首页> 外文期刊>Journal of the American Society of Nephrology: JASN >A novel mechanism of action for anti-thymocyte globulin: induction of CD4+CD25+Foxp3+ regulatory T cells.
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A novel mechanism of action for anti-thymocyte globulin: induction of CD4+CD25+Foxp3+ regulatory T cells.

机译:抗胸腺细胞球蛋白的新作用机制:诱导CD4 + CD25 + Foxp3 +调节性T细胞。

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摘要

T cell-depleting agents are being tested as part of clinical tolerance strategies in humans with autoimmunity and transplantation. The immunosuppressive activity of anti-thymocyte globulin (ATG) has been thought to result primarily from depletion of peripheral lymphocytes. Herein is reported for the first time that ATG but not anti-CD52 mAb (alemtuzumab) or the IL-2R antagonists causes rapid and sustained expansion of CD4+CD25+ T cells when cultured with human peripheral blood lymphocytes. These cells display enhanced expression of the regulatory markers glucocorticoid-induced TNF receptor, cytotoxic T lymphocyte-associated antigen-4 (CTLA-4), and forkhead box P3 and efficiently suppress a direct alloimmune response of the original responder lymphocytes. It is interesting that the cells do not suppress memory responses to the recall antigen mumps. Ex vivo expansion of regulatory T cells is due mainly to conversion of CD4+CD25- into CD4+CD25+ T cells and to a lesser degree to proliferation of natural CD4+CD25+ T cells. The induction of regulatory T cells depends on production of Th2 cytokines in the generating cultures. These novel data suggest that ATG not only may promote expansion/generation of regulatory T cells but also may be useful in future ex vivo expansion of these cells for cellular therapy in autoimmunity and clinical transplantation.
机译:在具有自身免疫性和移植性的人类中,正在测试T细胞耗竭剂作为临床耐受策略的一部分。人们认为抗胸腺细胞球蛋白(ATG)的免疫抑制活性主要是由外周淋巴细胞的消耗引起的。本文首次报道,当与人外周血淋巴细胞一起培养时,ATG而非抗CD52 mAb(alemtuzumab)或IL-2R拮抗剂可引起CD4 + CD25 + T细胞快速且持续的扩增。这些细胞显示出调节标记物糖皮质激素诱导的TNF受体,细胞毒性T淋巴细胞相关抗原4(CTLA-4)和叉头盒P3的增强表达,并有效地抑制了原始应答者淋巴细胞的直接同种免疫应答。有趣的是,细胞不会抑制对召回抗原性腮腺炎的记忆反应。调节性T细胞的离体扩增主要归因于CD4 + CD25-向CD4 + CD25 + T细胞的转化以及较小程度的天然CD4 + CD25 + T细胞的增殖。调节性T细胞的诱导取决于产生的培养物中Th2细胞因子的产生。这些新颖的数据表明,ATG不仅可以促进调节性T细胞的扩增/生成,而且在将来这些细胞的离体扩增中可用于自身免疫和临床移植中的细胞治疗。

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