Objective: A poorly characterized phagocyte-type NADPH oxidase, which is reportedly NADH-rather than NADPH-dependent, is a major source of endothelial reactive oxygen species (ROS) production. We investigated the molecular nature of this oxidase and the characteristics of NADPH-versus NADH-dependent O-2(-) production in endothelial cells of three different species. Methods: NADPH oxidase expression in human, bovine and porcine endothelial cells was studied by RT-PCR and immunoblotting.O-2(-) production was assessed by lucigenin chemiluminescence and cytochrome c reduction assay. Results: The NADPH oxidase subunits p47-phox, p67-phox, p22-phox, gp91-phox, and rac 1 were all expressed in endothelial cells. NADPH-dependent O-2(-) production by...
Superoxide anion plays important roles in vascular disease states. Increased superoxide production c...
AbstractAn increasing body of evidence has demonstrated that NADPH oxidase plays a critical role in ...
The chemical composition, properties and activation mechanism of the O2(-)-forming NADPH oxidase of ...
The production of reactive oxygen species (ROS) within endothelial cells may have several effects, i...
The production of reactive oxygen species (ROS) within endothelial cells may have several effects, i...
The production of reactive oxygen species (ROS) within endothelial cells may have several effects, i...
Increased superoxide (SO) production in animal models of vascular disease contributes to reduced nit...
The healthy endothelium prevents platelet aggregation and leucocyte adhesion, controls permeability ...
Significance: Reactive oxygen species (ROS) play a critical role in vascular disease. While there ar...
International audienceThe reactive oxygen species (ROS)-producing enzyme NADPH oxidase (NOX) was fir...
The reactive oxygen species (ROS)-producing enzyme NADPH oxidase (NOX) was first identified in the m...
Reactive oxidant species (ROS) seem to play a key role in the atherosclerotic process via a series o...
Reactive oxygen species play an important role in a variety of (patho)physiological vascular process...
OBJECTIVE: Increased reactive oxygen species (ROS) production is involved in the pathophysiology of ...
In this issue of Circulation Research, Görlach et al1present compelling evidence for conventional g...
Superoxide anion plays important roles in vascular disease states. Increased superoxide production c...
AbstractAn increasing body of evidence has demonstrated that NADPH oxidase plays a critical role in ...
The chemical composition, properties and activation mechanism of the O2(-)-forming NADPH oxidase of ...
The production of reactive oxygen species (ROS) within endothelial cells may have several effects, i...
The production of reactive oxygen species (ROS) within endothelial cells may have several effects, i...
The production of reactive oxygen species (ROS) within endothelial cells may have several effects, i...
Increased superoxide (SO) production in animal models of vascular disease contributes to reduced nit...
The healthy endothelium prevents platelet aggregation and leucocyte adhesion, controls permeability ...
Significance: Reactive oxygen species (ROS) play a critical role in vascular disease. While there ar...
International audienceThe reactive oxygen species (ROS)-producing enzyme NADPH oxidase (NOX) was fir...
The reactive oxygen species (ROS)-producing enzyme NADPH oxidase (NOX) was first identified in the m...
Reactive oxidant species (ROS) seem to play a key role in the atherosclerotic process via a series o...
Reactive oxygen species play an important role in a variety of (patho)physiological vascular process...
OBJECTIVE: Increased reactive oxygen species (ROS) production is involved in the pathophysiology of ...
In this issue of Circulation Research, Görlach et al1present compelling evidence for conventional g...
Superoxide anion plays important roles in vascular disease states. Increased superoxide production c...
AbstractAn increasing body of evidence has demonstrated that NADPH oxidase plays a critical role in ...
The chemical composition, properties and activation mechanism of the O2(-)-forming NADPH oxidase of ...