The effects of KATP channel modulators on counterregulatory responses and cognitive function during acute controlled

E Bingham1, D Hopkins, A Pernet

  • 1GKT School of Medicine, Denmark Hill Campus, London, UK. emma.bingham@kcl.ac.uk

Abstract

Insights

Agents altering potassium adenosine triphosphate (KATP) channels did not affect hormone responses to low blood sugar. However, glibenclamide improved cognitive function during hypoglycemia, suggesting a novel effect on brain function.

Area of Science:

  • Neuroendocrinology
  • Metabolic Medicine
  • Pharmacology

Background:

  • Pancreatic beta-cells and hypothalamic glucose-sensitive neurons share physiological similarities.
  • Sulfonylurea receptors are widely distributed in neuronal cells, suggesting potential brain effects.
  • Potassium adenosine triphosphate (KATP) channels play a role in both insulin secretion and neuronal function.

Purpose of the Study:

  • To investigate the impact of KATP channel modulators on cognitive function during hypoglycemia.
  • To assess the effect of these agents on counterregulatory hormone release in response to low blood glucose.
  • To explore the potential for novel actions of sulfonylureas in the brain.

Main Methods:

  • A randomized, placebo-controlled study involving 10 healthy males.
  • Three stepped hypoglycemic clamp procedures and one euglycemic clamp.
  • Administration of glibenclamide, diazoxide, or placebo prior to hypoglycemic challenges.
  • Measurement of cognitive function, symptom scores, and counterregulatory hormones at various glucose levels.

Main Results:

  • Neither glibenclamide nor diazoxide significantly altered counterregulatory hormone responses or symptom perception during hypoglycemia.
  • Cognitive function, specifically four-choice reaction time, was better preserved with glibenclamide during hypoglycemia.
  • Glibenclamide demonstrated a protective effect on cognitive performance at lower plasma glucose levels compared to placebo and diazoxide.

Conclusions:

  • Pharmacological agents modulating KATP channel activity do not influence the counterregulatory hormonal response to hypoglycemia.
  • These agents may, however, impact cognitive function during states of cerebral glucopenia (low brain glucose).
  • The observed effect of glibenclamide on cortical function suggests a previously unrecognized action of sulfonylureas, meriting further research.