ObjectivesWe investigated the effect of reducing mitochondrial oxidative stress by the mitochondrial-targeted antioxidant peptide SS-31 in hypertensive cardiomyopathy.BackgroundOxidative stress has been implicated in hypertensive cardiovascular diseases. Mitochondria and nicotinamide adenine dinucleotide phosphate (NADPH) oxidase have been proposed as primary sites of reactive oxygen species (ROS) generation.MethodsThe mitochondrial targeted antioxidant peptide SS-31 was used to determine the role of mitochondrial oxidative stress in angiotensin II (Ang)-induced cardiomyopathy as well as in Gαq overexpressing mice with heart failure.ResultsAng induces mitochondrial ROS in neonatal cardiomyocytes, which is prevented by SS-31, but not the non...
Recent experimental and clinical studies have suggested that oxidative stress is enhanced in myocard...
Myocardial tissue homeostasis is critically important for heart development, growth and function thr...
MI/R injury results in cardiac contractile dysfunction, and increased cell death principally due to ...
ObjectivesWe investigated the effect of reducing mitochondrial oxidative stress by the mitochondrial...
Hypertension causes target organ damage (TOD) that involves vasculature, heart, brain and kidneys. ...
Myocardial ischemia/reperfusion (MI/R) injury results in cardiac contractile dysfunction, and increa...
Mitochondria and mitochondrial proteins represent a group of promising pharmacological target candid...
Abstract: Hypertension causes target organ damage (TOD) that involves vasculature, heart, brain and ...
Abstract Heart failure, mostly associated with cardiac hypertrophy, is still a major cause of illnes...
International audienceHeart failure, mostly associated with cardiac hypertrophy, is a major cause of...
Heart failure, mostly associated with cardiac hypertrophy, is a major cause of illness and death. Ox...
Background: Cardiovascular diseases (CVDs) are a leading risk factor for mortality worldwide and the...
During myocardial ischemia, coronary blood flow interruption deprives cardiomyocytes of oxygen, gluc...
Mitochondria are a major site of reactive oxygen species production, which may contribute to the dev...
Abstract. During experimental hypertensive cardiac hypertrophy, the heart energy metabolism reverts ...
Recent experimental and clinical studies have suggested that oxidative stress is enhanced in myocard...
Myocardial tissue homeostasis is critically important for heart development, growth and function thr...
MI/R injury results in cardiac contractile dysfunction, and increased cell death principally due to ...
ObjectivesWe investigated the effect of reducing mitochondrial oxidative stress by the mitochondrial...
Hypertension causes target organ damage (TOD) that involves vasculature, heart, brain and kidneys. ...
Myocardial ischemia/reperfusion (MI/R) injury results in cardiac contractile dysfunction, and increa...
Mitochondria and mitochondrial proteins represent a group of promising pharmacological target candid...
Abstract: Hypertension causes target organ damage (TOD) that involves vasculature, heart, brain and ...
Abstract Heart failure, mostly associated with cardiac hypertrophy, is still a major cause of illnes...
International audienceHeart failure, mostly associated with cardiac hypertrophy, is a major cause of...
Heart failure, mostly associated with cardiac hypertrophy, is a major cause of illness and death. Ox...
Background: Cardiovascular diseases (CVDs) are a leading risk factor for mortality worldwide and the...
During myocardial ischemia, coronary blood flow interruption deprives cardiomyocytes of oxygen, gluc...
Mitochondria are a major site of reactive oxygen species production, which may contribute to the dev...
Abstract. During experimental hypertensive cardiac hypertrophy, the heart energy metabolism reverts ...
Recent experimental and clinical studies have suggested that oxidative stress is enhanced in myocard...
Myocardial tissue homeostasis is critically important for heart development, growth and function thr...
MI/R injury results in cardiac contractile dysfunction, and increased cell death principally due to ...