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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.
Abstract:
The formation of advanced glycation end products (AGEs) on extracellular matrix components leads to accelerated increases in collagen cross linking that contributes to myocardial stiffness in diabetes. This study determined the effect of the crosslink breaker, ALT-711 on diabetes-induced cardiac disease. Streptozotocin diabetes was induced in Sprague-Dawley rats for 32 weeks. Treatment with ALT-711 (10 mg/kg) was initiated at week 16. Diabetic hearts were characterized by increased left ventricular (LV) mass and brain natriuretic peptide (BNP) expression, decreased LV collagen solubility, and increased collagen III gene and protein expression. Diabetic hearts had significant increases in AGEs and increased expression of the AGE receptors, RAGE and AGE-R3, in association with increases in gene and protein expression of connective tissue growth factor (CTGF). ALT-711 treatment restored LV collagen solubility and cardiac BNP in association with reduced cardiac AGE levels and abrogated the increase in RAGE, AGE-R3, CTGF, and collagen III expression. The present study suggests that AGEs play a central role in many of the alterations observed in the diabetic heart and that cleavage of preformed AGE crosslinks with ALT-711 leads to attenuation of diabetes-associated cardiac abnormalities in rats. This provides a potential new therapeutic approach for cardiovascular disease in human diabetes.
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.
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