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首页> 外文期刊>Clinical immunology: The official journal of the Clinical Immunology Society >Ethylenecarbodiimide-coupled allogeneic antigen presenting cells induce human CD4+ regulatory T cells.
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Ethylenecarbodiimide-coupled allogeneic antigen presenting cells induce human CD4+ regulatory T cells.

机译:乙烯碳二亚胺偶联的同种异体抗原呈递细胞诱导人CD4 +调节性T细胞。

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Adoptive transfer of naturally occurring CD4(+)CD25(+) regulatory T cells can tolerize transplantation alloresponses in animal models. However isolation of these cells in sufficient numbers from humans is cumbersome and prone to contamination with alloreactive CD25(+) T cells. Incubation of ethylenecarbodiimide-coupled antigen presenting cells (APC) with naive T cells and antigen has been shown to induce tolerance in various experimental models. We therefore investigated whether ECDI-coupled allogeneic APC were able to induce an expandable human CD4(+) Treg population. CD4(+) and CD4(+) CD25(-) cells cultured for 5 days with ECDI-treated human PBMC exhibited potent suppressive capacity in a mixed lymphocyte reaction. Induction of these ECDI-Tregs was associated with up-regulation of Foxp3 mRNA and protein expression and they maintained high expression of CD62L and CD27 as well as low CD127 expression. ECDI-treated APC displayed reduced expression of the co-stimulatory signaling molecules CD40 and CD80,and failed to stimulate proliferation and cytokine secretion in co-cultured CD4(+) T cells. Restimulation in the presence of rapamycin and hrIL-2 led to expansion of ECDI-Tregs with increasing Foxp3 levels and suppressive activity significantly higher than expanded naturally occurring CD4(+)CD25(+) Tregs. In summary these findings support the hypothesis that ECDI-coupled APC can convert naive CD4(+) T cells into functional Tregs with different phenotypic characteristics than naturally occurring CD4(+)CD25(+) Tregs. These inducible Tregs could provide a novel approach that might facilitate the translation of ex vivo generated and expanded Tregs into clinical settings.
机译:自然发生的CD4(+)CD25(+)调节性T细胞的过继转移可以耐受动物模型中的移植变态反应。但是,从人体内分离出足够数量的这些细胞很麻烦,并且容易被同种反应性CD25(+)T细胞污染。在各种实验模型中,已显示将乙二碳二亚胺偶联的抗原呈递细胞(APC)与天然T细胞和抗原一起孵育可诱导耐受性。因此,我们调查了ECDI耦合的同种异体APC是否能够诱导可扩展的人类CD4(+)Treg种群。用ECDI处理的人PBMC培养5天的CD4(+)和CD4(+)CD25(-)细胞在混合淋巴细胞反应中显示出强大的抑制能力。这些ECDI-Tregs的诱导与Foxp3 mRNA和蛋白表达的上调相关,并且它们维持CD62L和CD27的高表达以及CD127的低表达。 ECDI处理的APC显示共刺激信号分子CD40和CD80的表达降低,并且未能刺激共培养的CD4(+)T细胞的增殖和细胞因子分泌。雷帕霉素和hrIL-2的存在下的再刺激导致ECDI-Tregs的扩增与Foxp3水平的增加和抑制活性明显高于扩增的天然CD4(+)CD25(+)Tregs。总而言之,这些发现支持这样的假设,即ECDI偶联的APC可以将天然CD4(+)T细胞转化为功能性Treg,而Treg具有不同于天然CD4(+)CD25(+)Treg的表型特征。这些可诱导的Treg可提供新颖的方法,可促进离体产生和扩增的Tregs向临床环境的翻译。

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