CXCL16-dependent scavenging of oxidized lipids by islet macrophages promotes differentiation of pathogenic CD8+ T cells in diabetic autoimmunity

胰岛巨噬细胞通过 CXCL16 依赖性途径清除氧化脂质,促进糖尿病自身免疫中致病性 CD8+ T 细胞的分化。

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作者:Neetu Srivastava ,Hao Hu ,Orion J Peterson ,Anthony N Vomund ,Marta Stremska ,Mohammad Zaman ,Shilpi Giri ,Tiandao Li ,Cheryl F Lichti ,Pavel N Zakharov ,Bo Zhang ,Nada A Abumrad ,Yi-Guang Chen ,Kodi S Ravichandran ,Emil R Unanue ,Xiaoxiao Wan

Abstract

The pancreatic islet microenvironment is highly oxidative, rendering β cells vulnerable to autoinflammatory insults. Here, we examined the role of islet resident macrophages in the autoimmune attack that initiates type 1 diabetes. Islet macrophages highly expressed CXCL16, a chemokine and scavenger receptor for oxidized low-density lipoproteins (OxLDLs), regardless of autoimmune predisposition. Deletion of Cxcl16 in nonobese diabetic (NOD) mice suppressed the development of autoimmune diabetes. Mechanistically, Cxcl16 deficiency impaired clearance of OxLDL by islet macrophages, leading to OxLDL accumulation in pancreatic islets and a substantial reduction in intra-islet transitory (Texint) CD8+ T cells displaying proliferative and effector signatures. Texint cells were vulnerable to oxidative stress and diminished by ferroptosis; PD-1 blockade rescued this population and reversed diabetes resistance in NOD.Cxcl16-/- mice. Thus, OxLDL scavenging in pancreatic islets inadvertently promotes differentiation of pathogenic CD8+ T cells, presenting a paradigm wherein tissue homeostasis processes can facilitate autoimmune pathogenesis in predisposed individuals.

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