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首页> 外文期刊>Clinical and Experimental Immunology: An Official Journal of the British Society for Immunology >Translational mini-review series on Th17 cells: CD4 T helper cells: functional plasticity and differential sensitivity to regulatory T cell-mediated regulation.
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Translational mini-review series on Th17 cells: CD4 T helper cells: functional plasticity and differential sensitivity to regulatory T cell-mediated regulation.

机译:关于Th17细胞的翻译微型综述系列:CD4 T辅助细胞:功能可塑性和对调节性T细胞介导调节的敏感性不同。

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摘要

CD4(+) T cells display considerable flexibility in their effector functions, allowing them to tackle most effectively the range of pathogenic infections with which we are challenged. The classical T helper (Th) 1 and Th2 subsets have been joined recently by the Th17 lineage. If not controlled, the potent effector functions (chiefly cytokine production) of which these different cells are capable can lead to (sometimes fatal) autoimmune and allergic inflammation. The primary cell population tasked with providing this control appears to be CD4(+) regulatory T (T(reg)) cells expressing the forkhead box P3 (FoxP3) transcription factor. Here we consider the comparative capacity of FoxP3(+) T(regs) to influence the polarization, expansion and effector function of Th1, Th2 and Th17 cells in vitro and in vivo as well as in relation to human disease. This remains a particularly challenging series of interactions to understand, especially given our evolving understanding of T(reg) and T effector interrelationships, as well as recent insights into functional plasticity that cast doubt upon the wisdom of a strict categorization of T effector cells based on cytokine production.
机译:CD4(+)T细胞在其效应子功能上显示出相当大的灵活性,从而使它们能够最有效地应对我们所面临的病原体感染的范围。 Th17谱系最近加入了经典的T辅助(Th)1和Th2子集。如果不加以控制,这些不同细胞所具有的强大的效应器功能(主要是细胞因子的产生)可能导致(有时是致命的)自身免疫和过敏性炎症。负责提供此控制的主要细胞群似乎是表达叉头盒P3(FoxP3)转录因子的CD4(+)调节性T(reg)细胞。在这里,我们考虑了FoxP3(+)T(regs)在体外和体内以及与人类疾病相关的方面对Th1,Th2和Th17细胞的极化,扩增和效应功能的比较能力。这仍然是要理解的一系列特别具有挑战性的相互作用,特别是考虑到我们对T(reg)和T效应子相互关系的理解不断发展,以及对功能可塑性的最新见解,使人们对基于T效应子细胞严格分类的智慧产生怀疑。细胞因子的产生。

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