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Publication : Hyperglycaemia induces metabolic dysfunction and glycogen accumulation in pancreatic β-cells.

First Author  Brereton MF Year  2016
Journal  Nat Commun Volume  7
Pages  13496 PubMed ID  27882918
Mgi Jnum  J:243068 Mgi Id  MGI:5907560
Doi  10.1038/ncomms13496 Citation  Brereton MF, et al. (2016) Hyperglycaemia induces metabolic dysfunction and glycogen accumulation in pancreatic beta-cells. Nat Commun 7:13496
abstractText  Insulin secretion from pancreatic beta-cells is impaired in all forms of diabetes. The resultant hyperglycaemia has deleterious effects on many tissues, including beta-cells. Here we show that chronic hyperglycaemia impairs glucose metabolism and alters expression of metabolic genes in pancreatic islets. In a mouse model of human neonatal diabetes, hyperglycaemia results in marked glycogen accumulation, and increased apoptosis in beta-cells. Sulphonylurea therapy rapidly normalizes blood glucose levels, dissipates glycogen stores, increases autophagy and restores beta-cell metabolism. Insulin therapy has the same effect but with slower kinetics. Similar changes are observed in mice expressing an activating glucokinase mutation, in in vitro models of hyperglycaemia, and in islets from type-2 diabetic patients. Altered beta-cell metabolism may underlie both the progressive impairment of insulin secretion and reduced beta-cell mass in diabetes.
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