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首页> 外文期刊>Enzyme and Microbial Technology >Sequential design of pH profiles for asymmetric bioreduction of ethyl 4-chloro-3-oxobutyrate using a new experimental design method
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Sequential design of pH profiles for asymmetric bioreduction of ethyl 4-chloro-3-oxobutyrate using a new experimental design method

机译:使用新的实验设计方法对4-氯-3-氧代丁酸乙酯进行不对称生物还原的pH曲线的顺序设计

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摘要

A sequential fashion experimental design algorithm for the optimal pH profile search in the asymmetric reduction of ethyl 4-chloro-3-oxobutyrate catalyzed by Saccharomyces cerevisiae was addressed.Ethyl S-4-chloro-3-hydroxybutyrate was produced to reach two important quality indices:reaction yield and product's optical purity.Instead of the traditional strategies with the fixed pH or the uncontrolled pH values during the reaction,a novel strategy for designing the optimal time-varying operating pH profile was developed based on the methodology of the data-driven method.The proposed design technique composed of the hybrid function approximation and the Taguchi's orthogonal array was used to determine the new design profiles in the next run.The hybrid type of the function approximation allows the global and local approximations to construct the profiles in the whole design space and some local regions,respectively.The optimal profile can be obtained if the location of the function coefficients is properly adjusted in the functional space.The Taguchi's approach is used to design experiments and analyze the outcomes of each experimental design to improve the optimal objective(quality)function.Without the prior knowledge of the system,the proposed method using information from the previous experiments can update and modify the profiles that would be applied to the subsequent experiments.In comparison with traditional methods,the product's ee could be significantly enhanced(from 83.8% to 91.3%)without decreasing the reaction yield.
机译:解决了酿酒酵母催化不对称还原4-氯-3-氧代丁酸乙酯的最佳pH谱搜索的顺序时尚实验设计算法。制备了S-4-氯-3-羟丁酸乙酯,达到两个重要的质量指标:反应产率和产物的光学纯度。基于数据驱动的方法,开发了一种设计最佳时变工作pH曲线的新策略,以取代反应过程中具有固定pH或不受控制的pH值的传统策略。由混合函数逼近和田口正交阵列组成的拟议设计技术用于确定下一次运行中的新设计轮廓。函数逼近的混合类型允许全局逼近和局部逼近来整体构造轮廓设计空间和一些局部区域。如果函数系数的位置可以得到最佳轮廓Taguchi方法用于设计实验并分析每个实验设计的结果,以提高最佳目标(质量)功能。在没有系统先验知识的情况下,所提出的方法使用了与传统方法相比,在不降低反应收率的情况下,可以显着提高产品的ee(从83.8%降至91.3%),从而可以应用于后续实验。

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