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Allograft rejection is restrained by short-lived TIM-3 +PD-1 +Foxp3 + Tregs

机译:同种异体移植物排斥反应受到短命 TIM-3 +PD-1 +Foxp3 + Tregs 的抑制

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Tregs play a pivotal role in inducing and maintaining donor-specific transplant tolerance. The T cell immunoglobulin and mucin domain-3 protein (TIM-3) is expressed on many fully activated effector T cells. Along with program death 1 (PD-1), TIM-3 is used as a marker for exhausted effector T cells, and interaction with its ligand, galectin-9, leads to selective death of TIM-3 + cells. We report herein the presence of a galectin-9-sensitive CD4 +FoxP3 +TIM-3 + population of T cells, which arose from CD4 +FoxP3 +TIM-3 - proliferating T cells in vitro and in vivo and were often PD-1 +. These cells became very prominent among graft-infiltrating Tregs during allograft response. The frequency and number of TIM-3 + Tregs peaked at the time of graft rejection and declined thereafter. Moreover, these cells also arise in a tolerance-promoting donor-specific transfusion model, representing a pool of proliferating, donor-specific Tregs. Compared with TIM-3 - Tregs, TIM-3 + Tregs, which are often PD-1 + as well, exhibited higher in vitro effector function and more robust expression of CD25, CD39, CD73, CTLA-4, IL-10, and TGF-β but not galectin-9. However, these TIM-3 + Tregs did not flourish when passively transferred to newly transplanted hosts. These data suggest that a heretofore unrecognized graft-infiltrating, short-lived subset of Tregs can restrain rejection.
机译:Tregs 在诱导和维持供体特异性移植耐受性方面起着关键作用。T 细胞免疫球蛋白和粘蛋白结构域-3 蛋白 (TIM-3) 在许多完全激活的效应 T 细胞上表达。与程序死亡 1 (PD-1) 一起,TIM-3 被用作耗竭效应 T 细胞的标志物,与其配体半乳糖凝集素-9 的相互作用导致 TIM-3 + 细胞的选择性死亡。我们在此报告了半乳糖凝集素-9 敏感的 CD4 +FoxP3 +TIM-3 + T 细胞群的存在,其起源于 CD4 +FoxP3 +TIM-3 - 在体外和体内增殖的 T 细胞,通常是 PD-1+。在同种异体移植反应期间,这些细胞在移植物浸润的Tregs中变得非常突出。TIM-3 + Tregs 的频率和数量在移植物排斥时达到峰值,此后下降。此外,这些细胞也出现在促进耐受性的供体特异性输血模型中,代表了增殖的供体特异性Tregs池。与 TIM-3 - Tregs 相比,TIM-3 + Tregs(通常也是 PD-1+)表现出更高的体外效应功能和 CD25、CD39、CD73、CTLA-4、IL-10 和 TGF-β 的表达,但不包括半乳糖凝集素-9。然而,这些 TIM-3 + Tregs 在被动转移到新移植的宿主时并没有蓬勃发展。这些数据表明,迄今为止未被识别的移植物浸润、短命的Tregs亚群可以抑制排斥反应。

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