首页> 外文期刊>Blood: The Journal of the American Society of Hematology >The high-affinity human IgG receptor FcγRI (CD64) promotes IgG-mediated inflammation, anaphylaxis, and antitumor immunotherapy.
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The high-affinity human IgG receptor FcγRI (CD64) promotes IgG-mediated inflammation, anaphylaxis, and antitumor immunotherapy.

机译:高亲和力的人IgG受体FcγRI(CD64)促进IgG介导的炎症,过敏反应和抗肿瘤免疫疗法。

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摘要

Receptors for the Fc portion of IgG (FcγRs) are mandatory for the induction of various IgG-dependent models of autoimmunity, inflammation, anaphylaxis, and cancer immunotherapy. A few FcγRs have the ability to bind monomeric IgG: high-affinity mouse mFcγRI, mFcγRIV, and human hFcγRI. All others bind IgG only when aggregated in complexes or bound to cells or surfaces: low-affinity mouse mFcγRIIB and mFcγRIII and human hFcγRIIA/B/C and hFcγRIIIA/B. Although it has been proposed that high-affinity FcγRs are occupied by circulating IgG, multiple roles for mFcγRI and mFcγRIV have been reported in vivo. However, the potential roles of hFcγRI that is expressed on monocytes, macrophages, and neutrophils have not been reported. In the present study, we therefore investigated the role of hFcγRI in antibody-mediated models of disease and therapy by generating hFcγRI-transgenic mice deficient for multiple endogenous FcRs. hFcγRI was sufficient to trigger autoimmune arthritis and thrombocytopenia, immune complex-induced airway inflammation, and active and passive systemic anaphylaxis. We found monocyte/macrophages to be responsible for thrombocytopenia, neutrophils to be responsible for systemic anaphylaxis, and both cell types to be responsible for arthritis induction. Finally, hFcγRI was capable of mediating antibody-induced immunotherapy of metastatic melanoma. Our results unravel novel capabilities of human FcγRI that confirm the role of high-affinity IgG receptors in vivo.
机译:IgG Fc部分(FcγRs)的受体对于诱导各种IgG依赖性自身免疫,炎症,过敏反应和癌症免疫疗法的模型是必不可少的。一些FcγR具有结合单体IgG的能力:高亲和力小鼠mFcγRI,mFcγRIV和人hFcγRI。所有其他化合物仅在以复合物形式聚集或结合至细胞或表面时才结合IgG:低亲和力小鼠mFcγRIIB和mFcγRIII和人hFcγRIIA/ B / C和hFcγRIIIA/ B。尽管已经提出高亲和力的FcγR被循环的IgG占据,但是在体内已经报道了mFcγRI和mFcγRIV的多种作用。但是,尚未报道在单核细胞,巨噬细胞和嗜中性粒细胞上表达的hFcγRI的潜在作用。因此,在本研究中,我们通过产生缺乏多个内源性FcR的hFcγRI转基因小鼠,研究了hFcγRI在抗体介导的疾病和治疗模型中的作用。 hFcγRI足以引发自身免疫性关节炎和血小板减少症,免疫复合物诱导的气道炎症以及主动和被动全身性过敏反应。我们发现单核细胞/巨噬细胞负责血小板减少症,中性粒细胞负责全身性过敏反应,而两种细胞类型均负责诱导关节炎。最后,hFcγRI能够介导抗体诱导的转移性黑色素瘤免疫治疗。我们的研究结果揭示了人FcγRI的新颖功能,这些功能证实了高亲和力IgG受体在体内的作用。

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