Proinflammatory signaling in islet β cells propagates invasion of pathogenic immune cells in autoimmune diabetes

胰岛β细胞中的促炎信号传导会促进自身免疫性糖尿病中致病性免疫细胞的入侵。

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作者:Annie R Piñeros ,Abhishek Kulkarni ,Hongyu Gao ,Kara S Orr ,Lindsey Glenn ,Fei Huang ,Yunlong Liu ,Maureen Gannon ,Farooq Syed ,Wenting Wu ,Cara M Anderson ,Carmella Evans-Molina ,Marcia McDuffie ,Jerry L Nadler ,Margaret A Morris ,Raghavendra G Mirmira ,Sarah A Tersey

Abstract

Type 1 diabetes is a disorder of immune tolerance that leads to death of insulin-producing islet β cells. We hypothesize that inflammatory signaling within β cells promotes progression of autoimmunity within the islet microenvironment. To test this hypothesis, we deleted the proinflammatory gene encoding 12/15-lipoxygenase (Alox15) in β cells of non-obese diabetic mice at a pre-diabetic time point when islet inflammation is a feature. Deletion of Alox15 leads to preservation of β cell mass, reduces populations of infiltrating T cells, and protects against spontaneous autoimmune diabetes in both sexes. Mice lacking Alox15 in β cells exhibit an increase in a population of β cells expressing the gene encoding the protein programmed death ligand 1 (PD-L1), which engages receptors on immune cells to suppress autoimmunity. Delivery of a monoclonal antibody against PD-L1 recovers the diabetes phenotype in knockout animals. Our results support the contention that inflammatory signaling in β cells promotes autoimmunity during type 1 diabetes progression.

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