在实验性自身免疫性葡萄膜炎诱导的小鼠中,腺苷受体连接使促葡萄膜性Th1和Th17平衡向后者倾斜

Q4 Immunology and Microbiology
Deming Sun , Minhee Ko , Hui Shao , Henry J. Kaplan
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引用次数: 0

摘要

各种病理情况都伴随着三磷酸腺苷(ATP)从细胞内释放到细胞外腔室,在那里它降解成腺苷并调节免疫反应。以往的研究认为,ATP及其降解产物腺苷都是重要的免疫调节分子;ATP是促进免疫反应的危险信号,而腺苷的作用是抑制性的。我们发现腺苷受体连接在实验性自身免疫性葡萄膜炎(EAU)中平衡Th1和Th17致病性T细胞反应中起重要作用。虽然其对Th1反应的作用是抑制的,但对Th17反应的作用是增强的,从而影响Th1和Th17反应之间的平衡。机制研究表明,这种作用是通过多种免疫细胞介导的,其中γδ T细胞活化和树突状细胞分化是重要的;腺苷和γδ介导的免疫调节相互协同影响。腺苷受体连接增强了γδ T细胞的激活,γδ T细胞是Th17反应的重要启动子,对树突状细胞(DC)分化有很强的影响,打破了从刺激Th1反应的DC到刺激Th17反应的DC的平衡。本研究获得的知识将提高我们对细胞外atp -腺苷代谢的免疫调节作用的理解,并改善对由Th1-和th17型致病性T细胞引起的自身免疫性疾病的治疗。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Adenosine receptor ligation tips the uveitogenic Th1 and Th17 balance towards the latter in experimental autoimmune uveitis-induced mouse

Various pathological conditions are accompanied by release of adenosine triphosphate (ATP) from the intracellular to the extracellular compartment, where it degrades into adenosine and modulates immune responses. Previous studies concluded that both ATP and its degradation product adenosine are important immune-regulatory molecules; ATP acted as a danger signal that promotes immune responses, but adenosine's effect was inhibitory. We show that adenosine receptor ligation plays an important role in balancing Th1 and Th17 pathogenic T cell responses in experimental autoimmune uveitis (EAU). While its effect on Th1 responses is inhibitory, its effect on Th17 responses is enhancing, thereby impacting the balance between Th1 and Th17 responses. Mechanistic studies showed that this effect is mediated via several immune cells, among which γδ T cell activation and dendritic cell differentiation are prominent; adenosine- and γδ-mediated immunoregulation synergistically impact each other's effect. Adenosine receptor ligation augments the activation of γδ T cells, which is an important promoter for Th17 responses and has a strong effect on dendritic cell (DC) differentiation, tipping the balance from generation of DCs that stimulate Th1 responses to those that stimulate Th17 responses. The knowledge acquired in this study should improve our understanding of the immune-regulatory effect of extracellular ATP-adenosine metabolism and improve treatment for autoimmune diseases caused by both Th1- and Th17-type pathogenic T cells.

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