Objective—Blood flow is altered in metabolic and ischemic diseases with dramatic consequences. Resistance arteries structure and function remodel in response to chronic blood flow changes through a mechanism remaining mainly unknown. We hypothesized that the NO pathway and matrix metalloproteases (MMPs) activation might play a role in flow (shear stress)-induced microvascular remodeling. Methods and Results—Mesenteric resistance arteries were ligated to alter blood flow in vivo for 4 or 14 days: arteries were submitted to high (HF), low (LF), or normal flow (NF). Rats were treated with L-NAME, the angiotensin converting enzyme inhibitor perindopril or the MMPs inhibitor doxycycline. After 14 days, outward hypertrophic remodeling occurred in...
Abstract—Chronic increases in blood flow increase arterial diameter and NO-dependent dilation in res...
Altered activity of matrix metalloproteinases (MMPs) is implicated in the vascular remodeling of hyp...
This study was designed to characterize structural remodeling of male Wistar rat mesenteric arteries...
International audienceOBJECTIVE: Blood flow is altered in metabolic and ischemic diseases with drama...
International audienceOBJECTIVE: Blood flow is altered in metabolic and ischemic diseases with drama...
International audienceOBJECTIVE: Blood flow is altered in metabolic and ischemic diseases with drama...
Chronic increases in arterial blood flow elicit an adaptive response of the arterial wall, leading ...
Chronic increases in arterial blood flow elicit an adaptive response of the arterial wall, leading ...
International audienceAngiotensin II is a potent growth factor involved in arterial wall homeostasis...
International audienceAngiotensin II is a potent growth factor involved in arterial wall homeostasis...
International audienceHeme oxygenase 1 is induced by hemodynamic forces in vascular smooth muscle an...
Abstract only availableProlonged exposure to vasoconstrictors causes structural narrowing of the sma...
International audienceBlood flow reduction induces inward remodeling of resistance arteries (RAs). T...
Abstract—Although endothelium-derived NO is an important mediator in acute flow-induced changes in a...
This study was designed to characterize structural remodeling of male Wistar rat mesenteric arteries...
Abstract—Chronic increases in blood flow increase arterial diameter and NO-dependent dilation in res...
Altered activity of matrix metalloproteinases (MMPs) is implicated in the vascular remodeling of hyp...
This study was designed to characterize structural remodeling of male Wistar rat mesenteric arteries...
International audienceOBJECTIVE: Blood flow is altered in metabolic and ischemic diseases with drama...
International audienceOBJECTIVE: Blood flow is altered in metabolic and ischemic diseases with drama...
International audienceOBJECTIVE: Blood flow is altered in metabolic and ischemic diseases with drama...
Chronic increases in arterial blood flow elicit an adaptive response of the arterial wall, leading ...
Chronic increases in arterial blood flow elicit an adaptive response of the arterial wall, leading ...
International audienceAngiotensin II is a potent growth factor involved in arterial wall homeostasis...
International audienceAngiotensin II is a potent growth factor involved in arterial wall homeostasis...
International audienceHeme oxygenase 1 is induced by hemodynamic forces in vascular smooth muscle an...
Abstract only availableProlonged exposure to vasoconstrictors causes structural narrowing of the sma...
International audienceBlood flow reduction induces inward remodeling of resistance arteries (RAs). T...
Abstract—Although endothelium-derived NO is an important mediator in acute flow-induced changes in a...
This study was designed to characterize structural remodeling of male Wistar rat mesenteric arteries...
Abstract—Chronic increases in blood flow increase arterial diameter and NO-dependent dilation in res...
Altered activity of matrix metalloproteinases (MMPs) is implicated in the vascular remodeling of hyp...
This study was designed to characterize structural remodeling of male Wistar rat mesenteric arteries...