首页> 美国卫生研究院文献>The Journal of Experimental Medicine >A Role for Mac-1 (CDIIb/CD18) in Immune Complex–stimulated Neutrophil Function In Vivo: Mac-1 Deficiency Abrogates Sustained Fcγ Receptor–dependent Neutrophil Adhesion and Complement-dependent Proteinuria in Acute Glomerulonephritis
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A Role for Mac-1 (CDIIb/CD18) in Immune Complex–stimulated Neutrophil Function In Vivo: Mac-1 Deficiency Abrogates Sustained Fcγ Receptor–dependent Neutrophil Adhesion and Complement-dependent Proteinuria in Acute Glomerulonephritis

机译:Mac-1(CDIIb / CD18)在体内免疫复合物刺激的中性粒细胞功能中的作用:Mac-1缺乏症可减轻急性肾小球性肾炎患者持续的Fcγ受体依赖性中性粒细胞粘附和补体依赖性蛋白尿。

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摘要

Mac-1 (αmβ2), a leukocyte adhesion receptor, has been shown in vitro to functionally interact with Fcγ receptors to facilitate immune complex (IC)–stimulated polymorphonuclear neutrophil (PMN) functions. To investigate the relevance of Mac-1–FcγR interactions in IC-mediated injury in vivo, we induced a model of Fc-dependent anti–glomerular basement membrane (GBM) nephritis in wild-type and Mac-1–deficient mice by the intravenous injection of anti-GBM antibody. The initial glomerular PMN accumulation was equivalent in Mac-1 null and wild-type mice, but thereafter increased in wild-type and decreased in mutant mice. The absence of Mac-1 interactions with obvious ligands, intercellular adhesion molecule 1 (ICAM-1), and C3 complement, is not responsible for the decrease in neutrophil accumulation in Mac-1– deficient mice since glomerular PMN accumulation in mice deficient in these ligands was comparable to those in wild-type mice. In vitro studies showed that spreading of Mac-1–null PMNs to IC-coated dishes was equivalent to that of wild-type PMNs at 5–12 min but was markedly reduced thereafter, and was associated with an inability of mutant neutrophils to redistribute filamentous actin. This suggests that in vivo, Mac-1 is not required for the initiation of Fc-mediated PMN recruitment but that Mac-1–FcγR interactions are required for filamentous actin reorganization leading to sustained PMN adhesion, and this represents the first demonstration of the relevance of Mac-1–FcγR interactions in vivo. PMN-dependent proteinuria, maximal in wild-type mice at 8 h, was absent in Mac-1 mutant mice at all time points. Complement C3–deficient mice also had significantly decreased proteinuria compared to wild-type mice. Since Mac-1 on PMNs is the principal ligand for ic3b, an absence of Mac-1 interaction with C3 probably contributed to the abrogation of proteinuria in Mac-1–null mice.
机译:Mac-1(αmβ2)是白细胞粘附受体,已在体外与Fcγ受体发生功能性相互作用,以促进免疫复合物(IC)刺激的多形核中性粒细胞(PMN)的功能。为了研究Mac-1–FcγR相互作用在IC介导的体内损伤中的相关性,我们通过静脉注射诱导了野生型和Mac-1缺陷型小鼠中Fc依赖性抗肾小球基底膜(GBM)肾炎模型注射抗GBM抗体。最初的肾小球PMN积累在Mac-1 null和野生型小鼠中相当,但随后在野生型中增加而在突变型小鼠中减少。没有Mac-1与明显的配体,细胞间粘附分子1(ICAM-1)和C3补体的相互作用,并不导致Mac-1缺陷小鼠中性粒细胞积累的减少,因为缺乏这些的小鼠肾小球PMN积累配体与野生型小鼠相当。体外研究表明,在Mac上,没有Mac-1的PMN在5-12分钟内扩散到与IC型培养皿相当,但此后显着减少,这与突变的中性粒细胞不能重新分布丝状有关肌动蛋白。这表明在体内,启动Fc介导的PMN募集不需要Mac-1,但是,丝状肌动蛋白重组导致持续的PMN粘附需要Mac-1–FcγR相互作用,这代表了相关性的首次证明。 Mac-1–FcγR在体内的相互作用。在所有时间点,在Mac-1突变型小鼠中均未出现PMN依赖性蛋白尿(在野生型小鼠中最大,出现8小时)。与野生型小鼠相比,补体C3缺陷型小鼠的蛋白尿也明显减少。由于PMN上的Mac-1是ic3b的主要配体,因此不存在Mac-1与C3的相互作用可能会导致无Mac-1小鼠的蛋白尿消失。

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