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Synthesizing Chiral Drug Intermediates by Biocatalysis

机译:通过生物分析合成手性药物中间体

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摘要

The chiral feature is a critical factor for the efficacy and safety of many therapeutic agents. At present, about 57% of marketed drugs are chiral drugs and about 99% of purified natural products are chiral compounds. There has been a tremendous potential of functional microorganisms and biocatalysts derived from them for the bioconversion of synthetic chemicals into drugs with high enantio-, chemo-, and regio-selectivities. Biocatalysis is becoming a key subassembly in the medicinal chemist's toolbox. In fact, the intermediates of many important therapeutic agents such as sitagliptin, pregabalin, ragaglitazar, paclitaxel, epothilone, abacavir, atorvastatin, rosuvastatin, and omapatrilat have been successfully synthesized via biocatalysis. In this review, various biocatalytic systems that enable to synthesize these chiral drug intermediates are updated and discussed regarding their potential application in the pharmaceutical industry. Further development and increased utilization of biocatalysis for production of drugs with emphasis on green chemistry can be expected.
机译:手性特征是许多治疗剂的疗效和安全性的关键因素。目前,大约57%的销售药物是手性药物,约99%的纯化的天然产物是手性化合物。具有巨大潜力的功能微生物和生物催化剂,用于衍生自合成化学物质的生物转化成具有高肾,化学和序列选择性的药物。生物分析在药用化学家工具箱中成为一个关键的子组件。事实上,许多重要治疗剂如SitaGliptin,Praetabalin,Ragglitazar,紫杉醇,EPHothiLONE,Abacavir,阿托伐他汀,罗苏沃和Omapatrilat的中间体已通过生物分析成功地合成。在本文中,可以更新能够合成这些手性药物中间体的各种生物催化系统,并讨论其在制药行业的潜在应用。可以预期进一步发展和增加的生物催化利用,以强调绿色化学生产。

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