Reactive oxygen and nitrogen species such as superoxide (O(2)(-)) and nitric oxide (NO) are produced under diverse conditions and provoke distinct signaling reactions. The formation of NO has been shown to induce apoptosis and/or necrosis in mesangial cells and to protect other cells such as hepatocytes. Often, NO and O(2)(-) are simultaneously generated, which results in their diffusion-controlled interaction and, thus, redirects the signaling properties of either NO or O(2)(-). This has been proven for mesangial cells, where O(2)(-) formation attenuates NO-initiated apoptosis. As the mechanisms involved remained unclear, we studied the potential impact of the glutathione redox system and compared the results obtained with mesangial cells ...
Changing gears in the course of glomerulonephritis by shifting superoxide to nitric oxide-dominated ...
Cytokine-induced expression of tPA is differentially modulated by NO and ROS in rat mesangial cells....
Inducible nitric oxide synthase mRNA and activity in glomerular mesangial cells. Previous studies ha...
Nitric oxide (NO) is a widely recognized mediator of physiological and pathophysiological signal tra...
Nitric oxide and apoptosis in mesangial cells. Radicals such as nitric oxide (NO) or superoxide (O2-...
Nitric oxide and superoxide induced p53 and Bax accumulation during mesangial cell apoptosis. During...
Nitric oxide induces heme oxygenase-1 gene expression in mesangial cells.BackgroundNitric oxide (NO)...
Glomerular mesangial cells can produce high amounts of nitric oxide (NO) and reactive oxygen species...
Cross-talk between nitric oxide and superoxide determines ceramide formation and apoptosis in glomer...
Inflammatory diseases such as proliferative glomerulonephritis are associated with the production of...
In acute glomerulonephritis (GN), increased nitric oxide (NO) production occurs, suggesting a pathop...
In acute glomerulonephritis (GN), increased nitric oxide (NO) production occurs, suggesting a pathop...
AbstractNitric oxide (NO) plays relevant roles in signal transduction in physiopathology and its eff...
A protective role for endothelial nitric oxide synthase in glomerulonephritis. In acute glomerulonep...
The Janus face of nitric oxide (NO) has prompted a debate as to whether NO plays a deleterious or pr...
Changing gears in the course of glomerulonephritis by shifting superoxide to nitric oxide-dominated ...
Cytokine-induced expression of tPA is differentially modulated by NO and ROS in rat mesangial cells....
Inducible nitric oxide synthase mRNA and activity in glomerular mesangial cells. Previous studies ha...
Nitric oxide (NO) is a widely recognized mediator of physiological and pathophysiological signal tra...
Nitric oxide and apoptosis in mesangial cells. Radicals such as nitric oxide (NO) or superoxide (O2-...
Nitric oxide and superoxide induced p53 and Bax accumulation during mesangial cell apoptosis. During...
Nitric oxide induces heme oxygenase-1 gene expression in mesangial cells.BackgroundNitric oxide (NO)...
Glomerular mesangial cells can produce high amounts of nitric oxide (NO) and reactive oxygen species...
Cross-talk between nitric oxide and superoxide determines ceramide formation and apoptosis in glomer...
Inflammatory diseases such as proliferative glomerulonephritis are associated with the production of...
In acute glomerulonephritis (GN), increased nitric oxide (NO) production occurs, suggesting a pathop...
In acute glomerulonephritis (GN), increased nitric oxide (NO) production occurs, suggesting a pathop...
AbstractNitric oxide (NO) plays relevant roles in signal transduction in physiopathology and its eff...
A protective role for endothelial nitric oxide synthase in glomerulonephritis. In acute glomerulonep...
The Janus face of nitric oxide (NO) has prompted a debate as to whether NO plays a deleterious or pr...
Changing gears in the course of glomerulonephritis by shifting superoxide to nitric oxide-dominated ...
Cytokine-induced expression of tPA is differentially modulated by NO and ROS in rat mesangial cells....
Inducible nitric oxide synthase mRNA and activity in glomerular mesangial cells. Previous studies ha...