Nash J T, Taylor P R, Botto M, Norsworthy P J, Davies K A, Walport M J
Rheumatology Section, Division of Medicine, Imperial College School of Medicine, London, UK.
Clin Exp Immunol. 2001 Feb;123(2):196-202. doi: 10.1046/j.1365-2249.2001.01459.x.
Complement and Fcgamma receptors are known to mediate the processing of immune complexes (IC), and abnormalities in these mechanisms may predispose to the development of lupus. We explored the processing of IC in mice deficient in complement component C1q. 125I-labelled IC comprising Hepatitis B surface antigen (HBsAg)/human anti-HBsAg (HBsAg/Ab) were injected intravenously and the sites of IC clearance determined by direct counting of organ uptake at various time points. The liver and spleen were the main sites of IC uptake in all mice. The splenic uptake of IC was significantly reduced in the C1q-deficient mice compared with the control mice. C1q-deficient mice also exhibited an initial accelerated hepatic uptake of IC similar to that seen in human subjects with hypocomplementaemia. The hepatic localization of IC at later time points was similar in both groups of mice. These data in mice are consistent with previous observations in humans that confirm that the classical pathway of complement plays an important role in the appropriate processing of IC in vivo.
已知补体和Fcγ受体可介导免疫复合物(IC)的处理,这些机制异常可能易患狼疮。我们研究了补体成分C1q缺陷小鼠中IC的处理情况。静脉注射包含乙肝表面抗原(HBsAg)/人抗HBsAg(HBsAg/Ab)的125I标记的IC,并通过在不同时间点直接计数器官摄取量来确定IC清除部位。肝脏和脾脏是所有小鼠中IC摄取的主要部位。与对照小鼠相比,C1q缺陷小鼠脾脏对IC的摄取显著减少。C1q缺陷小鼠还表现出最初肝脏对IC的摄取加速,类似于低补体血症人类受试者的情况。两组小鼠在后期时间点IC的肝脏定位相似。小鼠中的这些数据与先前在人类中的观察结果一致,证实补体经典途径在体内IC的适当处理中起重要作用。