A breaker of advanced glycation end products attenuates diabetes-induced myocardial structural changes

Riccardo Candido1, Josephine M Forbes, Merlin C Thomas

  • 1Division of Diabetes, Lipoproteins and Metabolism, Baker Heart Research Institute, Prahran, Victoria, Australia.

Circulation Research
|March 8, 2003
PubMed

Insights

Advanced glycation end products (AGEs) contribute to diabetic heart disease by increasing collagen crosslinking. The crosslink breaker ALT-711 reduced cardiac AGEs and improved heart function in diabetic rats, suggesting a potential therapy.

Area of Science:

  • Cardiovascular Research
  • Diabetology
  • Biochemistry

Background:

  • Diabetes accelerates collagen crosslinking via advanced glycation end products (AGEs), leading to myocardial stiffness.
  • Diabetic cardiomyopathy involves increased left ventricular (LV) mass, altered collagen, and elevated natriuretic peptides.

Purpose of the Study:

  • To investigate the therapeutic effect of the crosslink breaker ALT-711 on diabetes-induced cardiac abnormalities.
  • To determine if ALT-711 can mitigate AGE accumulation and associated cardiac dysfunction in a rat model of diabetes.

Main Methods:

  • Streptozotocin-induced diabetes in Sprague-Dawley rats for 32 weeks.
  • Treatment with ALT-711 (10 mg/kg) initiated at week 16.
  • Assessment of cardiac structure, collagen properties, AGEs, and related gene/protein expression.

Main Results:

  • Diabetic hearts showed increased LV mass, decreased collagen solubility, and elevated collagen III, AGEs, RAGE, AGE-R3, and CTGF.
  • ALT-711 treatment normalized LV collagen solubility and cardiac BNP levels.
  • ALT-711 reduced cardiac AGEs and abrogated increases in RAGE, AGE-R3, CTGF, and collagen III.

Conclusions:

  • AGEs are central to cardiac alterations in diabetes.
  • Cleavage of AGE crosslinks with ALT-711 attenuates diabetes-associated cardiac abnormalities in rats.
  • ALT-711 represents a potential therapeutic strategy for cardiovascular complications in human diabetes.