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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >An integrated model for enzymatic reactions in reverse micellar systems: Nominal and effective substrate concentrations
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An integrated model for enzymatic reactions in reverse micellar systems: Nominal and effective substrate concentrations

机译:逆胶束系统中酶促反应的集成模型:标称和有效底物浓度

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The distribution of hexanol in a reversed micellar system of AOT/isooctane/buffer was quantitatively described by a model based on the volume fractions of micellar components and partition coefficients of the alcohol. A recombinant cutinase was used as a model biocatalyst since its activity is strongly dictated by the presence of short to medium alcohol chain lengths. It was assumed that hexanol would be accessed by cutinase if it is either in the water pool or in the surfactant layer (micellar) since the micelles are very small and resized upon protein microencapsulation. The integrated model takes into account: the partitioning, the diffusion, and the adsorption of hexanol to AOT hydrocarbon tails and the effectiveness factors calculated to model the kinetic experiments. Thermostability data also support the model generated. Therefore, the model defines the reversed micelles composition in terms of hexanol concentration integrating the process globally. [References: 28]
机译:基于胶束成分的体积分数和醇的分配系数,通过模型定量地描述了在AOT /异辛烷/缓冲液的反向胶束系统中己醇的分布。重组角质酶被用作模型生物催化剂,因为其活性强烈取决于短至中等醇链长度的存在。假定己糖醇在水游泳池或表面活性剂层(胶束)中会被角质酶接触,因为胶束非常小,在蛋白质微囊化后会变大。集成模型考虑到:己醇在AOT烃尾部的分配,扩散和吸附,以及为动力学实验建模而计算出的有效因子。热稳定性数据也支持生成的模型。因此,该模型根据整体过程中的己醇浓度定义了反胶束组成。 [参考:28]

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