The role of membrane excitability in pancreatic β-cell glucotoxicity.

Sci Rep

Department of Medicine, Division of Endocrinology, Metabolism and Lipid Research, Washington University School of Medicine, 660 South Euclid Avenue, St. Louis, Missouri, 63110, USA.

Published: May 2019

Persistent hyperglycemia is causally associated with pancreatic β-cell dysfunction and loss of pancreatic insulin. Glucose normally enhances β-cell excitability through inhibition of K channels, opening of voltage-dependent calcium channels, increased [Ca], which triggers insulin secretion. Glucose-dependent excitability is lost in islets from K-knockout (K-KO) mice, in which β-cells are permanently hyperexcited, [Ca] is chronically elevated and insulin is constantly secreted. Mouse models of human neonatal diabetes in which K gain-of-function mutations are expressed in β-cells (K-GOF) also lose the link between glucose metabolism and excitation-induced insulin secretion, but in this case K-GOF β-cells are chronically underexcited, with permanently low [Ca] and lack of glucose-dependent insulin secretion. We used K-GOF and K-KO islets to examine the role of altered-excitability in glucotoxicity. Wild-type islets showed rapid loss of insulin content when chronically incubated in high-glucose, an effect that was reversed by subsequently switching to low glucose media. In contrast, hyperexcitable K-KO islets lost insulin content in both low- and high-glucose, while underexcitable K-GOF islets maintained insulin content in both conditions. Loss of insulin content in chronic excitability was replicated by pharmacological inhibition of K by glibenclamide, The effects of hyperexcitable and underexcitable islets on glucotoxicity observed in in vivo animal models are directly opposite to the effects observed in vitro: we clearly demonstrate here that in vitro, hyperexcitability is detrimental to islets whereas underexcitability is protective.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC6502887PMC
http://dx.doi.org/10.1038/s41598-019-43452-8DOI Listing

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