Irisin is a myokine that enhances insulin secretion and β cell viability in both rodent and human β cells. Here, we investigated whether irisin preserves β cell functional mass in vivo in diabetic mice and ex vivo in human pancreatic islets from subjects with type 2 diabetes (T2D). In mice made diabetic by a high-fat diet and streptozotocin, irisin administration improved glycemic homeostasis by increasing islet insulin content and glucose-stimulated insulin secretion while also markedly stimulating β cell proliferation. In islets from T2D subjects, which typically display substantial structural and functional impairments, irisin restored insulin content and glucose-stimulated insulin secretion. Mechanistic studies in INS-1E cells showed that chronic exposure to high glucose blunted glucose-triggered cytoplasmic calcium increases, essential for insulin secretion. Under these glucotoxic conditions, while irisin was unable to activate CREB and AKT, it induced AMPK-mTORC1-S6K-dependent mobilization of endoplasmic reticulum calcium stores, resulting in enhancement of insulin secretion. Overall, these findings highlight irisin's multifaceted ability to counteract β cell failure in experimental and human T2D.

The myokine irisin ameliorates the secretory dysfunction of pancreatic β cells in experimental and human type 2 diabetes

Marrano, Nicola;Borrelli, Anna;Biondi, Giuseppina;Rella, Martina;D'Oria, Rossella;Genchi, Valentina Annamaria;Caccioppoli, Cristina;Galasso, Valerio;Galluzzi, Giovanni;Signorile, Anna;Aquilino, Fabrizio;Lupo, Luigi Giovanni;Cignarelli, Angelo;Perrini, Sebastio;Laviola, Luigi;Giorgino, Francesco
;
Natalicchio, Annalisa
2026-01-01

Abstract

Irisin is a myokine that enhances insulin secretion and β cell viability in both rodent and human β cells. Here, we investigated whether irisin preserves β cell functional mass in vivo in diabetic mice and ex vivo in human pancreatic islets from subjects with type 2 diabetes (T2D). In mice made diabetic by a high-fat diet and streptozotocin, irisin administration improved glycemic homeostasis by increasing islet insulin content and glucose-stimulated insulin secretion while also markedly stimulating β cell proliferation. In islets from T2D subjects, which typically display substantial structural and functional impairments, irisin restored insulin content and glucose-stimulated insulin secretion. Mechanistic studies in INS-1E cells showed that chronic exposure to high glucose blunted glucose-triggered cytoplasmic calcium increases, essential for insulin secretion. Under these glucotoxic conditions, while irisin was unable to activate CREB and AKT, it induced AMPK-mTORC1-S6K-dependent mobilization of endoplasmic reticulum calcium stores, resulting in enhancement of insulin secretion. Overall, these findings highlight irisin's multifaceted ability to counteract β cell failure in experimental and human T2D.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11586/592460
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