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蛋白质吸附对非对称超滤膜传输特性的影响。

Effect of protein adsorption on the transport characteristics of asymmetric ultrafiltration membranes.

作者信息

Mochizuki S, Zydney A L

机构信息

Department of Chemical Engineering, University of Delaware, Newark 19716.

出版信息

Biotechnol Prog. 1992 Nov-Dec;8(6):553-61. doi: 10.1021/bp00018a013.

Abstract

The effects of bovine serum albumin adsorption on the transport characteristics of asymmetric poly(ether sulfone) ultrafiltration membranes were determined using polydisperse dextrans with gel permeation chromatography. Actual dextran sieving coefficients were evaluated from observed sieving data for both the clean and preadsorbed membranes using a stagnant film model. The flux dependence of the actual dextran sieving coefficients was used to evaluate the intrinsic membrane hindrance factors for convective (i.e., sieving) and diffusive transport for the different molecular weight dextrans using classical membrane transport theory. Protein adsorption caused a reduction in both dextran sieving and diffusion, with the magnitude of the reduction a function of the dextran molecular weight and pore size. The effects of adsorption on the specific pore area and the membrane porosity were then determined using a recent model for solute transport through asymmetric ultrafiltration membranes. The data indicate that protein adsorption occurs preferentially in the larger membrane pores, causing a greater reduction in solute sieving compared to the membrane hydraulic permeability and porosity than would be predicted on the basis of either a simple pore blockage or pore constriction model.

摘要

使用凝胶渗透色谱法,通过多分散右旋糖酐测定牛血清白蛋白吸附对不对称聚醚砜超滤膜传输特性的影响。利用停滞膜模型,根据清洁膜和预吸附膜的筛分数据评估实际的右旋糖酐筛分系数。使用经典的膜传输理论,实际右旋糖酐筛分系数的通量依赖性用于评估不同分子量右旋糖酐对流(即筛分)和扩散传输的固有膜阻碍因子。蛋白质吸附导致右旋糖酐筛分和扩散均降低,降低幅度是右旋糖酐分子量和孔径的函数。然后,使用最近的溶质通过不对称超滤膜传输模型,确定吸附对比孔容和膜孔隙率的影响。数据表明,蛋白质吸附优先发生在较大的膜孔中,与基于简单孔堵塞或孔收缩模型的预测相比,溶质筛分的降低幅度大于膜水力渗透率和孔隙率的降低幅度。

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