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Intermolecular Electrostatic Interactions and Their Effect on Flux and Protein Deposition during Protein Filtration

机译:分子间静电相互作用及其对蛋白质过滤过程中通量和蛋白质沉积的影响

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AbstractAlthough membrane filtration is used extensively to process protein solutions containing a variety of electrolytes, there is currently little fundamental understanding of the effect of the solution environment (and in particular, the solution pH) on the filtrate flux in these systems. We have obtained data for the flux and sieving coefficients during the batch (stirred cell) filtration of solutions of bovine serum albumin, immunoglobulins, hemoglobin, ribpnuclease A, and lysozyme through 0.16‐μm micro‐filtration membranes at different pH values. The flux declined significantly for all five proteins due to the formation of a protein deposit on the upper surface of the membrane. The quasi‐steady ultrafiltrate fluxes at the individual protein isoelectric pH's were essentially identical, despite the large differences in molecular weight and physico‐chemical characteristics of these proteins. The flux increased at pH's away from the isoelectric point, with the data well‐correlated with the protein surface charge density. These results were explained in terms of a simple physical model in which the protein deposit continues to grow, and thus the flux continues to decline, until the drag force on the proteins associated with the filtrate flow is no longer able to overcome the intermolecular repulsive interactions between the proteins in the bulk solution and those in the protein deposit on the surface of th
机译:摘要虽然膜过滤被广泛用于处理含有多种电解质的蛋白质溶液,但目前人们对溶液环境(特别是溶液pH值)对这些体系中滤液通量的影响知之甚少。我们获得了牛血清白蛋白、免疫球蛋白、血红蛋白、核微酸酶 A 和溶菌酶溶液在不同 pH 值下通过 0.16-μm 微滤膜进行批量(搅拌池)过滤过程中的通量和筛分系数数据。由于在膜的上表面形成蛋白质沉积物,所有五种蛋白质的通量都显着下降。尽管这些蛋白质的分子量和物理化学特性存在很大差异,但单个蛋白质等电pH值下的准稳态超滤通量基本相同。当pH值远离等电点时,通量增加,数据与蛋白质表面电荷密度密切相关。这些结果可以用一个简单的物理模型来解释,在该模型中,蛋白质沉积物继续增长,因此通量继续下降,直到与滤液流相关的蛋白质上的阻力不再能够克服本体溶液中的蛋白质与蛋白质表面蛋白质沉积物中的蛋白质之间的分子间排斥相互作用。

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