Shear stress due to blood flow is the most important force stimulating vascular endothelium. Acute stimulation of the endothelium by shear stress induces a vasodilatation mainly due to the release of nitric oxide (NO) among other relaxing agents. After a chronic increase in blood flow (shear stress), the endothelium triggers diameter enlargement, medial hypertrophy and improvement of arterial contractility and endothelium-mediated dilation. Shear stress-mediated outward remodeling requires an initial inflammatory response followed by the production of reactive oxygen species (ROS) and peroxinitrite anions, which activate MMPs and extracellular matrix digestion allowing diameter expansion. This outward remodeling occurs in collateral growth ...
Micro- and macrovascular complications are major causes of disability and death in patients with dia...
BACKGROUND: A chronic increase in blood flow in resistance arteries is associated with increased lum...
Shear stress and the endothelium. Vascular endothelial cells (ECs) in vivo are influenced by two dis...
International audienceShear stress due to blood flow is the most important force stimulating vascula...
Vascular complications are an important pathological issue in diabetes that lead to the further func...
International audienceEndothelial dysfunction in resistance arteries leads to end organ damages in t...
To test the deterioration of endothelial function during the progression of diabetes, shear stress-i...
Flow-mediated remodeling of resistance arteries is essential for revascularization in ischemic disea...
The SOD mimetic tempol restores vasodilation in afferent arterioles of experimental diabetes.Backgro...
Blood flow feeding tissues and organs is closely regulated in order to meet metabolic and functional...
AbstractThe vascular endothelium is a multifunctional organ and is critically involved in modulating...
Hyperglycemia and insulin resistance are key players in the development of atherosclerosis and its c...
The variable nature of vascular dysfunction in diabetes is not well understood. We explored the func...
Diabetes mellitus is a risk factor for cardiovascular disease; however, the mechanisms through which...
Aging is a key risk factor associated with the associated onset of cardiovascular disease. Notably, ...
Micro- and macrovascular complications are major causes of disability and death in patients with dia...
BACKGROUND: A chronic increase in blood flow in resistance arteries is associated with increased lum...
Shear stress and the endothelium. Vascular endothelial cells (ECs) in vivo are influenced by two dis...
International audienceShear stress due to blood flow is the most important force stimulating vascula...
Vascular complications are an important pathological issue in diabetes that lead to the further func...
International audienceEndothelial dysfunction in resistance arteries leads to end organ damages in t...
To test the deterioration of endothelial function during the progression of diabetes, shear stress-i...
Flow-mediated remodeling of resistance arteries is essential for revascularization in ischemic disea...
The SOD mimetic tempol restores vasodilation in afferent arterioles of experimental diabetes.Backgro...
Blood flow feeding tissues and organs is closely regulated in order to meet metabolic and functional...
AbstractThe vascular endothelium is a multifunctional organ and is critically involved in modulating...
Hyperglycemia and insulin resistance are key players in the development of atherosclerosis and its c...
The variable nature of vascular dysfunction in diabetes is not well understood. We explored the func...
Diabetes mellitus is a risk factor for cardiovascular disease; however, the mechanisms through which...
Aging is a key risk factor associated with the associated onset of cardiovascular disease. Notably, ...
Micro- and macrovascular complications are major causes of disability and death in patients with dia...
BACKGROUND: A chronic increase in blood flow in resistance arteries is associated with increased lum...
Shear stress and the endothelium. Vascular endothelial cells (ECs) in vivo are influenced by two dis...