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通过酶促转酯化对(R,S)-2-氯扁桃酸的动力学拆分进行实验和模拟。

Experiment and simulation on kinetic resolution of (R,S)-2-chloromandelic acid by enzymatic transesterification.

机构信息

Department of Chemistry and Chemical Engineering, Hunan Institute of Science and Technology, Yueyang, Hunan, China.

出版信息

Biotechnol Prog. 2019 Jul;35(4):e2815. doi: 10.1002/btpr.2815. Epub 2019 Apr 19.

Abstract

Optically pure 2-chloromandelic acid (ClMA) is a very important chiral drug intermediate for synthesis of (S)-clopidogrel, belonging to the platelet aggregation inhibitor. Enantioselective resolution of (R,S)-2-chloromandelic acid was carried out in organic solvent through irreversible transesterification catalyzed by lipase AK with vinyl acetate acting as the acyl donor. Effects of various conditions on enantioselectivity and activity of lipase were investigated, including organic solvents, temperature, water content, substrate ratio, enzyme loading, and reaction time. Based on homogeneous reaction and Ping-Pong bi-bi mechanism, a quantitative model was constructed to simulate and optimize the reaction process. Under the optimal conditions, excellent results were obtained with high conversion of (R)-2-ClMA (c , ≥98.85%) and large enantiomeric excess of substrate (ee , ≥98.15%). There is a good agreement between predicted values and experiment data, which indicates that the established method is a powerful tool for optimization of the enantioselective transesterification process for enantiomers separation.

摘要

光学纯 2-氯扁桃酸(ClMA)是一种非常重要的手性药物中间体,用于合成(S)-氯吡格雷,属于血小板聚集抑制剂。通过脂肪酶 AK 催化的不可逆转酯化反应,以醋酸乙烯酯作为酰基供体,在有机溶剂中拆分(R,S)-2-氯扁桃酸。考察了各种条件对脂肪酶的对映选择性和活性的影响,包括有机溶剂、温度、含水量、底物比、酶用量和反应时间。基于均相反应和乒乓双酶机制,构建了一个定量模型来模拟和优化反应过程。在最佳条件下,(R)-2-ClMA 的转化率很高(c ,≥98.85%),底物的对映过量值很大(ee ,≥98.15%),得到了很好的结果。预测值与实验数据吻合较好,表明该方法是优化对映选择性转酯化过程用于拆分对映体的有力工具。

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