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Biocatalysis for the synthesis of pharmaceuticals and pharmaceutical intermediates

机译:用于合成药物和药物中间体的生物分析

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Biocatalysis has been increasingly used for pharmaceutical synthesis in an effort to make manufacturing processes greener and more sustainable. Biocatalysts that possess excellent activity, specificity, ther-mostability and solvent-tolerance are highly sought after to meet the requirements of practical applications. Generating biocatalysts with these specific properties can be achieved by either discovery of novel biocatalysts or protein engineering. Meanwhile, chemoenzymatic routes have also been designed and developed for pharmaceutical synthesis on an industrial scale. This review discusses the recent discoveries, engineering, and applications of biocatalysts for the synthesis of pharmaceuticals and pharmaceutical intermediates. Key classes of biocatalysts include reductases, oxidases, hydrolases, lyases, isomerases, and transaminases. (C) 2017 Elsevier Ltd. All rights reserved.
机译:生物分析越来越多地用于药物合成,以使制造过程更加绿色和更可持续。 具有优异的活性,特异性,耐受性和溶剂耐受性的生物催化剂是追求实际应用的要求。 通过对新的生物催化剂或蛋白质工程的发现可以实现具有这些特异性特异性的生物催化剂。 同时,还设计了化学酶机,用于工业规模的药物合成。 本综述讨论了生物催化剂的最近发现,工程和应用,用于合成药物和药物中间体。 生物催化剂的主要类别包括还原剂,氧化酶,水解酶,裂解酶,异构酶和转氨酶。 (c)2017 Elsevier Ltd.保留所有权利。

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