效率和成本效益导致性能和特性得到改善,从而可以从学术界转化到工业界。在这篇综述中,我们重点介绍了用于合成手性药物或其中间体的生物催化方法。为了揭示生物催化系统的潜力,我们讨论了不同的创新生物催化方法的实例及其在制药行业的应用。