Background—Increased production of reactive oxygen species (ROS) throughout the vascular wall is a feature of cardiovascular disease states, but therapeutic strategies remain limited by our incomplete understanding of the role and contribution of specific vascular cell ROS to disease pathogenesis. To investigate the specific role of endothelial cell (EC) ROS in the development of structural vascular disease, we generated a mouse model of endothelium-specific Nox2 overexpression and tested the susceptibility to aortic dissection after angiotensin II (Ang II) infusion. Methods and Results—A specific increase in endothelial ROS production in Nox2 transgenic mice was sufficient to cause Ang II–mediated aortic dissection, which was never obs...
The Nox2-containing NADPH oxidase enzyme is expressed in a broad range of cell types throughout the ...
Endothelial cells (ECs) express a Nox2 enzyme, which, by generating reactive oxygen species (ROS), c...
Diseases such as hypertension, atherosclerosis, hyperlipidemia, and diabetes are associated with vas...
BACKGROUND: Increased production of reactive oxygen species (ROS) throughout the vascular wall is a ...
Aortic dissection is a detrimental disease with a high mortality. However, the mechanisms regulating...
Vascular disease states are associated with endothelial dysfunction and increased production of reac...
AIMS: Vascular disease states are associated with endothelial dysfunction and increased production o...
International audienceMice with a global deletion of α1AMPK are characterized by endothelial dysfunc...
Endothelial microparticles are effectors of endothelial damage; however mechanisms involved are uncl...
International audienceOxidative stress leads to vascular damage and participates in the pathomechani...
Objectives This study sought to investigate the effect of endothelial dysfunction on the development...
NADPH oxidase (Nox)-derived reactive oxygen species (ROS) are known to be involved in angiotensin II...
Objectives: This study sought to investigate the effect of endothelial dysfunction on the developmen...
AbstractVascular endothelial cells (ECs) are responsible for post-ischemic angiogenesis, a process t...
The Nox2-containing NADPH oxidase enzyme is expressed in a broad range of cell types throughout the ...
Endothelial cells (ECs) express a Nox2 enzyme, which, by generating reactive oxygen species (ROS), c...
Diseases such as hypertension, atherosclerosis, hyperlipidemia, and diabetes are associated with vas...
BACKGROUND: Increased production of reactive oxygen species (ROS) throughout the vascular wall is a ...
Aortic dissection is a detrimental disease with a high mortality. However, the mechanisms regulating...
Vascular disease states are associated with endothelial dysfunction and increased production of reac...
AIMS: Vascular disease states are associated with endothelial dysfunction and increased production o...
International audienceMice with a global deletion of α1AMPK are characterized by endothelial dysfunc...
Endothelial microparticles are effectors of endothelial damage; however mechanisms involved are uncl...
International audienceOxidative stress leads to vascular damage and participates in the pathomechani...
Objectives This study sought to investigate the effect of endothelial dysfunction on the development...
NADPH oxidase (Nox)-derived reactive oxygen species (ROS) are known to be involved in angiotensin II...
Objectives: This study sought to investigate the effect of endothelial dysfunction on the developmen...
AbstractVascular endothelial cells (ECs) are responsible for post-ischemic angiogenesis, a process t...
The Nox2-containing NADPH oxidase enzyme is expressed in a broad range of cell types throughout the ...
Endothelial cells (ECs) express a Nox2 enzyme, which, by generating reactive oxygen species (ROS), c...
Diseases such as hypertension, atherosclerosis, hyperlipidemia, and diabetes are associated with vas...