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Binding of C3 fragments on top of adsorbed plasma proteins during complement activation on a model biomaterial surface.

机译:在模型生物材料表面上的补体激活过程中,C3片段与吸附的血浆蛋白结合。

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In the present study we investigate whether complement activation in blood in contact with a model biomaterial surface (polystyrene) occurs directly on the material surface or on top of an adsorbed plasma protein layer. Quartz crystal microbalance-dissipation analysis (QCM-D) complemented with enzyme immunoassays and Western blotting were used. QCM-D showed that the surface was immediately covered with a plasma protein film of approximately 8nm. Complement activation that started concomitantly with the adsorption of the protein film was triggered by a self-limiting classical pathway activation. After adsorption of the protein film, alternative pathway activation provided the bulk of the C3b deposition that added 25% more mass to the surface. The build up of alternative pathway convertase complexes using purified C3 and factors B and D on different protein films as monitored by QCM-D showed that only adsorbed albumin, IgG, but not fibrinogen, allowed C3b binding, convertase assembly and amplification. Western blotting of eluted proteins from the material surface demonstrated that the C3 fragments were covalently bound to other proteins. This is consistent with a model in which the activation is triggered by initiating convertases formed by means of the initially adsorbed proteins and the main C3b binding is mediated by the alternative pathway on top of the adsorbed protein film.
机译:在本研究中,我们调查与模型生物材料表面(聚苯乙烯)接触的血液中补体激活是否直接发生在材料表面或吸附血浆蛋白层的顶部。石英晶体微天平耗散分析(QCM-D)辅以酶免疫法和蛋白质印迹法。 QCM-D显示表面立即被约8nm的血浆蛋白膜覆盖。与蛋白质膜吸附同时开始的补体激活是由自限性经典途径激活触发的。吸附蛋白膜后,其他途径的激活提供了大部分C3b沉积,使表面质量增加了25%。通过QCM-D监测,使用纯化的C3和因子B和D在不同的蛋白膜上构建替代途径转化酶复合物,结果表明,只有吸附的白蛋白,IgG而不是纤维蛋白原,才允许C3b结合,转化酶组装和扩增。从材料表面洗脱的蛋白质的蛋白质印迹表明,C3片段与其他蛋白质共价结合。这与这样的模型一致,在该模型中,激活是通过启动借助最初吸附的蛋白质形成的转化酶来触发的,而主要的C3b结合是通过吸附的蛋白质膜顶部的替代途径介导的。

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