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通过单细胞质谱流式细胞术定义的人类外周辅助性T细胞和调节性T细胞的特征与多样性

Identity and Diversity of Human Peripheral Th and T Regulatory Cells Defined by Single-Cell Mass Cytometry.

作者信息

Kunicki Matthew A, Amaya Hernandez Laura C, Davis Kara L, Bacchetta Rosa, Roncarolo Maria-Grazia

机构信息

Division of Stem Cell Transplantation and Regenerative Medicine, Department of Pediatrics, Stanford University, Stanford, CA 94305.

Institute for Stem Cell Biology and Regenerative Medicine, Stanford University, Stanford, CA 94305; and.

出版信息

J Immunol. 2018 Jan 1;200(1):336-346. doi: 10.4049/jimmunol.1701025. Epub 2017 Nov 27.

Abstract

Human CD3CD4 Th cells, FOXP3 T regulatory (Treg) cells, and T regulatory type 1 (Tr1) cells are essential for ensuring peripheral immune response and tolerance, but the diversity of Th, Treg, and Tr1 cell subsets has not been fully characterized. Independent functional characterization of human Th1, Th2, Th17, T follicular helper (Tfh), Treg, and Tr1 cells has helped to define unique surface molecules, transcription factors, and signaling profiles for each subset. However, the adequacy of these markers to recapitulate the whole CD3CD4 T cell compartment remains questionable. In this study, we examined CD3CD4 T cell populations by single-cell mass cytometry. We characterize the CD3CD4 Th, Treg, and Tr1 cell populations simultaneously across 23 memory T cell-associated surface and intracellular molecules. High-dimensional analysis identified several new subsets, in addition to the already defined CD3CD4 Th, Treg, and Tr1 cell populations, for a total of 11 Th cell, 4 Treg, and 1 Tr1 cell subsets. Some of these subsets share markers previously thought to be selective for Treg, Th1, Th2, Th17, and Tfh cells, including CD194 (CCR4)FOXP3 Treg and CD183 (CXCR3)T-bet Th17 cell subsets. Unsupervised clustering displayed a phenotypic organization of CD3CD4 T cells that confirmed their diversity but showed interrelation between the different subsets, including similarity between Th1-Th2-Tfh cell populations and Th17 cells, as well as similarity of Th2 cells with Treg cells. In conclusion, the use of single-cell mass cytometry provides a systems-level characterization of CD3CD4 T cells in healthy human blood, which represents an important baseline reference to investigate abnormalities of different subsets in immune-mediated pathologies.

摘要

人类CD3CD4 Th细胞、FOXP3调节性T(Treg)细胞和1型调节性T(Tr1)细胞对于确保外周免疫反应和耐受性至关重要,但Th、Treg和Tr1细胞亚群的多样性尚未得到充分表征。对人类Th1、Th2、Th17、滤泡辅助性T(Tfh)、Treg和Tr1细胞进行独立的功能表征,有助于确定每个亚群独特的表面分子、转录因子和信号特征。然而,这些标志物能否概括整个CD3CD4 T细胞区室仍存在疑问。在本研究中,我们通过单细胞质谱流式细胞术检测了CD3CD4 T细胞群体。我们同时对23种记忆T细胞相关的表面和细胞内分子进行了CD3CD4 Th、Treg和Tr1细胞群体的表征。高维分析除了已定义的CD3CD4 Th、Treg和Tr1细胞群体外,还鉴定出了几个新的亚群,总共11个Th细胞亚群、4个Treg细胞亚群和1个Tr1细胞亚群。其中一些亚群共享以前被认为对Treg、Th1、Th2、Th17和Tfh细胞具有选择性的标志物,包括CD194(CCR4)FOXP3 Treg和CD183(CXCR3)T-bet Th17细胞亚群。无监督聚类显示了CD3CD4 T细胞的表型组织,证实了它们的多样性,但也显示了不同亚群之间的相互关系,包括Th1-Th2-Tfh细胞群体与Th17细胞之间的相似性,以及Th2细胞与Treg细胞之间的相似性。总之,单细胞质谱流式细胞术的应用为健康人血液中的CD3CD4 T细胞提供了系统水平的表征,这是研究免疫介导疾病中不同亚群异常的重要基线参考。

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