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与红细胞补体受体(CR1)结合的免疫复合物的释放,特别提及I因子的作用。

Release of immune complexes bound to erythrocyte complement receptor (CR1), with particular reference to the role of factor I.

作者信息

Jepsen H H, Svehag S E, Jensenius J C, Sim R B

出版信息

Scand J Immunol. 1986 Aug;24(2):205-13. doi: 10.1111/j.1365-3083.1986.tb02087.x.

Abstract

The release of 125I-bovine serum albumin (BSA)-anti-BSA immune complexes (IC) bound to human erythrocyte complement receptors (E-CR1) was studied. IC were complement-solubilized in normal human serum (NHS), and reacted with human erythrocytes at conditions optimal for binding of the IC to E-CR1. E-CR1-bound IC could be released by the addition of NHS or purified factor I. Factor I-deficient or I-depleted serum mediated no release, and addition of purified factor I restored the release. Factor H was not required for the release of IC. The kinetics of IC release was influenced by the NHS concentration, the presence of EDTA, and the time of prior storage of the erythrocytes at 4 degrees C. NHS (1:5 to 1:10) in the presence of EDTA caused nearly maximal release within 10-20 min at 37 degrees C. In the absence of EDTA the NHS-induced IC release was markedly slower. IC released within the first 30 min showed significant rebinding to new E. The release of IC was not associated with loss of the IC binding activity of E-CR1. The NHS-mediated release of IC could be inhibited by rabbit anti-CR1 and by a mixture of protease inhibitors. Release induced by purified factor I was also inhibited by protease inhibitors. The affinity of IC binding to E-CR1 was reduced after cleavage of CR1-bound C3b-IC to iC3b-IC by factor I.

摘要

研究了与人类红细胞补体受体(E-CR1)结合的125I-牛血清白蛋白(BSA)-抗BSA免疫复合物(IC)的释放情况。IC在正常人血清(NHS)中被补体溶解,并在IC与E-CR1结合的最佳条件下与人红细胞反应。结合在E-CR1上的IC可通过添加NHS或纯化的I因子释放。缺乏I因子或I因子耗尽的血清不能介导释放,添加纯化的I因子可恢复释放。IC的释放不需要H因子。IC释放的动力学受NHS浓度、EDTA的存在以及红细胞在4℃预先储存的时间影响。在EDTA存在下,NHS(1:5至1:10)在37℃下10 - 20分钟内可导致几乎最大程度的释放。在没有EDTA的情况下,NHS诱导的IC释放明显较慢。在最初30分钟内释放的IC显示出与新的红细胞有显著的重新结合。IC的释放与E-CR1的IC结合活性丧失无关。NHS介导的IC释放可被兔抗CR1和蛋白酶抑制剂混合物抑制。纯化的I因子诱导的释放也被蛋白酶抑制剂抑制。当I因子将结合在CR1上的C3b-IC裂解为iC3b-IC后,IC与E-CR1的结合亲和力降低。

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