Endogenous IL-33 Contributes to Kidney Ischemia-Reperfusion Injury as an Alarmin

炎症 先天免疫系统 白细胞介素33 细胞因子 肾缺血 急性肾损伤 免疫系统 免疫学 渗透(HVAC) 生物 再灌注损伤 缺血 细胞生物学 医学 白细胞介素 内分泌学 内科学 物理 热力学
作者
Maroua Ferhat,Aurélie Robin,Sébastien Giraud,Sandra Sena,Jean‐Michel Goujon,Guy Touchard,Thierry Hauet,Jean‐Philippe Girard,Jean‐Marc Gombert,André Herbelin,Antoine Thierry
出处
期刊:Journal of The American Society of Nephrology 卷期号:29 (4): 1272-1288 被引量:65
标识
DOI:10.1681/asn.2017060650
摘要

Inflammation is a prominent feature of ischemia-reperfusion injury (IRI), which is characterized by leukocyte infiltration and renal tubular injury. However, signals that initiate these events remain poorly understood. We examined the role of the nuclear alarmin IL-33 in tissue injury and innate immune response triggered by experimental kidney ischemia-reperfusion. In wild-type mice, we found that IL-33 was constitutively expressed throughout the kidney in peritubular and periglomerular spaces, mainly by microvascular endothelial cells, from which it was released immediately during IRI. Compared with wild-type mice, mice lacking IL-33 (IL-33 Gt/Gt ) exhibited reductions in early tubular cell injury and subsequent renal infiltration of IFN- γ /IL-17A–producing neutrophils, with preservation of renal functions. This protection associated with decreased renal recruitment of myeloid dendritic cells, natural killer (NK) cells, and invariant natural killer T (iNKT) cells, the latter of which were reported as deleterious in IRI. Increases in the level of circulating IL-12, a key IL-33 cofactor, and the expression of ST2, an IL-33–specific receptor, on the surface of iNKT cells preceded the IL-33– and iNKT cell–dependent phase of neutrophil infiltration. Furthermore, IL-33 directly targeted iNKT cells in vitro , inducing IFN- γ and IL-17A production. We propose that endogenous IL-33 is released as an alarmin and contributes to kidney IRI by promoting iNKT cell recruitment and cytokine production, resulting in neutrophil infiltration and activation at the injury site. Our findings show a novel molecular mediator contributing to innate immune cell recruitment induced by renal ischemia-reperfusion and may provide therapeutic insights into AKI associated with renal transplantation.
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