Augmented mitochondrial energy metabolism is an early response to chronic glucose stress in human pancreatic beta cells

Aims/hypothesis In islets from individuals with type 2 diabetes and in islets exposed to chronic elevated glucose, mitochondrial energy metabolism is impaired. Here, we studied early metabolic changes and mitochondrial adaptations in human beta cells during chronic glucose stress. Methods Respiratio...

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Veröffentlicht in:Diabetologia 2020-12, Vol.63 (12), p.2628-2640
Hauptverfasser: Chareyron, Isabelle, Christen, Stefan, Moco, Sofia, Valsesia, Armand, Lassueur, Steve, Dayon, Loïc, Wollheim, Claes B., Santo Domingo, Jaime, Wiederkehr, Andreas
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Sprache:eng
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Zusammenfassung:Aims/hypothesis In islets from individuals with type 2 diabetes and in islets exposed to chronic elevated glucose, mitochondrial energy metabolism is impaired. Here, we studied early metabolic changes and mitochondrial adaptations in human beta cells during chronic glucose stress. Methods Respiration and cytosolic ATP changes were measured in human islet cell clusters after culture for 4 days in 11.1 mmol/l glucose. Metabolomics was applied to analyse intracellular metabolite changes as a result of glucose stress conditions. Alterations in beta cell function were followed using insulin secretion assays or cytosolic calcium signalling after expression of the calcium probe YC3.6 specifically in beta cells of islet clusters. Results At early stages of glucose stress, mitochondrial energy metabolism was augmented in contrast to the previously described mitochondrial dysfunction in beta cells from islets of diabetic donors. Following chronic glucose stress, mitochondrial respiration increased (by 52.4%, p  
ISSN:0012-186X
1432-0428
DOI:10.1007/s00125-020-05275-5