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HLA class I antibodies trigger increased adherence of monocytes to endothelial cells by eliciting an increase in endothelial P-selectin and depending on subclass by engaging FcγRs

机译:HLA I类抗体通过引起内皮细胞P选择素的增加以及取决于FcγR的结合而触发单核细胞对内皮细胞粘附的增加

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摘要

Antibody-mediated rejection of solid organ transplants is characterized by intragraft macrophages. It is incompletely understood how donor specific antibody binding to graft endothelium promotes monocyte adhesion, and what, if any, contribution is made by the Fc region of the antibody. We investigated the mechanisms underlying monocyte recruitment by HLA class I antibody-activated endothelium. We used a panel of murine monoclonal antibodies of different subclasses to crosslink HLA I on human aortic, venous and microvascular endothelial cells, and measured the binding of human monocytic cell lines and peripheral blood monocytes. Both anti-HLA I murine IgG1 and mIgG2a induced endothelial P-selectin, which was required for monocyte adhesion to endothelium irrespective of subclass. Mouse IgG2a but not mIgG1 could bind human FcγRs. Accordingly, HLA I mIgG2a but not mIgG1 treatment of endothelial cells significantly augmented recruitment, predominantly through FcγRI, and, to a lesser extent, FcγRIIa. Moreover, HLA I mIgG2a promoted firm adhesion of monocytes to ICAM-1 through Mac-1, which may explain the prominence of monocytes during antibody mediated rejection. We confirmed these observations using human HLA allele specific monoclonal antibodies and IgG purified from transplant patient sera. HLA I antibodies universally elicit endothelial exocytosis leading to monocyte adherence, implying that P-selectin is a putative therapeutic target to prevent macrophage infiltration during antibody-mediated rejection. Importantly, the subclass of donor specific antibody may influence its pathogenesis. These results imply that hIgG1 and hIgG3 should have a greater capacity to trigger monocyte infiltration into the graft than IgG2 or IgG4 due to enhancement by FcγR interactions.
机译:实体器官移植的抗体介导排斥反应的特征在于移植体内巨噬细胞。尚未完全理解供体特异性抗体与移植物内皮的结合如何促进单核细胞粘附,以及抗体的Fc区有何贡献(如果有的话)。我们调查了由HLA I类抗体激活的内皮细胞募集单核细胞的机制。我们使用一组不同亚类的鼠类单克隆抗体在人类主动脉,静脉和微血管内皮细胞上交联HLA I,并测量了人类单核细胞系和外周血单核细胞的结合。抗HLA I鼠IgG1和mIgG2a均可诱导内皮细胞P-选择素,这是单核细胞粘附于内皮所必需的,而与亚类无关。小鼠IgG2a而非mIgG1可以结合人FcγR。因此,HLA I mIgG2a而非内皮细胞的mIgG1处理显着增加了募集,主要是通过FcγRI,在较小程度上增加了FcγRIIa。此外,HLA I mIgG2a促进单核细胞通过Mac-1牢固粘附于ICAM-1,这可能解释了抗体介导的排斥过程中单核细胞的突出。我们使用人类HLA等位基因特异性单克隆抗体和从移植患者血清中纯化的IgG证实了这些观察结果。 HLA I抗体普遍引起内皮细胞胞吐作用,导致单核细胞粘附,这意味着P-选择蛋白是在抗体介导的排斥反应中防止巨噬细胞浸润的推定治疗靶标。重要的是,供体特异性抗体的亚类可能影响其发病机理。这些结果暗示,由于FcγR相互作用的增强,hIgG1和hIgG3应具有比IgG2或IgG4更大的触发单核细胞浸入移植物中的能力。

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