首页> 外文期刊>The Journal of Clinical Investigation: The Official Journal of the American Society for Clinical Investigation >Salt generates antiinflammatory Th17 cells but amplifies pathogenicity in proinflammatory cytokine microenvironments
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Salt generates antiinflammatory Th17 cells but amplifies pathogenicity in proinflammatory cytokine microenvironments

机译:盐产生抗炎 Th17 细胞,但在促炎细胞因子微环境中放大致病性

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摘要

Th cells integrate signals from their microenvironment to acquire distinct specialization programs for efficient clearance of diverse pathogens or for immunotolerance. Ionic signals have recently been demonstrated to affect T cell polarization and function. Sodium chloride (NaCl) was proposed to accumulate in peripheral tissues upon dietary intake and to promote autoimmunity via the Th17 cell axis. Here, we demonstrate that high-NaCl conditions induced a stable, pathogen-specific, antiinflammatory Th17 cell fate in human T cells in vitro. The p38/MAPK pathway, involving NFAT5 and SGK1, regulated FoxP3 and IL-17A expression in high-NaCl conditions. The NaCl-induced acquisition of an antiinflammatory Th17 cell fate was confirmed in vivo in an experimental autoimmune encephalomyelitis (EAE) mouse model, which demonstrated strongly reduced disease symptoms upon transfer of T cells polarized in high-NaCl conditions. However, NaCl was coopted to promote murine and human Th17 cell pathogenicity, if T cell stimulation occurred in a proinflammatory and TGF-beta-low cytokine microenvironment. Taken together, our findings reveal a context-dependent, dichotomous role for NaCl in shaping Th17 cell pathogenicity. NaCl might therefore prove beneficial for the treatment of chronic inflammatory diseases in combination with cytokine-blocking drugs.
机译:Th细胞整合来自其微环境的信号,以获得独特的特化程序,以有效清除各种病原体或免疫耐受。离子信号最近被证明会影响 T 细胞的极化和功能。氯化钠 (NaCl) 被认为在饮食摄入时积聚在外周组织中,并通过 Th17 细胞轴促进自身免疫。在这里,我们证明了高 NaCl 条件在体外诱导了人 T 细胞中稳定的、病原体特异性的抗炎 Th17 细胞命运。涉及 NFAT5 和 SGK1 的 p38/MAPK 通路调节了 FoxP3 和 IL-17A 在高 NaCl 条件下的表达。在实验性自身免疫性脑脊髓炎 (EAE) 小鼠模型中证实了 NaCl 诱导的抗炎 Th17 细胞命运的获得,该模型在高 NaCl 条件下转移极化的 T 细胞后显示出疾病症状的强烈减轻。然而,如果 T 细胞刺激发生在促炎和 TGF-β-低细胞因子微环境中,则 NaCl 可促进小鼠和人 Th17 细胞的致病性。综上所述,我们的研究结果揭示了 NaCl 在塑造 Th17 细胞致病性方面具有上下文依赖性的二分法作用。因此,NaCl 可能被证明与细胞因子阻断药物联合治疗慢性炎症性疾病有益。

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