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首页> 外文期刊>British Journal of Dermatology >Transforming growth factor-beta1-induced CD4+CD25+ regulatory T cells in vitro reverse and prevent a murine lupus-like syndrome of chronic graft-versus-host disease.
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Transforming growth factor-beta1-induced CD4+CD25+ regulatory T cells in vitro reverse and prevent a murine lupus-like syndrome of chronic graft-versus-host disease.

机译:在体外转化生长因子-β1诱导的CD4 + CD25 +调节性T细胞逆转并预防慢性移植物抗宿主病的鼠类狼疮样综合征。

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BACKGROUND: The suppressive mechanism of CD4+CD25+ regulatory T cells (Tregs) is poorly understood. It is also not known how to obtain enough peripheral Tregs, and how to make them effective in ameliorating a murine lupus-like syndrome of chronic graft-versus-host disease (cGVHD). OBJECTIVES: To confirm the contribution of transforming growth factor (TGF)-beta1 in the function of CD4+CD25+ Tregs in vitro, and to identify in vivo suppressive effects of different Tregs generated through TGF-beta1. METHODS: Suppressive effects of freshly isolated CD4+CD25+ Tregs, TGF-beta1-expanded CD4+CD25+ Tregs (eTregs) and TGF-beta1-induced CD4+CD25+ Tregs (iTregs) in vitro were assessed. Reverse transcription-polymerase chain reaction was used to detect Foxp3. The respective roles that different Tregs might play in controlling murine lupus-like syndrome of cGVHD were analysed. RESULTS: TGF-beta1 was necessary for expanding the existing CD4+CD25+ Tregs in vitro, as well as converting peripheral CD4+CD25- T cells to CD4+CD25+ Tregs through upregulating CD25 and Foxp3. These eTregs and iTregs had a suppressive effect similar to that of freshly isolated CD4+CD25+ Tregs. The inhibitory function of iTregs could be partially blocked by anti-TGF-beta1. Importantly, it was revealed for the first time that both eTregs and iTregs had an inhibitory effect on reversing the morbidity of mice that had already developed anti-dsDNA, and iTregs gave more suppression than eTregs. Besides, iTregs could prevent the onset and slow the progress of disease in a significantly dose-dependent manner. CONCLUSIONS: Results indicate that TGF-beta1 signalling is required to maintain the suppression of CD4+CD25+ Tregs in vitro and in vivo. Together, this study suggests a possible therapeutic role for iTregs in the treatment of murine lupus-like syndrome of cGVHD.
机译:背景:人们对CD4 + CD25 +调节性T细胞(Tregs)的抑制机制了解甚少。还不知道如何获得足够的外周Treg,以及如何使它们有效改善慢性移植物抗宿主病(cGVHD)的鼠类狼疮样综合征。目的:证实转化生长因子(TGF)-β1在体外对CD4 + CD25 + Tregs的功能的贡献,并确定体内通过TGF-beta1产生的不同Tregs的抑制作用。方法:评估了新鲜分离的CD4 + CD25 + Treg,TGF-β1扩增的CD4 + CD25 + Treg(eTreg)和TGF-β1诱导的CD4 + CD25 + Treg(iTreg)的抑制作用。逆转录-聚合酶链反应用于检测Foxp3。分析了不同的Tregs在控制cGVHD鼠类狼疮样综合征中可能发挥的各自作用。结果:TGF-beta1对于体外扩增现有的CD4 + CD25 + Treg,以及通过上调CD25和Foxp3将周围的CD4 + CD25-T细胞转化为CD4 + CD25 + Treg是必需的。这些eTreg和iTreg的抑制作用与新鲜分离的CD4 + CD25 + Treg相似。 iTregs的抑制功能可能会被抗TGF-beta1部分阻断。重要的是,首次揭示了eTregs和iTregs都具有逆转已经产生抗dsDNA的小鼠发病率的抑制作用,而iTregs比eTregs具有更多的抑制作用。此外,iTregs可以以显着的剂量依赖性方式预防疾病的发作并减缓疾病的进展。结论:结果表明,在体外和体内都需要TGF-beta1信号传导来维持对CD4 + CD25 + Treg的抑制。总之,这项研究表明,iTregs在治疗cGVHD鼠类狼疮样综合征中可能具有治疗作用。

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