Reactive oxygen species (ROS) and reactive nitrogen species (RNS) play a fundamental role in regulating endothelial function and vascular tone in the physiological conditions of a vascular system. However, oxidative stress has detrimental effects on human health, and numerous studies confirmed that high ROS/RNS production contributes to the initiation and progression of cardiovascular diseases. The antioxidant defense has an essential role in the homeostatic functioning of the vascular endothelial system. Endogenous antioxidative defense includes various molecules and enzymes such as superoxide dismutase, catalase, glutathione reductase, and glutathione peroxidase
Production of considerable amounts of reactive oxygen species (ROS) eventually leads to oxidative st...
Redox control is lost when the antioxidant defense system cannot remove abnormally high concentratio...
Atherosclerosis and its major complications –myocardial infarction and stroke– remain major causes o...
Cardiovascular diseases (CVDs) have been the prime cause of mortality worldwide for decades. However...
Reactive oxygen species (ROS), including superoxide (*O2-), hydrogen peroxide (H2O2), and hydroxyl a...
Oxidative stress has been defined as an imbalance between oxidants and antioxidants and more recentl...
Reactive oxygen species (ROS), including superoxide (*O2-), hydrogen peroxide (H2O2), and hydroxyl a...
421-440Over the last two decades, it has become increasingly clear that reactive oxygen species (ROS...
Significance: Reactive oxygen species (ROS) play a critical role in vascular disease. While there ar...
Production of considerable amounts of reactive oxygen species (ROS) eventually leads to oxidative st...
Redox control is lost when the antioxidant defense system cannot remove abnormally high concentratio...
Production of considerable amounts of reactive oxygen species (ROS) eventually leads to oxidative st...
Production of considerable amounts of reactive oxygen species (ROS) eventually leads to oxidative st...
Production of considerable amounts of reactive oxygen species (ROS) eventually leads to oxidative st...
Production of considerable amounts of reactive oxygen species (ROS) eventually leads to oxidative st...
Production of considerable amounts of reactive oxygen species (ROS) eventually leads to oxidative st...
Redox control is lost when the antioxidant defense system cannot remove abnormally high concentratio...
Atherosclerosis and its major complications –myocardial infarction and stroke– remain major causes o...
Cardiovascular diseases (CVDs) have been the prime cause of mortality worldwide for decades. However...
Reactive oxygen species (ROS), including superoxide (*O2-), hydrogen peroxide (H2O2), and hydroxyl a...
Oxidative stress has been defined as an imbalance between oxidants and antioxidants and more recentl...
Reactive oxygen species (ROS), including superoxide (*O2-), hydrogen peroxide (H2O2), and hydroxyl a...
421-440Over the last two decades, it has become increasingly clear that reactive oxygen species (ROS...
Significance: Reactive oxygen species (ROS) play a critical role in vascular disease. While there ar...
Production of considerable amounts of reactive oxygen species (ROS) eventually leads to oxidative st...
Redox control is lost when the antioxidant defense system cannot remove abnormally high concentratio...
Production of considerable amounts of reactive oxygen species (ROS) eventually leads to oxidative st...
Production of considerable amounts of reactive oxygen species (ROS) eventually leads to oxidative st...
Production of considerable amounts of reactive oxygen species (ROS) eventually leads to oxidative st...
Production of considerable amounts of reactive oxygen species (ROS) eventually leads to oxidative st...
Production of considerable amounts of reactive oxygen species (ROS) eventually leads to oxidative st...
Redox control is lost when the antioxidant defense system cannot remove abnormally high concentratio...
Atherosclerosis and its major complications –myocardial infarction and stroke– remain major causes o...