Insulin resistance is characterized by excessive endothelial cell generation of potentially cytotoxic concentrations of reactive oxygen species. We examined the role of NADPH oxidase (Nox) and specifically Nox2 isoform in superoxide generation in two complementary in vivo models of human insulin resistance (endothelial specific and whole body). Using three complementary methods to measure superoxide, we demonstrated higher levels of superoxide in insulin-resistant endothelial cells, which could be pharmacologically inhibited both acutely and chronically, using the Nox inhibitor gp91ds-tat. Similarly, insulin resistance-induced impairment of endothelial-mediated vasorelaxation could also be reversed using gp91ds-tat. siRNA-mediated knockdown...
Background-In diabetes mellitus, vascular complications such as atherosclerosis are a major cause of...
Rationale: In the endothelium, insulin stimulates endothelial NO synthase (eNOS) to generate the ant...
The Nox2-containing NADPH oxidase enzyme is expressed in a broad range of cell types throughout the ...
Insulin resistance is characterized by excessive endothelial cell generation of potentially cytotoxi...
Insulin resistance is characterized by excessive endothelial cell generation of potentially cytotoxi...
Insulin resistance leads to excessive endothelial cell (EC) superoxide generation and accelerated at...
Background—In diabetes mellitus, vascular complications such as atherosclerosis are a major cause of...
Vascular disease states are associated with endothelial dysfunction and increased production of reac...
Chronic hyperglycaemia and oxidative stress in diabetes trigger sustained vascular inflammation as w...
In insulin-secreting cells, expression of NADPH oxidase (NOX), a potent source of ROS, has been repo...
a potent source of ROS, has been reported, along with contro-versial findings regarding its function...
Oxidative stress within the vascular endothelium, due to excess generation of reactive oxygen specie...
OBJECTIVE: Increased reactive oxygen species (ROS) production is involved in the pathophysiology of ...
In type 2 diabetes, metabolic stress has a negative impact on pancreatic β-cell function and surviva...
The International Diabetes Federation estimates that 316 million people are currently affected by im...
Background-In diabetes mellitus, vascular complications such as atherosclerosis are a major cause of...
Rationale: In the endothelium, insulin stimulates endothelial NO synthase (eNOS) to generate the ant...
The Nox2-containing NADPH oxidase enzyme is expressed in a broad range of cell types throughout the ...
Insulin resistance is characterized by excessive endothelial cell generation of potentially cytotoxi...
Insulin resistance is characterized by excessive endothelial cell generation of potentially cytotoxi...
Insulin resistance leads to excessive endothelial cell (EC) superoxide generation and accelerated at...
Background—In diabetes mellitus, vascular complications such as atherosclerosis are a major cause of...
Vascular disease states are associated with endothelial dysfunction and increased production of reac...
Chronic hyperglycaemia and oxidative stress in diabetes trigger sustained vascular inflammation as w...
In insulin-secreting cells, expression of NADPH oxidase (NOX), a potent source of ROS, has been repo...
a potent source of ROS, has been reported, along with contro-versial findings regarding its function...
Oxidative stress within the vascular endothelium, due to excess generation of reactive oxygen specie...
OBJECTIVE: Increased reactive oxygen species (ROS) production is involved in the pathophysiology of ...
In type 2 diabetes, metabolic stress has a negative impact on pancreatic β-cell function and surviva...
The International Diabetes Federation estimates that 316 million people are currently affected by im...
Background-In diabetes mellitus, vascular complications such as atherosclerosis are a major cause of...
Rationale: In the endothelium, insulin stimulates endothelial NO synthase (eNOS) to generate the ant...
The Nox2-containing NADPH oxidase enzyme is expressed in a broad range of cell types throughout the ...