The hepatoselective glucokinase activator PF-04991532 ameliorates hyperglycemia without causing hepatic steatosis in

Derek M Erion1, Amanda Lapworth1, Paul A Amor1

  • 1Cardiovascular, Metabolic & Endocrine Disease Research Unit, Pfizer Worldwide Research & Development, Cambridge, Massachusetts, United States of America.

Plos One
|May 27, 2014
PubMed

Insights

Selective activation of liver glucokinase with PF-04991532 effectively lowered glucose in type 2 diabetes models. This approach reduced hyperglycemia without causing adverse liver fat accumulation, suggesting a potential therapeutic strategy.

Area of Science:

  • Biochemistry
  • Endocrinology
  • Pharmacology

Background:

  • Type 2 diabetes mellitus (T2DM) causes hyperglycemia, leading to severe complications like retinopathy and neuropathy.
  • Glucokinase (GCK) plays a crucial role in glucose metabolism by catalyzing glucose phosphorylation.
  • Selective hepatic GCK activation is explored as a strategy to improve glycemic control while minimizing hypoglycemia risk.

Purpose of the Study:

  • To evaluate the efficacy and safety of a hepatoselective GCK activator, PF-04991532, in a rat model of type 2 diabetes.
  • To determine if pharmacological activation of hepatic GCK can reduce hyperglycemia without inducing adverse hepatic lipid changes.

Main Methods:

  • Utilized Goto-Kakizaki rats, a model exhibiting characteristics of human T2DM.
  • Administered PF-04991532 to assess dose-dependent effects on plasma glucose and insulin levels.
  • Conducted hyperglycemic clamp studies to evaluate glucose disposal and endogenous glucose production.
  • Analyzed hepatic and plasma lipid profiles, including triglyceride concentrations.
  • Measured intracellular AMP levels and hepatic futile cycling.

Main Results:

  • PF-04991532 significantly reduced plasma glucose concentrations in a dose-dependent manner, independent of insulin levels.
  • Hyperglycemic clamp studies showed a 5-fold increase in glucose infusion rate, attributed to a 60% reduction in endogenous glucose production.
  • While PF-04991532 increased plasma triglycerides, it did not induce hepatic steatosis (fatty liver).
  • The activator decreased intracellular AMP and enhanced hepatic futile cycling.

Conclusions:

  • Hepatoselective glucokinase activation with PF-04991532 demonstrates potent glucose-lowering effects in a T2DM model.
  • This strategy effectively controls hyperglycemia without causing detrimental hepatic lipid accumulation.
  • Tissue-specific GCK activators represent a promising therapeutic avenue for T2DM, warranting clinical investigation.

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