Kirschfink M, Knoblauch K, Roelcke D
Institut für Immunologie, Universität, Heidelberg, FRG.
Infusionsther Transfusionsmed. 1994 Dec;21(6):405-9. doi: 10.1159/000223020.
To review recent reports on the interaction of cold agglutinins with the complement system and its relevance to cold agglutinin disease.
Review articles and original papers have been selected for this contribution.
The report focuses on experimental data available from in vitro studies as well as clinical findings regarding the mechanisms of cold agglutinin-induced complement activation.
Despite the observation that only few cold agglutinins (almost exclusively IgM molecules with anti-I specificity) induce in vitro hemolysis of human red blood cells with human serum (homologous system), the vast majority of these autoantibodies are able to initiate the classical pathway sequence with the fixation of C1 and to a lesser degree of C4. The ability of IgM cold agglutinins to activate, in principle, complement is demonstrated by their hemolytic efficiency in the presence of animal serum as a source of heterologous complement. In addition to the thermal amplitude of cold agglutinin binding, a possible interference with membrane regulatory proteins may render certain cold agglutinins hemolytically active in a homologous system.
Despite a hemolytic inefficiency, cold agglutinin-induced fixation of early complement components up to C3 leads to an accelerated clearance of red cells from the circulation by hepatic sequestration. However, it is not yet clear, to what degree these cells are eliminated by the reticuloendothelial system or whether they return to the circulation. Dependent on the amount of membrane-bound C3 fragments these cells may even be protected against further cold agglutinin-induced complement attack.
综述近期关于冷凝集素与补体系统相互作用及其与冷凝集素病相关性的报道。
已为本研究选取综述文章和原始论文。
本报告重点关注体外研究的实验数据以及关于冷凝集素诱导补体激活机制的临床研究结果。
尽管观察到只有少数冷凝集素(几乎均为具有抗I特异性的IgM分子)能在体外使人红细胞与人类血清(同源系统)发生溶血,但这些自身抗体中的绝大多数能够通过固定C1启动经典途径序列,并在较小程度上固定C4。IgM冷凝集素原则上激活补体的能力通过其在作为异源补体来源的动物血清存在下的溶血效率得以证明。除了冷凝集素结合的温度幅度外,对膜调节蛋白的可能干扰可能使某些冷凝集素在同源系统中具有溶血活性。
尽管溶血效率不高,但冷凝集素诱导的早期补体成分直至C3的固定会导致肝脏扣押使红细胞从循环中加速清除。然而,目前尚不清楚这些细胞在多大程度上被网状内皮系统清除,或者它们是否会回到循环中。取决于膜结合C3片段的数量,这些细胞甚至可能受到保护,免受进一步的冷凝集素诱导的补体攻击。