Oxidative stress promotes cardiac myocyte apoptosis through the mitochondrial death pathway. Since Bcl-2 family proteins are key regulators of apoptosis, we examined the effects of H2O2 on the expression of principal Bcl-2 family proteins (Bcl-2, Bcl-xL, Bax, Bad) in neonatal rat cardiac myocytes. Protein expression was assessed by immunoblotting. Bcl-2, Bax, and Bad were all down-regulated in myocytes exposed to 0.2 mm H2O2, a concentration that induces apoptosis. In contrast, although Bcl-xL levels initially declined, the protein was re-expressed from 4-6 h. Bcl-xL mRNA was up-regulated from 2 to 4 h in neonatal rat or mouse cardiac myocytes exposed to H2O2, consistent with the re-expression of protein. Four different untranslated first e...
Neonatal rat cardiomyocytes were subjected to 24 h of hypoxia 95%N 2/5%CO2 and 24 h of hypoxia plus ...
Endogenous oxidative stress is a likely cause of cardiac myocyte death in vivo. We examined the earl...
Endogenous oxidative stress is a likely cause of cardiac myocyte death in vivo. We examined the earl...
Cardiac myocyte apoptosis is potentially important in many cardiac disorders. In other cells, Bcl-2 ...
High levels of oxidative stress promote cardiac myocyte death, though lower levels are potentially c...
Oxidative stress induces cardiac myocyte apoptosis. At least some effects are probably mediated thro...
International audienceWe have studied the magnitude of apoptosis in heart, slow-twitch skeletal musc...
Bcl-2 is an antiapoptotic molecule that prevents oxidative stress damage and cell death. We investig...
The Mdm2 ubiquitin ligase is an important regulator of p53 abundance and p53-dependent apoptosis. Md...
The relationship between oxidative stress and Bcl-2 expression was investigated in two different exp...
The role of oxidative stress and apoptosis has recently been recognized as an important determinant ...
Aims: Apoptotic signaling proteins were evaluated in postmitotic skeletal myotubes to test the hypot...
ABSTRACT Hydrogen peroxide is a key mediator of oxidative stress known to be important in various ce...
AbstractThe maintenance of homeostasis in normal tissues reflects a balance between cell proliferati...
AbstractCardiac myocytes undergo apoptosis under condition of ischemia. Little is known, however, ab...
Neonatal rat cardiomyocytes were subjected to 24 h of hypoxia 95%N 2/5%CO2 and 24 h of hypoxia plus ...
Endogenous oxidative stress is a likely cause of cardiac myocyte death in vivo. We examined the earl...
Endogenous oxidative stress is a likely cause of cardiac myocyte death in vivo. We examined the earl...
Cardiac myocyte apoptosis is potentially important in many cardiac disorders. In other cells, Bcl-2 ...
High levels of oxidative stress promote cardiac myocyte death, though lower levels are potentially c...
Oxidative stress induces cardiac myocyte apoptosis. At least some effects are probably mediated thro...
International audienceWe have studied the magnitude of apoptosis in heart, slow-twitch skeletal musc...
Bcl-2 is an antiapoptotic molecule that prevents oxidative stress damage and cell death. We investig...
The Mdm2 ubiquitin ligase is an important regulator of p53 abundance and p53-dependent apoptosis. Md...
The relationship between oxidative stress and Bcl-2 expression was investigated in two different exp...
The role of oxidative stress and apoptosis has recently been recognized as an important determinant ...
Aims: Apoptotic signaling proteins were evaluated in postmitotic skeletal myotubes to test the hypot...
ABSTRACT Hydrogen peroxide is a key mediator of oxidative stress known to be important in various ce...
AbstractThe maintenance of homeostasis in normal tissues reflects a balance between cell proliferati...
AbstractCardiac myocytes undergo apoptosis under condition of ischemia. Little is known, however, ab...
Neonatal rat cardiomyocytes were subjected to 24 h of hypoxia 95%N 2/5%CO2 and 24 h of hypoxia plus ...
Endogenous oxidative stress is a likely cause of cardiac myocyte death in vivo. We examined the earl...
Endogenous oxidative stress is a likely cause of cardiac myocyte death in vivo. We examined the earl...