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Prolonged insulin-induced hypoglycaemia reduces ß-cell activity rather than number in pancreatic islets in non-diabetic rats. | LitMetric

Prolonged insulin-induced hypoglycaemia reduces ß-cell activity rather than number in pancreatic islets in non-diabetic rats.

Sci Rep

Department of Safety Sciences & Imaging, Toxicology Development Projects, Novo Nordisk A/S, Novo Nordisk Park, 2760, Måløv, Denmark.

Published: August 2022

AI Article Synopsis

  • Prolonged hypoglycemia was induced in rats to study the effects on pancreatic β-cell dynamics and function over an 8-week period followed by a 4-week recovery.
  • Results showed that prolonged low blood sugar levels led to reduced insulin production, decreased pancreatic islet volume, and diminished levels of c-peptide, while glucagon levels increased relative to islet volume.
  • After stopping the infusion of insulin, the affected parameters returned to normal within days, highlighting the β-cells' ability to recover and adapt quickly even after being suppressed for an extended period.

Article Abstract

Pancreatic β-cells have an extraordinary ability to adapt to acute fluctuations in glucose levels by rapid changing insulin production to meet metabolic needs. Although acute changes have been characterised, effects of prolonged metabolic stress on β-cell dynamics are still unclear. Here, the aim was to investigate pancreatic β-cell dynamics and function during and after prolonged hypoglycaemia. Hypoglycaemia was induced in male and female rats by infusion of human insulin for 8 weeks, followed by a 4-week infusion-free recovery period. Animals were euthanized after 4 or 8 weeks of infusion, and either 2 days and 4 weeks after infusion-stop. Total volumes of pancreatic islets and β-cell nuclei, islet insulin and glucagon content, and plasma c-peptide levels were quantified. Prolonged hypoglycaemia reduced c-peptide levels, islet volume and almost depleted islet insulin. Relative β-cell nuclei: total pancreas volume decreased, while being unchanged relative to islet volume. Glucagon: total pancreas volume decreased during hypoglycaemia, whereas glucagon: islet volume increased. Within two days after infusion-stop, plasma glucose and c-peptide levels normalised and all remaining parameters were fully reversed after 4 weeks. In conclusion, our findings indicate that prolonged hypoglycaemia inactivates β-cells, which can rapidly be reactivated when needed, demonstrating the high plasticity of β-cells even following prolonged suppression.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9388517PMC
http://dx.doi.org/10.1038/s41598-022-18398-zDOI Listing

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