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首页> 外文期刊>The Journal of Immunology: Official Journal of the American Association of Immunologists >Abnormal immune complex processing and spontaneous glomerulonephritis in complement factor H-deficient mice with human complement receptor 1 on erythrocytes.
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Abnormal immune complex processing and spontaneous glomerulonephritis in complement factor H-deficient mice with human complement receptor 1 on erythrocytes.

机译:红细胞中具有人类补体受体1的补体因子H缺陷型小鼠中异常的免疫复合物加工和自发性肾小球肾炎。

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摘要

Complement receptor 1 (CR1) on human erythrocytes (Es) and complement factor H (CFH) on rodent platelets perform immune adherence, which is a function that allows the processing of immune complexes (ICs) bearing C3 by the mononuclear phagocyte system. Similar immune adherence occurs in the glomerular podocyte by CR1 in humans and CFH in rodents. As a model for human IC processing, we studied transgenic mice lacking CFH systemically but with human CR1 on Es. These CR1(hu)Tg/CFH(-/-) mice spontaneously developed proliferative glomerulonephritis, which was accelerated in a chronic serum sickness model by active immunization with heterologous apoferritin. ICs containing Ag, IgG and C3 bound to Es in CR1(hu)Tg/CFH(-/-) mice. In this setting, there was increased IC deposition in glomeruli, attributable to the presence of CR1 on Es, together with the absence of CFH on platelets and podocytes. In the absence of plasma CFH, the accumulated ICs activated complement, which led to spontaneous and chronic serum sickness-induced proliferative glomerulonephritis. These findings illustrate the complexities of complement-dependent IC processing by blood cells and in the glomerulus, and the importance of CFH as a plasma complement regulator.
机译:人类红细胞(Es)上的补体受体1(CR1)和啮齿类动物血小板上的补体因子H(CFH)执行免疫粘附,该功能允许单核吞噬细胞系统处理带有C3的免疫复合物(IC)。人体的CR1和啮齿动物的CFH在肾小球足细胞中也发生了类似的免疫粘附。作为人类IC处理的模型,我们系统研究了缺乏CFH但在Es上具有人类CR1的转基因小鼠。这些CR1(hu)Tg / CFH(-/-)小鼠自发发展成增生性肾小球肾炎,在慢性血清病模型中,通过异源载铁蛋白的主动免疫可使其加速。包含Ag,IgG和C3的IC与CR1(hu)Tg / CFH(-/-)小鼠中的Es结合。在这种情况下,肾小球中IC沉积增加,这归因于Es上存在CR1,以及血小板和足细胞上没有CFH。在没有血浆CFH的情况下,累积的ICs激活补体,从而导致自发性和慢性血清病引起的增生性肾小球肾炎。这些发现说明了血细胞和肾小球中依赖补体的IC处理的复杂性,以及CFH作为血浆补体调节剂的重要性。

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