Aims/hypothesis An increase in the production of reactive oxygen species is commonly thought to contribute to the development of diabetic cardiomyopathy. This study aimed to assess whether administration of the antioxidant coenzyme Q would protect the diabetic heart against dysfunction and remodelling, using the db/db mouse model of type 2 diabetes. Furthermore, we aimed to compare the efficacy of coenzyme Q to that of the ACE inhibitor ramipril. Methods Six-week-old non-diabetic db/+ mice and diabetic db/db mice received either normal drinking water or water supplemented with coenzyme Q for 10 weeks. Endpoint cardiac function was assessed by echocardiography and catheterisation. Ventricular tissue was collected for histology, gene expressi...
Type 2 diabetes adversely affects the outcomes in patients with myocardial infarction (MI), which is...
Oxidative stress and mitochondrial dysfunction are important mechanisms of ventricular remodeling, p...
Oxidative stress and mitochondrial dysfunction are important mechanisms of ventricular remodeling, p...
Diabetes is one of the fastest growing chronic diseases of the 21st century. Diabetic patients are a...
Abstract Background Hyperlipidemia is a well-established risk factor for cardiac damage, which can l...
Oxidative stress is a major complication in diabetes mellitus. The aim of this study was to investig...
High glucose-induced oxidative stress is a major contributing mechanism to the development of diabet...
Background: Coenzyme Q10 is a well-known cofactor in the mitochondrial electron transport chain requ...
ObjectivesWe aimed to test whether attenuation of early-phase cardiac cell death can prevent diabeti...
The diabetic heart has been linked with reduced endogenous levels of coenzyme Q9/10 (CoQ), an import...
BackgroundIn diabetes, high blood glucose induces glucotoxicity, resulting in the further damage of ...
PURPOSE: Diabetes can impact on cardiovascular health by causing a distinct condition termed "diabet...
Cardiovascular benefits of ubiquinone have been previously demonstrated, and we administered it as a...
AIMS: Inflammatory molecules and their transcription factor, nuclear factor kappa-B (NF-kappaB), are...
People affected by diabetes are at an increased risk of developing heart failure than their non-diab...
Type 2 diabetes adversely affects the outcomes in patients with myocardial infarction (MI), which is...
Oxidative stress and mitochondrial dysfunction are important mechanisms of ventricular remodeling, p...
Oxidative stress and mitochondrial dysfunction are important mechanisms of ventricular remodeling, p...
Diabetes is one of the fastest growing chronic diseases of the 21st century. Diabetic patients are a...
Abstract Background Hyperlipidemia is a well-established risk factor for cardiac damage, which can l...
Oxidative stress is a major complication in diabetes mellitus. The aim of this study was to investig...
High glucose-induced oxidative stress is a major contributing mechanism to the development of diabet...
Background: Coenzyme Q10 is a well-known cofactor in the mitochondrial electron transport chain requ...
ObjectivesWe aimed to test whether attenuation of early-phase cardiac cell death can prevent diabeti...
The diabetic heart has been linked with reduced endogenous levels of coenzyme Q9/10 (CoQ), an import...
BackgroundIn diabetes, high blood glucose induces glucotoxicity, resulting in the further damage of ...
PURPOSE: Diabetes can impact on cardiovascular health by causing a distinct condition termed "diabet...
Cardiovascular benefits of ubiquinone have been previously demonstrated, and we administered it as a...
AIMS: Inflammatory molecules and their transcription factor, nuclear factor kappa-B (NF-kappaB), are...
People affected by diabetes are at an increased risk of developing heart failure than their non-diab...
Type 2 diabetes adversely affects the outcomes in patients with myocardial infarction (MI), which is...
Oxidative stress and mitochondrial dysfunction are important mechanisms of ventricular remodeling, p...
Oxidative stress and mitochondrial dysfunction are important mechanisms of ventricular remodeling, p...