BackgroundRenal interstitial inflammation and oxidative stress are invariably present and play a key role in the pathogenesis of hypertension in experimental animals. Mitochondria are the major source of reactive oxygen species (ROS). ROS generated in the mitochondria are normally contained by the mitochondrial antioxidant system including manganese superoxide dismutase (MnSOD). We have previously shown that a high salt diet causes hypertension in MnSOD-deficient (MnSOD(+/-)) mice but not in wild-type mice. The present study was undertaken to determine the effect of a high salt diet on oxidative and inflammatory pathways in the kidneys of MnSOD(+/-) mice compared to the wild-type mice.MethodsWild-type (MnSOD(+/+)) and MnSOD(+/-) mice were r...
We assessed the relative contribution of the mitochondrial respiratory chain and NADPH (nicotinamide...
Mineralocorticoid receptor (MR) antagonists attenuate renal injury in salt-sensitive hypertensive ra...
Mineralocorticoid receptor (MR) antagonists attenuate renal injury in salt-sensitive hypertensive ra...
BackgroundRenal interstitial inflammation and oxidative stress are invariably present and play a key...
AbstractAngiotensin II (AngII) elicits the production of superoxide (O2•−) from mitochondria in nume...
Angiotensin II (AngII) elicits the production of superoxide (O2•−) from mitochondria in numerous cel...
Angiotensin II (AngII) elicits the production of superoxide (O2(•-)) from mitochondria in numerous c...
International audienceThere is evidence that diets rich in salt or simple sugars as fructose are ass...
International audienceThere is evidence that diets rich in salt or simple sugars as fructose are ass...
International audienceThere is evidence that diets rich in salt or simple sugars as fructose are ass...
International audienceThere is evidence that diets rich in salt or simple sugars as fructose are ass...
Hypertension causes target organ damage (TOD) that involves vasculature, heart, brain and kidneys. ...
Hypertension causes target organ damage (TOD) that involves vasculature, heart, brain and kidneys. ...
Mechanisms underlying hypertensive target organ damage (TOD) are not completely understood. The path...
Abstract: Hypertension causes target organ damage (TOD) that involves vasculature, heart, brain and ...
We assessed the relative contribution of the mitochondrial respiratory chain and NADPH (nicotinamide...
Mineralocorticoid receptor (MR) antagonists attenuate renal injury in salt-sensitive hypertensive ra...
Mineralocorticoid receptor (MR) antagonists attenuate renal injury in salt-sensitive hypertensive ra...
BackgroundRenal interstitial inflammation and oxidative stress are invariably present and play a key...
AbstractAngiotensin II (AngII) elicits the production of superoxide (O2•−) from mitochondria in nume...
Angiotensin II (AngII) elicits the production of superoxide (O2•−) from mitochondria in numerous cel...
Angiotensin II (AngII) elicits the production of superoxide (O2(•-)) from mitochondria in numerous c...
International audienceThere is evidence that diets rich in salt or simple sugars as fructose are ass...
International audienceThere is evidence that diets rich in salt or simple sugars as fructose are ass...
International audienceThere is evidence that diets rich in salt or simple sugars as fructose are ass...
International audienceThere is evidence that diets rich in salt or simple sugars as fructose are ass...
Hypertension causes target organ damage (TOD) that involves vasculature, heart, brain and kidneys. ...
Hypertension causes target organ damage (TOD) that involves vasculature, heart, brain and kidneys. ...
Mechanisms underlying hypertensive target organ damage (TOD) are not completely understood. The path...
Abstract: Hypertension causes target organ damage (TOD) that involves vasculature, heart, brain and ...
We assessed the relative contribution of the mitochondrial respiratory chain and NADPH (nicotinamide...
Mineralocorticoid receptor (MR) antagonists attenuate renal injury in salt-sensitive hypertensive ra...
Mineralocorticoid receptor (MR) antagonists attenuate renal injury in salt-sensitive hypertensive ra...