Key result
Fasudil significantly protected against histopathologic changes of cardiac mitochondria and attenuated oxidative stress in rats with type 2 diabetes.
Why the study?
Does fasudil improve cardiac mitochondrial structure and function in rats with type 2 diabetes induced by streptozotocin and a high-fat diet?
Does fasudil improve cardiac mitochondrial structure and function in rats with type 2 diabetes induced by streptozotocin and a high-fat diet?
Fasudil protects cardiac mitochondria from structural and functional damage in a rat model of type 2 diabetes, likely by attenuating oxidative stress.
Hypothesis-generating for fasudil in diabetic cardiomyopathy; leaves open translation to human therapy.
Dysfunction of cardiac mitochondria appears to play a substantial role in cardiomyopathy or myocardial dysfunction and is a promising therapeutic target for many cardiovascular diseases. We investigated the effect of the Rho/Rho-associated protein kinase (ROCK) inhibitor fasudil on cardiac mitochondria from rats in which diabetes was induced by a combination of streptozotocin (STZ) and a sustained high-fat diet. Eight weeks after diabetes was induced by a single intraperitoneal injection of 50 mg/kg STZ followed by a sustained high-fat diet, either fasudil (5 mg/kg bid) or equivalent volumes of saline (control) were administered over four weeks. Fasudil significantly protected against the histopathologic changes of cardiac mitochondria in diabetic rats. Fasudil significantly reduced the abundances of the Rho A, ROCK 1, and ROCK 2 proteins, restored the activities of succinate dehydrogenase (SDH) and monoamine oxidase (MAO) in cardiac mitochondria, inhibited the opening of the mitochondrial permeability transition pore, and decreased the total antioxidant capacity, as well as levels of malonyldialdehyde, hydroxy radical, reduced glutathione, and superoxide dismutase in heart. Fasudil improved the structures of cardiac mitochondria and increased both SDH and MAO activities in cardiac mitochondria. These beneficial effects may be associated with the attenuation of oxidative stress caused by fasudil treatment.
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Guo et al. (2013) studied Type 2 diabetes. Fasudil vs. Saline was evaluated on Histopathologic changes of cardiac mitochondria and oxidative stress markers. Fasudil significantly protected against histopathologic changes of cardiac mitochondria and attenuated oxidative stress in rats with type 2 diabetes.
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