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NZB/W F1狼疮小鼠肝窦内皮细胞中的Fc受体:使用可溶性免疫球蛋白G免疫复合物和单克隆抗体(2.4G2)的组织学分析

Fc receptors in liver sinusoidal endothelial cells in NZB/W F1 lupus mice: a histological analysis using soluble immunoglobulin G-immune complexes and a monoclonal antibody (2.4G2).

作者信息

Ahmed S S, Muro H, Nishimura M, Kosugi I, Tsutsi Y, Shirasawa H

机构信息

Department of Pathology, Hamamatsu University School of Medicine, Japan.

出版信息

Hepatology. 1995 Jul;22(1):316-24. doi: 10.1002/hep.1840220143.

Abstract

In systemic lupus erythematosus accompanied by the abnormal appearance of circulating immune complexes (ICs), Fc gamma receptor (FcR)-mediated IC handling in macrophages including Kupffer cells has been shown previously. However, sinusoidal endothelial cells (SECs) largely ingest soluble immunoglobulin (Ig) G-ICs through FcRs. In this study, the character, antigenic expression, and activity (i.e., ligand-binding capacity of SEC FcRs in NZB/NZW F1 lupus and NZW nonautoimmune mice) were immunohistochemically analyzed using monoclonal antibody (MAb) 2.4G2 to FcRs and peroxidase-antiperoxidase IgG as a ligand on cryosections. MAb 2.4G2 stained SECs and blocked the ligand binding of SEC FcRs in both mice strains. The staining intensities with MAb 2.4G2 in SECs and the FcR activities in SECs alone and all sinusoidal cells in both mice strains reached their maximum values at the age of 5 months. Staining intensities in NZB/W F1 were significantly higher at 1 and 2 months and lower at 9 months than those in NZW. The number of Kupffer cells detected by MAb F4/80 to macrophages in both mice strains gradually increased until 5 months, but their number in NZB/W F1 at 9 months was twice as large as that in NZW. In conclusion, SEC FcRs in mice are low-affinity FcRs that react with MAb 2.4G2. The data of FcR activity suggest no impairment of the FcR-mediated IgG-IC binding on SECs in NZB/W F1 in early life.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

在伴有循环免疫复合物(ICs)异常出现的系统性红斑狼疮中,先前已显示巨噬细胞(包括库普弗细胞)中Fcγ受体(FcR)介导的IC处理过程。然而,肝血窦内皮细胞(SECs)主要通过FcRs摄取可溶性免疫球蛋白(Ig)G-ICs。在本研究中,使用针对FcRs的单克隆抗体(MAb)2.4G2和作为配体的过氧化物酶-抗过氧化物酶IgG,对NZB/NZW F1狼疮小鼠和NZW非自身免疫小鼠的肝血窦内皮细胞的特征、抗原表达及活性(即SECs FcRs的配体结合能力)进行了免疫组织化学分析。MAb 2.4G2可对两种小鼠品系的SECs进行染色,并阻断SECs FcRs的配体结合。两种小鼠品系中,单独的SECs以及所有肝血窦细胞中,MAb 2.4G2染色强度和SECs中的FcR活性在5月龄时达到最大值。NZB/W F1小鼠在1月龄和2月龄时的染色强度显著高于NZW小鼠,而在9月龄时则低于NZW小鼠。两种小鼠品系中,用针对巨噬细胞的MAb F4/80检测到的库普弗细胞数量在5月龄前逐渐增加,但NZB/W F1小鼠在9月龄时的库普弗细胞数量是NZW小鼠的两倍。总之,小鼠的SECs FcRs是与MAb 2.4G2反应的低亲和力FcRs。FcR活性数据表明,NZB/W F1小鼠早期生命中SECs上FcR介导的IgG-IC结合未受损。(摘要截短于250字)

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