School of Medicine, Nankai University, Tianjin, China.
Department of Nephrology, First Medical Center of Chinese PLA General Hospital, National Key Laboratory of Kidney Diseases, National Clinical Research Center for Kidney Diseases, Beijing Key Laboratory of Kidney Diseases Research, Beijing, China.
JCI Insight. 2024 Jan 23;9(2):e169885. doi: 10.1172/jci.insight.169885.
Ischemia-reperfusion injury-induced (IRI-induced) acute kidney injury is accompanied by mononuclear phagocyte (MP) invasion and inflammation. However, systematic analysis of extracellular vesicle-carried (EV-carried) proteins mediating intercellular crosstalk in the IRI microenvironment is still lacking. Multiomics analysis combining single-cell RNA-Seq data of kidney and protein profiling of kidney-EV was used to elucidate the intercellular communication between proximal tubular cells (PTs) and MP. Targeted adhesion and migration of various MPs were caused by the secretion of multiple chemokines as well as integrin β1-rich EV by ischemic-damaged PTs after IRI. These recruited MPs, especially Fn1+ macrophagocyte, amplified the surviving PT's inflammatory response by secreting the inflammatory factors TNF-α, MCP-1, and thrombospondin 1 (THBS-1), which could interact with integrin β1 to promote more MP adhesion and interact with surviving PT to further promote the secretion of IL-1β. However, GW4869 reduced MP infiltration and maintained a moderate inflammatory level likely by blocking EV secretion. Our findings establish the molecular bases by which chemokines and kidney-EV mediate PT-MP crosstalk in early IRI and provide insights into systematic intercellular communication.
缺血再灌注损伤(IRI 损伤)引起的急性肾损伤伴随着单核吞噬细胞(MP)浸润和炎症。然而,细胞外囊泡(EV)携带的介导 IRI 微环境中细胞间串扰的蛋白质的系统分析仍然缺乏。结合肾单细胞 RNA-Seq 数据和肾-EV 的蛋白质分析的多组学分析用于阐明缺血损伤 PT 与 MP 之间的细胞间通讯。在 IRI 后,受损的 PT 通过分泌多种趋化因子以及富含整合素β1 的 EV,导致各种 MPs 的靶向黏附和迁移。这些募集的 MPs,特别是 Fn1+巨噬细胞,通过分泌 TNF-α、MCP-1 和血栓素 1(THBS-1)等炎症因子,放大存活的 PT 的炎症反应,这些因子可以与整合素β1 相互作用,促进更多的 MP 黏附,并与存活的 PT 相互作用,进一步促进 IL-1β的分泌。然而,GW4869 通过阻断 EV 分泌,减少 MP 浸润并维持适度的炎症水平。我们的发现为趋化因子和肾-EV 在早期 IRI 中介导 PT-MP 串扰提供了分子基础,并深入了解了系统的细胞间通讯。