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单细胞测序揭示了 pTregs 和扩增的 iTregs 的转录组和 TCR 特征。

Single-Cell Sequencing Reveals the Transcriptome and TCR Characteristics of pTregs and Expanded iTregs.

机构信息

Department of Biotherapy, Tianjin Medical University Cancer Institute and Hospital, Tianjin, China.

National Clinical Research Center for Cancer, Tianjin, China.

出版信息

Front Immunol. 2021 Mar 31;12:619932. doi: 10.3389/fimmu.2021.619932. eCollection 2021.

Abstract

Regulatory T cells (Tregs) play a critical role in the maintenance of immune tolerance and tumor evasion. However, the relative low proportion of these cells in peripheral blood and tissues has hindered many studies. We sought to establish a rapamycin-based Treg expansion procedure in patients diagnosed with colorectal cancer and perform single-cell sequencing to explore the characteristics of Treg cells. CD25+ cells enriched from peripheral blood mononuclear cells (PBMC) of colorectal tumor patients were cultured in X-VIVO15 medium, supplemented with 5% human AB serum, L-glutamine, rapamycin, interleukin-2 (IL-2), and Dynabeads human Treg expander for 21 days to expand Tregs. Treg cells with satisfactory phenotype and function were successfully expanded from CD4+CD25+ cells in patients with colorectal cancer. The median expansion fold was 75 (range, 20-105-fold), and >90.0% of the harvest cells were CD4+CD25+CD127 cells. The ratio of CD4+CD25+Foxp3+ cells exceeded 60%. Functional assays showed that iTregs significantly inhibited CD8+T cell proliferation . Single-cell sequencing showed that the transcriptome of pTreg (CD4+CD25+CD127 cells isolated from PBMC of colorectal cancer patients) and iTreg (CD4+CD25+CD127 cells expanded according to the above regimen) cells were interlaced. pTregs exhibited enhanced suppressive function, whereas iTregs exhibited increased proliferative capacity. TCR repertoire analysis indicated minimal overlap between pTregs and iTregs. Pseudo-time trajectory analysis of Tregs revealed that pTregs were a continuum composed of three main branches: activated/effector, resting and proliferative Tregs. In contrast, expanded iTregs were a mixture of proliferating and activated/effector cells. The expression of trafficking receptors was also different in pTregs and iTregs. Various chemokine receptors were upregulated in pTregs. Activated effector pTregs overexpressed the chemokine receptor CCR10, which was not expressed in iTregs. The chemokine CCL28 was overexpressed in colorectal cancer and associated with poor prognosis. CCR10 interacted with CCL28 to mediate the recruitment of Treg into tumors and accelerated tumor progression. Depletion of CCR10+Treg cells from tumor microenvironment (TME) could be used as an effective treatment strategy for colorectal cancer patients. Our data distinguished the transcriptomic characteristics of different subsets of Treg cells and revealed the context-dependent functions of different populations of Treg cells, which was crucial to the development of alternative therapeutic strategies for Treg cells in autoimmune disease and cancer.

摘要

调节性 T 细胞(Tregs)在维持免疫耐受和肿瘤逃逸中发挥着关键作用。然而,外周血和组织中这些细胞的相对低比例阻碍了许多研究。我们试图在诊断为结直肠癌的患者中建立一种基于雷帕霉素的 Treg 扩增程序,并进行单细胞测序以探索 Treg 细胞的特征。从结直肠肿瘤患者的外周血单个核细胞(PBMC)中富集 CD25+细胞,在 X-VIVO15 培养基中培养,补充 5%人 AB 血清、L-谷氨酰胺、雷帕霉素、白细胞介素-2(IL-2)和 Dynabeads 人 Treg 扩增剂,培养 21 天以扩增 Tregs。成功地从结直肠癌患者的 CD4+CD25+细胞中扩增出具有满意表型和功能的 Treg 细胞。中位数扩增倍数为 75(范围,20-105 倍),收获细胞中>90.0%为 CD4+CD25+CD127 细胞。CD4+CD25+Foxp3+细胞的比例超过 60%。功能测定表明,iTregs 显著抑制 CD8+T 细胞增殖。单细胞测序显示,pTreg(从结直肠癌患者 PBMC 中分离的 CD4+CD25+CD127 细胞)和 iTreg(根据上述方案扩增的 CD4+CD25+CD127 细胞)的转录组相互交织。pTregs 表现出增强的抑制功能,而 iTregs 表现出增加的增殖能力。TCR 库分析表明 pTregs 和 iTregs 之间几乎没有重叠。Treg 的拟时轨迹分析表明,pTregs 是由三个主要分支组成的连续体:激活/效应 Treg、静止 Treg 和增殖 Treg。相比之下,扩增的 iTregs 是增殖和激活/效应细胞的混合物。T 细胞转运受体的表达在 pTregs 和 iTregs 中也不同。pTregs 中上调了各种趋化因子受体。激活的效应 pTregs 过度表达趋化因子受体 CCR10,而 iTregs 中不表达。结直肠癌中过度表达趋化因子 CCL28,与预后不良相关。CCR10 与 CCL28 相互作用,介导 Treg 细胞向肿瘤募集,并加速肿瘤进展。从肿瘤微环境(TME)中耗尽 CCR10+Treg 细胞可作为结直肠癌患者的有效治疗策略。我们的数据区分了不同 Treg 细胞亚群的转录组特征,并揭示了不同群体 Treg 细胞的上下文相关功能,这对于开发自身免疫性疾病和癌症中 Treg 细胞的替代治疗策略至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cadc/8044526/baa3903ca0f7/fimmu-12-619932-g0001.jpg

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