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Vectorial product concentration obtained with a permeable immobilized enzyme membrane. A new approach to the analysis of biological transport systems.

机译:用可渗透的固定化酶膜获得的矢量产物浓度。一种分析生物运输系统的新方法。

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摘要

The theoretical analysis of the distribution on both sides of a flat porous membrane of the product generated by an enzyme covalently bound only on to one side of the membrane separating two compartments of widely different volumes is presented. Contrary to what occurs with heterogeneous symmetric systems, the diffusional limitations at the enzyme level play a prominent role, not only on the apparent enzyme activity, but also on product flux-splitting. The mathematical model developed shows that it is possible to concentrate the reaction product in the compartment opposite to that where the reaction occurs. The influence of the parameters and of the physical characteristics of an asymmetrical system on product distribution is analysed. This theoretical analysis is in excellent agreement with experimental data obtained with glucose oxidase immobilized on a porous collagen membrane.
机译:提出了一种理论上对产品的扁平多孔膜两侧分布的分析,该酶仅共价键合在分隔两个容积相差很大的两个隔室的膜的一侧上。与异质对称系统相反,在酶水平上的扩散限制不仅在表观酶活性上而且在产物通量分裂上都起着重要作用。建立的数学模型表明,可以将反应产物浓缩在与发生反应的区域相对的隔室中。分析了不对称系统的参数和物理特性对产品分布的影响。该理论分析与固定在多孔胶原膜上的葡萄糖氧化酶获得的实验数据非常吻合。

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