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首页|Exploring the functional, protective, and transcriptomic effects of GIP on cytokine-exposed human pancreatic islets and EndoC-βH5 cells

Exploring the functional, protective, and transcriptomic effects of GIP on cytokine-exposed human pancreatic islets and EndoC-βH5 cells

Exploring the functional, protective, and transcriptomic effects of GIP on cytokine-exposed human pancreatic islets and EndoC-βH5 cells

来源:bioRxiv_logobioRxiv
英文摘要

Abstract Immune-mediated beta-cell destruction and lack of alpha-cell responsiveness to hypoglycaemia are hallmarks of type 1 diabetes pathology. The incretin hormone glucose-dependent insulinotropic polypeptide (GIP) may hold therapeutic potential for type 1 diabetes due to its insulinotropic and glucagonotropic effects, as well as its beta-cell protective effects shown in rodent islets. Here, we examined the functional, protective, and transcriptomic effects of GIP treatment upon diabetogenic cytokine exposure to interleukin (IL)-1β ± interferon (IFN)-γ in human EndoC-βH5 beta cells and isolated human islets, respectively. GIP dose-dependently augmented glucose-stimulated insulin secretion from EndoC-βH5 cells and increased insulin and glucagon secretion from human islets during high and low glucose concentrations, respectively. The insulinotropic effect of GIP in EndoC-βH5 cells was abrogated by KN-93, an inhibitor of calcium/calmodulin-dependent protein kinase 2 (CaMK2). GIP did not prevent cytokine-induced apoptosis or cytokine-induced functional impairment of human EndoC-βH5 cells. GIP also did not prevent cytokine-induced apoptosis in human islets. GIP treatment of human islets with or without cytokines for 24 hours did not significantly impact the transcriptome. GIP potentiated cytokine-induced secretion of IL-10 and c-c motif chemokine ligand (CCL)-2 from human islets while decreasing the secretion of c-x-c motif chemokine ligand (CXCL)-8. In EndoC-βH5 cells, GIP reduced IFN-γ-induced secretion of tumor necrosis factor (TNF)-α, IL-2, IL-6, and IL-10 but increased the secretion of CXCL8, CCL2, CCL4, and CCL11. In conclusion, our results suggest that the insulinotropic effect of GIP is CaMK2-dependent. Furthermore, our results indicate that GIP does not provide substantial cytoprotective effects against diabetogenic cytokine challenge or significantly modulate the transcriptome of human islets when applied at a supraphysiological level. GIP may, however, still exert selective inflammation-modulatory effects upon diabetogenic cytokine exposure.

Knop Filip K.、Gerwig Rebekka、Henriksen Kristine、Svane Cecilie Amalie Br?gger、St?rling Joachim、Kaur Simranjeet、J?rgensen Anne

Center for Clinical Metabolic Research, Gentofte Hospital, University of Copenhagen||Department of Clinical Medicine, Faculty of Health and Medical Sciences, University of Copenhagen||Translational Type 2 Diabetes Research, Department of Clinical and Translational Research, Steno Diabetes Center CopenhagenTranslational Type 1 Diabetes Research, Department of Clinical and Translational Research, Steno Diabetes Center CopenhagenTranslational Type 1 Diabetes Research, Department of Clinical and Translational Research, Steno Diabetes Center CopenhagenTranslational Type 1 Diabetes Research, Department of Clinical and Translational Research, Steno Diabetes Center CopenhagenTranslational Type 1 Diabetes Research, Department of Clinical and Translational Research, Steno Diabetes Center Copenhagen||Department of Biomedical Sciences, Faculty of Health and Medical Sciences, University of CopenhagenTranslational Type 1 Diabetes Research, Department of Clinical and Translational Research, Steno Diabetes Center CopenhagenTranslational Type 1 Diabetes Research, Department of Clinical and Translational Research, Steno Diabetes Center Copenhagen||Department of Biomedical Sciences, Faculty of Health and Medical Sciences, University of Copenhagen

10.1101/2024.06.17.599254

基础医学生理学分子生物学

GIPglucose-dependent insulinotropic polypeptidetype 1 diabeteshuman isletsEndoC-βH5proinflammatory cytokinesIL-1βIFN-yapoptosis

Knop Filip K.,Gerwig Rebekka,Henriksen Kristine,Svane Cecilie Amalie Br?gger,St?rling Joachim,Kaur Simranjeet,J?rgensen Anne.Exploring the functional, protective, and transcriptomic effects of GIP on cytokine-exposed human pancreatic islets and EndoC-βH5 cells[EB/OL].(2025-03-28)[2025-05-06].https://www.biorxiv.org/content/10.1101/2024.06.17.599254.点此复制

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