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骨髓内皮细胞通过红细胞生成素依赖性方式通过 Fcγ 受体 IIb2 摄取血源性免疫复合物。

Bone Marrow Endothelial Cells Take Up Blood-Borne Immune Complexes via Fcγ Receptor IIb2 in an Erythropoietin-Dependent Manner.

机构信息

Center for iPS Cell Research and Application, Laboratory of Immunobiology, Graduate School of Medicine, Kyoto University, Kyoto 606-8507, Japan; and.

Medical Innovation Center, Graduate School of Medicine, Kyoto University, Kyoto 606-8507, Japan.

出版信息

J Immunol. 2020 Oct 15;205(8):2008-2015. doi: 10.4049/jimmunol.1901101. Epub 2020 Sep 9.

Abstract

Immune complexes (ICs) in blood are efficiently removed mainly by liver reticuloendothelial systems consisting of sinusoidal endothelial cells and Kupffer cells expressing FcγR. The bone marrow (BM) also has sinusoidal vasculatures, and sinusoidal BM endothelial cells (BMECs) bear unique function, including hematopoietic niches and traffic regulation of hematopoietic cells. In this study, we found that sinusoidal BMECs express FcγRIIb2, which is markedly increased in anemic conditions or by the administration of erythropoietin (Epo) in healthy mice. BMECs expressed Epo receptor (EpoR), and the Epo-induced increase in FcγRIIb2 expression was abolished in :: transgenic mice, which lack EpoR in BMECs except for BM erythroblasts, suggesting the effect was directly mediated via EpoR on BMECs. Further, although BMECs hardly captured i.v.-injected soluble ICs in healthy mice, Epo administration induced a remarkable increase in the uptake of ICs in a FcγRIIb-dependent manner. Enhancement of the IC incorporation capacity by Epo was also observed in cultured BMECs in vitro, suggesting the direct effect of Epo on BMECs. Moreover, we found that i.v.-injected ICs in Epo-treated mice were more rapidly removed from the circulation than in PBS-treated mice. These results reveal a novel function of BMECs to efficiently remove circulating blood-borne ICs in an FcγRIIb2-mediated manner.

摘要

血液中的免疫复合物 (ICs) 主要通过由表达 FcγR 的窦状内皮细胞和枯否细胞组成的肝网状内皮系统有效清除。骨髓 (BM) 也具有窦状脉管系统,窦状 BM 内皮细胞 (BMECs) 具有独特的功能,包括造血龛和造血细胞的交通调节。在这项研究中,我们发现窦状 BMECs 表达 FcγRIIb2,在贫血条件下或在健康小鼠中给予促红细胞生成素 (Epo) 时其表达明显增加。BMECs 表达 Epo 受体 (EpoR),在缺乏 BMECs 中除了 BM 红细胞以外的 EpoR 的 :: 转基因小鼠中,Epo 诱导的 FcγRIIb2 表达增加被消除,表明该作用是通过 EpoR 直接介导的。此外,尽管在健康小鼠中 BMECs 几乎不摄取静脉内注射的可溶性 ICs,但 Epo 给药以 FcγRIIb 依赖性方式诱导 IC 摄取的显著增加。体外培养的 BMECs 中也观察到 Epo 增强 IC 摄取能力,表明 Epo 对 BMECs 的直接作用。此外,我们发现 Epo 处理小鼠中静脉内注射的 ICs 从循环中被更迅速地清除,而 PBS 处理小鼠则不是。这些结果揭示了 BMECs 通过 FcγRIIb2 介导的方式有效清除循环血液来源的 ICs 的新功能。

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