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Biocatalysis for pharmaceutical intermediates: the future is now

机译:医药中间体的生物催化:现在就是未来

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Biocatalysis is continuing to gain momentum and is now becoming a key component in the toolbox of the process chemist, with a place alongside chemocatalysis and chromatographic separations. The pharmaceutical industry demands a speed of development that must be on a parallel with conventional chemistry and high optical purity for complex compounds with multiple chiral centres. This review describes how these demands are being addressed to make biocatalysis successful, particularly by the use of micro-scale technology for high-speed catalyst screening and process development alongside discipline integration of biology and engineering with chemistry. Developments in recombinant technology will further expand the repertoire of biocatalysis in the coming years to new chemistries and enable catalyst design to fit the process. Further development of biocatalysis for green chemistry and high productivity processes can also be expected.
机译:生物催化一直在不断发展,现在正成为过程化学家工具箱中的重要组成部分,与化学催化和色谱分离并存。对于具有多个手性中心的复杂化合物,制药行业要求发展速度必须与常规化学方法和高光学纯度相平行。这篇综述描述了如何满足这些要求以使生物催化成功,特别是通过使用微型技术进行高速催化剂筛选和工艺开发以及生物学和化学工程学的学科整合。重组技术的发展将在未来几年中将生物催化的应用范围进一步扩展到新的化学领域,并使催化剂的设计适应这一过程。也可以期望进一步发展用于绿色化学和高生产率过程的生物催化。

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