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高通量聚砜血液滤过器的通透性及二次膜形成

Permeability and secondary membrane formation of a high flux polysulfone hemofilter.

作者信息

Röckel A, Hertel J, Fiegel P, Abdelhamid S, Panitz N, Walb D

出版信息

Kidney Int. 1986 Sep;30(3):429-32. doi: 10.1038/ki.1986.202.

Abstract

It has been assumed that the molecular weight (MW) cut-off of a newly fabricated polysulfone capillary dialyzer (F60, Fresenius, FRG) is similar to that of the human glomerulus. We recently tested the device in vivo and found this not to be so, based on the device's ability to eliminate substances of a MW of 10,000 to 60,000 daltons. One of the reasons for this discrepancy was found to be the influence of secondary membrane formation on solute permeability. Endogenous marker substances of a defined MW (beta 2-microglobulin, myoglobin, RBP, alpha 1-microglobulin, acid alpha 1-glycoprotein, alpha 1-antitrypsin, prealbumin, and albumin were measured by laser nephelometry or radioimmune assay; sieving coefficients (SC) and protein eliminations were calculated for each low MW protein.

摘要

一直以来都认为新制造的聚砜毛细管透析器(F60,费森尤斯公司,德国)的截留分子量(MW)与人体肾小球的截留分子量相似。我们最近在体内对该装置进行了测试,基于该装置对分子量为10,000至60,000道尔顿物质的清除能力,发现并非如此。发现这种差异的原因之一是二次膜形成对溶质渗透性的影响。通过激光散射比浊法或放射免疫分析法测定了特定分子量的内源性标志物物质(β2-微球蛋白、肌红蛋白、视黄醇结合蛋白、α1-微球蛋白、酸性α1-糖蛋白、α1-抗胰蛋白酶、前白蛋白和白蛋白);计算了每种低分子量蛋白质的筛系数(SC)和蛋白质清除率。

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