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动态动力学拆分:优化S-布洛芬生产的替代方法。

Dynamic kinetic resolution: alternative approach in optimizing S-ibuprofen production.

作者信息

Fazlena H, Kamaruddin A H, Zulkali M M D

机构信息

School of Chemical Engineering, Universiti Sains Malaysia, 14300, Nibong Tebal, Seberang Prai Selatan, Penang, Malaysia.

出版信息

Bioprocess Biosyst Eng. 2006 Mar;28(4):227-33. doi: 10.1007/s00449-005-0024-1. Epub 2005 Oct 8.

Abstract

A lipase catalysed enantioselective hydrolysis process under in situ racemization of the remaining (R)-ibuprofen ester substrate with sodium hydroxide as the catalyst was developed for the production of S-ibuprofen from (R,S)-ibuprofen ester in isooctane. Detailed investigations on parameters study indicated that 0.5 M NaOH, addition of 20% (v/v) co-solvent (dimethyl sulphoxide), operating temperature of 45 degrees C, and 40 mmol/L substrate gave 86% conversion and 99.4% optical purity of S-ibuprofen in dynamic kinetic resolution. Meanwhile, in common enzymatic kinetic resolution process, only 42% conversion of the racemate and 93% enantiomeric excess of the product was obtained which are of lower values as compared to dynamic kinetic resolution. The S-ibuprofen produced during each process was evaluated and approximately 50% increment in concentration of S-acid product was produced when dynamic kinetic resolution was applied into the process.

摘要

开发了一种脂肪酶催化的对映选择性水解过程,以氢氧化钠为催化剂,使剩余的(R)-布洛芬酯底物原位外消旋,用于在异辛烷中由(R,S)-布洛芬酯生产S-布洛芬。对参数的详细研究表明,在动态动力学拆分中,0.5 M氢氧化钠、添加20%(v/v)共溶剂(二甲基亚砜)、45℃的操作温度和40 mmol/L底物可使S-布洛芬的转化率达到86%,光学纯度达到99.4%。同时,在普通的酶促动力学拆分过程中,外消旋体的转化率仅为42%,产物的对映体过量为93%,与动态动力学拆分相比,这些值较低。对每个过程中产生的S-布洛芬进行了评估,当将动态动力学拆分应用于该过程时,S-酸产物的浓度提高了约50%。

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