Department of Infection Immunology, Leibniz Institute for Natural Product Research and Infection Biology, Hans-Knoell-Institute, 07745 Jena, Germany.
Department of Biological Sciences, Friedrich Schiller-University, 07743 Jena, Germany.
Cells. 2021 Sep 9;10(9):2365. doi: 10.3390/cells10092365.
T helper cell responses are tailored to their respective antigens and adapted to their specific tissue microenvironment. While a great proportion of T cells acquire a resident identity, a significant proportion of T cells continue circulating, thus encountering changing microenvironmental signals during immune surveillance. One signal, which has previously been largely overlooked, is sodium chloride. It has been proposed to have potent effects on T cell responses in the context of autoimmune, allergic and infectious tissue inflammation in mouse models and humans. Sodium chloride is stringently regulated in the blood by the kidneys but displays differential deposition patterns in peripheral tissues. Sodium chloride accumulation might furthermore be regulated by dietary intake and thus by intentional behavior. Together, these results make sodium chloride an interesting but still controversial signal for immune modulation. Its downstream cellular activities represent a potential therapeutic target given its effects on T cell cytokine production. In this review article, we provide an overview and critical evaluation of the impact of this ionic signal on T helper cell polarization and T helper cell effector functions. In addition, the impact of sodium chloride from the tissue microenvironment is assessed for human health and disease and for its therapeutic potential.
辅助性 T 细胞的反应与其各自的抗原相适应,并适应其特定的组织微环境。虽然很大一部分 T 细胞获得了常驻身份,但仍有很大一部分 T 细胞继续循环,因此在免疫监视过程中会遇到不断变化的微环境信号。一个以前在很大程度上被忽视的信号是氯化钠。据报道,在小鼠模型和人类的自身免疫、过敏和感染性组织炎症中,它对 T 细胞反应具有强大的影响。肾脏严格调节血液中的氯化钠,但在周围组织中显示出不同的沉积模式。氯化钠的积累可能还受到饮食摄入的调节,因此也受到有意行为的调节。这些结果使氯化钠成为一个有趣但仍有争议的免疫调节信号。鉴于其对 T 细胞细胞因子产生的影响,其下游细胞活动代表了一个潜在的治疗靶点。在这篇综述文章中,我们对这种离子信号对辅助性 T 细胞极化和辅助性 T 细胞效应功能的影响进行了概述和批判性评估。此外,还评估了来自组织微环境的氯化钠对人类健康和疾病及其治疗潜力的影响。