oxygen. Excessive reactive oxygen species production under a variety of pathological conditions has been attributed to increased Nox activity. Here, we aimed at investigating the role of Nox in cardiac ischemic injury through gain- and loss-of-function approaches. Methods and Results-—We modulated Nox activity in the heart by cardiac-specific expression of Nox4 and dominant negative Nox4. Modulation of Nox activity drastically changes the cellular redox status. Increasing Nox activity by cardiac-specific overexpression of Nox4 imposed oxidative stress on the myocardium [increased NAD(P)+/NAD(P)H and decreased glutathione/ glutathione disulfide ratio] and worsened cardiac energetics and contractile function after ischemia-reperfusion. Overex...
Redox signalling in mitochondria plays an important role in myocardial ischaemia/reperfusion (I/R) i...
AbstractObjectivesThis study was designed to investigate whether nicotinamide adenine dinucleotide 3...
AbstractThe heart has complex mechanisms that facilitate the maintenance of an oxygen supply–demand ...
oxygen. Excessive reactive oxygen species production under a variety of pathological conditions has ...
Reactive oxygen species (ROS), such as superoxide (O2−) and hydrogen peroxide (H2O2), play an import...
Oxidative stress is critically involved in the pathophysiology of myocardial ischemic-reperfusion (I...
Myocardial reperfusion injury is mediated by several processes including increase of reactive oxygen...
Cardiac remodelling occurs in response to stress, such as chronic hypertension or myocardial infarct...
Reactive oxygen species (ROS) are generated by several different cellular sources, and their accumul...
Nicotinamide adenine dinucleotide phosphate (NADPH) oxidases regulate production of reactive oxygen ...
Aims: Oxidative stress is implicated in cardiomyocyte cell death and cardiac remodeling in the faili...
AbstractNADPH oxidase-4 (Nox4) is an important modulator of redox signaling that is inducible at the...
Oxidative stress is a major cause of I/R injury. NADPH oxidase is an important source of oxidative s...
Increased oxidative stress plays an important role in the pathophysiology of many diseases such as a...
Reactive oxygen species (ROS)-dependent production of ROS underlies sustained oxidative stress, whic...
Redox signalling in mitochondria plays an important role in myocardial ischaemia/reperfusion (I/R) i...
AbstractObjectivesThis study was designed to investigate whether nicotinamide adenine dinucleotide 3...
AbstractThe heart has complex mechanisms that facilitate the maintenance of an oxygen supply–demand ...
oxygen. Excessive reactive oxygen species production under a variety of pathological conditions has ...
Reactive oxygen species (ROS), such as superoxide (O2−) and hydrogen peroxide (H2O2), play an import...
Oxidative stress is critically involved in the pathophysiology of myocardial ischemic-reperfusion (I...
Myocardial reperfusion injury is mediated by several processes including increase of reactive oxygen...
Cardiac remodelling occurs in response to stress, such as chronic hypertension or myocardial infarct...
Reactive oxygen species (ROS) are generated by several different cellular sources, and their accumul...
Nicotinamide adenine dinucleotide phosphate (NADPH) oxidases regulate production of reactive oxygen ...
Aims: Oxidative stress is implicated in cardiomyocyte cell death and cardiac remodeling in the faili...
AbstractNADPH oxidase-4 (Nox4) is an important modulator of redox signaling that is inducible at the...
Oxidative stress is a major cause of I/R injury. NADPH oxidase is an important source of oxidative s...
Increased oxidative stress plays an important role in the pathophysiology of many diseases such as a...
Reactive oxygen species (ROS)-dependent production of ROS underlies sustained oxidative stress, whic...
Redox signalling in mitochondria plays an important role in myocardial ischaemia/reperfusion (I/R) i...
AbstractObjectivesThis study was designed to investigate whether nicotinamide adenine dinucleotide 3...
AbstractThe heart has complex mechanisms that facilitate the maintenance of an oxygen supply–demand ...