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The effects of urease immobilization on the transport characteristics and protein adsorption capacity of cellulose acetate based hemodialysis membranes

机译:固定化脲酶对醋酸纤维素基血液透析膜转运特性和蛋白质吸附能力的影响

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摘要

In this study, cellulose acetate (CA) based hemodialysis membranes were prepared by a dry phase inversion method and the influences of urease immobilization on the clearing performance and protein adsorption capacity of the membranes were investigated. Permeation experiments have shown that modification of CA membranes with urease immobilization not only enhanced the transport rate of urea but also increased the permeation coefficients of uric acid and creatinine by changing the structure of the membrane. Furthermore, the protein adsorption capacity of the CA membranes decreased. On the other hand, the mechanical strength of the modified CA membrane did not change significantly compared with that of the unmodified one. A mathematical model was derived to determine the rate of mass transfer of urea through modified CA membranes. Model predictions along with the experimental data suggest that urease immobilization can be used as an alternative method in preparing CA based hemodialysis membranes with improved transport characteristics and biocompatibility through reduced protein adsorption capacities.
机译:在这项研究中,通过干相转化方法制备了基于醋酸纤维素(CA)的血液透析膜,并研究了脲酶固定化对膜的清除性能和蛋白质吸附能力的影响。渗透实验表明,通过固定尿素酶修饰CA膜不仅可以提高尿素的转运速率,而且可以通过改变膜的结构来提高尿酸和肌酐的渗透系数。此外,CA膜的蛋白质吸附能力降低。另一方面,与未改性的CA膜相比,改性的CA膜的机械强度没有显着变化。推导了数学模型来确定尿素通过改性CA膜的传质速率。模型预测以及实验数据表明,尿素酶固定化可以用作制备基于CA的血液透析膜的替代方法,该膜通过降低的蛋白质吸附能力具有改善的运输特性和生物相容性。

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