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补体蛋白在带正电和带负电的纤维素透析器膜上的体外吸附

Ex vivo complement protein adsorption on positively and negatively charged cellulose dialyser membranes.

作者信息

Mahiout A, Matata B M, Vienken J, Courtney J M

机构信息

Institute of Cell & Protein Engineering, Medical Park Hannover, Germany.

出版信息

J Mater Sci Mater Med. 1997 May;8(5):287-96. doi: 10.1023/a:1018560211844.

Abstract

An ex vivo test system was used to measure complement protein C3 and factor B adsorption onto small dialyser modules made from regenerated and modified cellulosic hollow fibre membranes in which positive diethylaminoethyl (DEAE) or negative carboxymethyl (CM) groups were introduced into the cellulose matrix. The extracorporeal system, which included test-dialysers and the dialysis environment, allowed the use of labelled proteins without contaminating the blood donors which were connected in an open-loop fashion to the extracorporeal test system. The modules were removed at selected time points from the extracorporeal system for radioactivity counting. The results were used to evaluate the mechanisms involved in complement reactions to foreign surfaces. The system therefore allowed the analysis of complement protein adsorption occurring in the dialyser modules and its relationship to the complement generation rate in the extracorporeal system to be evaluated. It was possible to demonstrate that significant complement C3 and factor B adsorption occurred in the test modules made of cellulosic membranes. Complement adsorption as a function of the pH and the release reaction of the adsorbed C3 and factor B after membrane blood perfusion were therefore found to be variable according to the cellulosic membrane type and the presence of positive or negative charged groups within the cellulose matrix. The data obtained from the ex vivo model therefore provided additional evidence on the discussion of the mechanisms involved in the increased complement activation by regenerated cellulose and in its attenuation by DEAE- or CM-modified cellulose.

摘要

采用一种体外测试系统,来测量补体蛋白C3和B因子在由再生和改性纤维素中空纤维膜制成的小型透析器模块上的吸附情况,其中在纤维素基质中引入了正二乙氨基乙基(DEAE)或负羧甲基(CM)基团。该体外系统包括测试透析器和透析环境,允许使用标记蛋白,而不会污染以开环方式连接到体外测试系统的献血者血液。在选定的时间点从体外系统中取出模块进行放射性计数。结果用于评估补体对外来表面反应所涉及的机制。因此,该系统能够分析透析器模块中发生的补体蛋白吸附情况,并评估其与体外系统中补体生成速率的关系。结果表明,在由纤维素膜制成的测试模块中发生了显著的补体C3和B因子吸附。因此,根据纤维素膜类型以及纤维素基质中带正电或负电基团的存在情况,补体吸附作为pH的函数以及膜血液灌注后吸附的C3和B因子的释放反应是可变的。因此,从该体外模型获得的数据为再生纤维素增强补体激活及其被DEAE或CM改性纤维素减弱所涉及的机制的讨论提供了额外的证据。

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