Superoxide anion plays important roles in vascular disease states. Increased superoxide production contributes to reduced nitric oxide (NO) bioactivity and endothelial dysfunction in experimental models of vascular disease. We measured superoxide production by NAD(P)H oxidase in human blood vessels and examined the relationships between NAD(P)H oxidase activity, NO-mediated endothelial function, and clinical risk factors for atherosclerosis. Endothelium-dependent vasorelaxations and direct measurements of vascular superoxide production were determined in human saphenous veins obtained from 133 patients with coronary artery disease and identified risk factors. The predominant source of vascular superoxide production was an NAD(P)H-dependent ...
Objective—Oxidative stress plays a critical role in the pathogenesis of atherosclerosis. The NADPH o...
Background— Oxidative stress plays important role in the pathogenesis of atherosclerosis and coronar...
The NO/superoxide (O2−) balance is a key regulator of endothelial function. O2− levels are elevated ...
Superoxide anion plays important roles in vascular disease states. Increased superoxide production c...
Vascular superoxide production is increased in animal models of atherosclerosis, diabetes and hypert...
Superoxide anion plays important roles in vascular disease states. Increased superoxide production c...
Superoxide anion plays important roles in vascular disease states. Increased superoxide production c...
Common vascular disease states including diabetes, hypertension and atherosclerosis are associated w...
Objective— Impaired endothelial function, characterized by nitric oxide scavenging by increased supe...
Increased superoxide (SO) production in animal models of vascular disease contributes to reduced nit...
Increased superoxide (SO) production in animal models of vascular disease contributes to reduced nit...
Background— Increased superoxide production contributes to reduced vascular nitric oxide (NO) bioact...
Increased vascular reactive oxygen species production, especially superoxide anion, contributes sign...
BACKGROUND: Oxidative stress plays important role in the pathogenesis of atherosclerosis and coronar...
Objective—Oxidative stress plays a critical role in the pathogenesis of atherosclerosis. The NADPH o...
Objective—Oxidative stress plays a critical role in the pathogenesis of atherosclerosis. The NADPH o...
Background— Oxidative stress plays important role in the pathogenesis of atherosclerosis and coronar...
The NO/superoxide (O2−) balance is a key regulator of endothelial function. O2− levels are elevated ...
Superoxide anion plays important roles in vascular disease states. Increased superoxide production c...
Vascular superoxide production is increased in animal models of atherosclerosis, diabetes and hypert...
Superoxide anion plays important roles in vascular disease states. Increased superoxide production c...
Superoxide anion plays important roles in vascular disease states. Increased superoxide production c...
Common vascular disease states including diabetes, hypertension and atherosclerosis are associated w...
Objective— Impaired endothelial function, characterized by nitric oxide scavenging by increased supe...
Increased superoxide (SO) production in animal models of vascular disease contributes to reduced nit...
Increased superoxide (SO) production in animal models of vascular disease contributes to reduced nit...
Background— Increased superoxide production contributes to reduced vascular nitric oxide (NO) bioact...
Increased vascular reactive oxygen species production, especially superoxide anion, contributes sign...
BACKGROUND: Oxidative stress plays important role in the pathogenesis of atherosclerosis and coronar...
Objective—Oxidative stress plays a critical role in the pathogenesis of atherosclerosis. The NADPH o...
Objective—Oxidative stress plays a critical role in the pathogenesis of atherosclerosis. The NADPH o...
Background— Oxidative stress plays important role in the pathogenesis of atherosclerosis and coronar...
The NO/superoxide (O2−) balance is a key regulator of endothelial function. O2− levels are elevated ...