Kiguchi Takayoshi, Ito Hiromi, Yamashita Akihiro C
Department of Chemical Science and Technology, Faculty of Bioscience and Applied Chemistry, Hosei University, 3-7-2, Kajino-cho, Koganei 184-8584, Tokyo, Japan.
Department of Applied Chemistry, Graduate School of Science and Engineering, Hosei University, 3-7-2, Kajino-cho, Koganei 184-8584, Tokyo, Japan.
Membranes (Basel). 2022 Jul 1;12(7):684. doi: 10.3390/membranes12070684.
In a clinical situation, since membrane fouling often causes the reduction of solute removal performance of the dialyzer, it is necessary to evaluate the performance of the dialyzer, considering the effects of fouling even in aqueous in vitro experiments that are useful for the better design of dialyzers. We replicated the membrane fouling by immobilizing albumin on the membrane in a dialyzer using glutaraldehyde as a stabilizer. The modules of various membrane surface areas with and without replication of the fouling were used for performance evaluation of solute (creatinine, vitamin B, and inulin) removal in dialysis experiments in vitro. Clearances for these solutes in the modules with fouling were lower than those without fouling. Furthermore, the smaller the surface area, the larger the fouling effect was observed in all solutes. Calculated pressure distribution in a module by using a mathematical model showed that the solute removal performance might be greatly affected by the rate of internal filtration that enhances the solute removal, especially for larger solutes. The increase in the rate of internal filtration should contribute to improving the solute removal performance of the dialyzer, with a higher effect in modules with a larger membrane surface area.
在临床情况下,由于膜污染常常导致透析器溶质清除性能下降,因此即使在有助于透析器优化设计的体外水相实验中,考虑到污染的影响来评估透析器的性能也是很有必要的。我们使用戊二醛作为稳定剂,通过将白蛋白固定在透析器的膜上来模拟膜污染。在体外透析实验中,使用有和没有模拟污染的不同膜面积模块来评估溶质(肌酐、维生素B和菊粉)的清除情况。有污染模块中这些溶质的清除率低于没有污染的模块。此外,膜面积越小,所有溶质的污染效应越明显。使用数学模型计算模块中的压力分布表明,溶质清除性能可能会受到增强溶质清除的内部过滤速率的显著影响,尤其是对于较大的溶质。内部过滤速率的提高应有助于改善透析器的溶质清除性能,在膜面积较大的模块中效果更明显。