首页> 外文期刊>Transplantation: Official Journal of the Transplantation Society >Regulation of complement-mediated swine endothelial cell lysis by a surface-bound form of human C4b binding protein.
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Regulation of complement-mediated swine endothelial cell lysis by a surface-bound form of human C4b binding protein.

机译:通过表面结合形式的人C4b结合蛋白调节补体介导的猪内皮细胞溶解。

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摘要

BACKGROUND: Human C4b-binding protein (C4bp) functions as a cofactor for factor I in the degradation of C4b and C3b and, in addition, accelerates the rate of decay of the C4b2a complex. METHODS: In this study, we constructed a surface-bound form of human C4b-binding protein (C4bp-PI) consisting of a short consensus repeat 1-8 of the alpha-chain of C4bp and a glycosyl phosphatidylinositol (GPI) of the decay-accelerating factor (CD55) and established stable swine endothelial cell (SEC) lines expressing C4bp-PI by transfection of cDNA. Amelioration of complement-mediated lysis by the transfectant molecules was tested as an in vitro hyperacute rejection model of swine to human discordant xenograft, using the lactate dehydrogenase assay. RESULTS: Flow cytometric profiles of the stable SEC lines with C4bp-PI showed a high level of expression of this molecule. The cell lysate of the SEC line with C4bp-PI showed strong cofactor activity in not only C4b but also C3b, whereas the activity of plasma C4bp to bind to C3 was very weak. Approximately 150 x 10(4) molecules of C4bp-PI per SEC blocked human complement-mediated cell lysis by approximately 75%. CONCLUSIONS: The results suggest that the surface-bound form of C4bp will be very useful in clinical xenotransplantation.
机译:背景:人类C4b结合蛋白(C4bp)在C4b和C3b的降解中充当因子I的辅助因子,此外,还加速了C4b2a复合物的降解速率。方法:在这项研究中,我们构建了人C4b结合蛋白(C4bp-PI)的表面结合形式,由C4bp的α链的短共有重复序列1-8和衰变的糖基磷脂酰肌醇(GPI)组成cDNA的转染来表达C4bp-PI的稳定的猪血管内皮细胞系(CD55)和稳定的猪内皮细胞系(SEC)。使用乳酸脱氢酶测定法,检测了转染子分子对补体介导的溶解的改善作用,作为猪对人源异种异种移植物的体外超急性排斥模型。结果:具有C4bp-PI的稳定SEC细胞系的流式细胞仪谱显示该分子的高水平表达。具有C4bp-PI的SEC系的细胞裂解物不仅在C4b中而且在C3b中都显示出强大的辅因子活性,而血浆C4bp与C3结合的活性却很弱。每个SEC约有150 x 10(4)个C4bp-PI分子阻止了人类补体介导的细胞裂解约75%。结论:结果表明C4bp的表面结合形式将在临床异种移植中非常有用。

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