Key result
Ciglitazone improves diastolic relaxation in diabetic mice by normalizing homocysteine and endothelial-myocyte coupling.
Why the study?
Does ciglitazone normalize tissue homocysteine and attenuate endothelial-myocyte uncoupling in alloxan-induced diabetic mice?
Does ciglitazone normalize tissue homocysteine and attenuate endothelial-myocyte uncoupling in alloxan-induced diabetic mice?
In a diabetic mouse model, the PPAR gamma agonist ciglitazone normalizes left ventricular tissue homocysteine levels and improves endothelial-myocyte coupling and diastolic relaxation.
Does not support clinical use in diabetic cardiomyopathy; leaves open whether PPARγ agonism improves diastolic function via homocysteine normalization.
BACKGROUND: Homocysteine (Hcy) is an independent cardiovascular risk factor; however, in diabetes, the role of tissue Hcy leading to cardiac dysfunction is unclear. AIMS: To determine whether tissue Hcy caused endothelial-myocyte uncoupling and ventricular dysfunction in diabetes. METHODS: Diabetes was created in C57BL/6J male mice by injecting 65 mg/kg alloxan. To reverse diabetic complications, ciglitazone (CZ) was administered in the drinking water. Plasma glucose, Hcy, left ventricular (LV) tissue levels of Hcy and nitric oxide (NO) were measured. Glomerular filtration rate (GFR) was measured by inulin-FITC. Endothelial-myocyte coupling was measured in cardiac rings. In vivo diastolic relaxation and LV diameters were measured by a Millar catheter in LV and by M-mode echocardiography, respectively. RESULTS: Plasma glucose, GFR and LV tissue Hcy were increased in diabetic mice and were normalized after CZ treatment; whereas, elevated plasma Hcy level remained unchanged with or without CZ treatment. NO levels in the LV were found inversely related to tissue Hcy levels. Attenuated endothelial-myocyte function in diabetic mice was ameliorated by CZ treatment. Cardiac relaxation, the ratio of LV wall thickness to LV diameter was decreased in diabetes, and normalized after CZ treatment. CONCLUSION: CZ normalized LV tissue levels of Hcy and ameliorated endothelial-myocyte coupling; therefore, specifically suggest the association of LV tissue Hcy levels with impair endothelial-myocyte function in diabetes.
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Rodríguez et al. (2008) studied Alloxan-induced diabetes (n=30). Ciglitazone vs. Untreated diabetic mice was evaluated. Ciglitazone normalized left ventricular tissue levels of homocysteine and ameliorated endothelial-myocyte coupling, improving cardiac diastolic relaxation in alloxan-induced diabetic mice.
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