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首页> 外文期刊>Chemical Engineering Science >Production of (S)-gamma-fluoroleucine ethyl ester by enzyme mediated dynamic kinetic resolution: Comparison of batch and fed batch stirred tank processes to a packed bed column reactor
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Production of (S)-gamma-fluoroleucine ethyl ester by enzyme mediated dynamic kinetic resolution: Comparison of batch and fed batch stirred tank processes to a packed bed column reactor

机译:通过酶介导的动态动力学拆分生产(S)-γ-氟亮氨酸乙酯:分批和进料分批搅拌釜工艺与填充床塔反应器的比较

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摘要

Immobilized Candida antarctica lipase B has been shown to form the pharmaceutically important (S)-gamma-fluoroleucine ethyl ester intermediate from the ring opening of an azlactone with ethanol, providing 79% yield and 78% enantiomeric excess (ee) for a stirred tank batch process demonstrated at multi kilogram scale. A kinetic analysis of the reaction system was defined which included the selective enzyme mediated dynamic kinetic ethanolysis, the background hydrolysis to acid and the non selective ethanolysis to racemic ester. This was used to generate a kinetic model which made excellent predictions of the reaction behavior. This kinetic model was then used to develop two new optimized processes. A fed batch stirred tank process was developed that increased productivity four fold compared to the original batch process, while maintaining a similar product ee value. Additionally, a plug flow column reactor process was developed that significantly improved productivity via a 20 fold reduction in the enzyme deactivation rate observed in the batch processes. As a result, the plug flow reactor generated a 20 fold reduction in enzyme to substrate ratio and an increased product yield (>90%) and ee (86%) over the initial batch process, producing an effective and economical process for large-scale production. (C) 2007 Elsevier Ltd. All rights reserved.
机译:已显示固定化的南极假丝酵母脂肪酶B可从a内酯与乙醇的开环反应中形成药学上重要的(S)-γ-氟亮氨酸乙酯中间体,为搅拌罐批量提供79%的收率和78%的对映体过量(ee)公斤级的过程证明。定义了反应体系的动力学分析,包括选择性酶介导的动态动力学乙醇分解,背景水解为酸和非选择性乙醇分解为外消旋酯。这被用于生成动力学模型,该动力学模型对反应行为做出了出色的预测。然后将该动力学模型用于开发两个新的优化过程。开发了一种分批进料搅拌釜工艺,与原始分批工艺相比,其生产率提高了四倍,同时保持了相似的产品ee值。另外,开发了活塞流塔反应器方法,该方法通过在分批方法中观察到的酶失活速率降低了20倍而显着提高了生产率。结果,活塞流反应器的酶与底物之比降低了20倍,与初始批处理相比,产物收率(> 90%)和ee(86%)提高,为大规模生产提供了一种有效而经济的方法生产。 (C)2007 Elsevier Ltd.保留所有权利。

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