首页> 美国卫生研究院文献>Microbial Cell Factories >Markedly improving asymmetric oxidation of 1-(4-methoxyphenyl) ethanol with Acetobacter sp. CCTCC M209061 cells by adding deep eutectic solvent in a two-phase system
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Markedly improving asymmetric oxidation of 1-(4-methoxyphenyl) ethanol with Acetobacter sp. CCTCC M209061 cells by adding deep eutectic solvent in a two-phase system

机译:醋杆菌显着改善1-(4-甲氧基苯基)乙醇的不对称氧化。通过在两相系统中添加深共熔溶剂来CCTCC M209061细胞

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摘要

BackgroundEnantiopure (S)-1-(4-methoxyphenyl) ethanol {(S)-MOPE} can be employed as an important synthon for the synthesis of cycloalkyl [b] indoles with the treatment function for general allergic response. To date, the biocatalytic resolution of racemic MOPE through asymmetric oxidation in the biphasic system has remained largely unexplored. Additionally, deep eutectic solvents (DESs), as a new class of promising green solvents, have recently gained increasing attention in biocatalysis for their excellent properties and many successful examples in biocatalytic processes. In this study, the biocatalytic asymmetric oxidation of MOPE to get (S)-MOPE using Acetobacter sp. CCTCC M209061 cells was investigated in different two-phase systems, and adding DES in a biphasic system was also explored to further improve the reaction efficiency of the biocatalytic oxidation.
机译:背景对映体(S)-1-(4-甲氧基苯基)乙醇{(S)-MOPE}可用作合成环烷基[b]吲哚的重要合成子,其具有对一般变态反应的治疗功能。迄今为止,在双相系统中通过不对称氧化的外消旋MOPE的生物催化拆分作用仍未得到充分探索。此外,作为新型的有前景的绿色溶剂,深共熔溶剂(DES)由于其优异的性能和在生物催化过程中的许多成功实例,最近在生物催化中受到越来越多的关注。在这项研究中,使用醋杆菌属的生物催化不对称氧化MOPE以得到(S)-MOPE。在不同的两相系统中研究了CCTCC M209061细胞,并探索了在双相系统中添加DES的方法,以进一步提高生物催化氧化的反应效率。

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