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人类淋巴结中T细胞亚群的分布。

Distribution of T cell subsets in human lymph nodes.

作者信息

Poppema S, Bhan A K, Reinherz E L, McCluskey R T, Schlossman S F

出版信息

J Exp Med. 1981 Jan 1;153(1):30-41. doi: 10.1084/jem.153.1.30.

Abstract

A series of T cell-specific monoclonal antibodies was used to determine the location of T lymphocyte subpopulations in frozen sections of human lymph nodes by means of an immunoperoxidase technique. The majority of cells in the paracortical regions were reactive with anti-T1 and anti-T3 antibodies, which define all mature peripheral T cells. In contrast, the majority of cells within primary follicles were unreactive with anti-T1 and anti-T3 antibodies, but were reactive with anti-Ia and anti-IgM antibodies. In addition, a substantial number of T1+, T3+ cells were found in the germinal centers of secondary follicles on the capsular side. The vast majority of T1+, T3+ cells in the paracortex and the follicles were reactive with anti-T4 antibody, which defines inducer/helper T cells. Only a minority of cells in these areas were reactive with anti-T5 and anti-T8 antibodies, which define cytotoxic/suppressor cells. No lymphocytes were stained with anti-T6 antibody, which reacts with a majority of thymocytes but not with peripheral T cells. Scattered cells in the paracortex showed staining for Ia antigen in an irregular dendritic pattern. The findings demonstrate that the major T cell population found within human lymph node bears the mature T1+, T3+, T4+ phenotype characteristic of inducer T cells. Moreover, the location of this population indicates that they play a role in the induction of B cell differentiation in vivo.

摘要

利用一系列T细胞特异性单克隆抗体,通过免疫过氧化物酶技术确定人淋巴结冰冻切片中T淋巴细胞亚群的位置。副皮质区的大多数细胞与抗T1和抗T3抗体发生反应,这两种抗体可识别所有成熟的外周T细胞。相比之下,初级滤泡内的大多数细胞与抗T1和抗T3抗体不发生反应,但与抗Ia和抗IgM抗体发生反应。此外,在被膜侧次级滤泡的生发中心发现大量T1 +、T3 +细胞。副皮质区和滤泡中的绝大多数T1 +、T3 +细胞与抗T4抗体发生反应,该抗体可识别诱导/辅助性T细胞。这些区域中只有少数细胞与抗T5和抗T8抗体发生反应,这两种抗体可识别细胞毒性/抑制性细胞。没有淋巴细胞被抗T6抗体染色,该抗体与大多数胸腺细胞发生反应,但不与外周T细胞发生反应。副皮质区散在的细胞呈现不规则树突状的Ia抗原染色。这些发现表明,在人淋巴结中发现的主要T细胞群体具有诱导性T细胞特有的成熟T1 +、T3 +、T4 +表型特征。此外,该群体的位置表明它们在体内B细胞分化的诱导中发挥作用。

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