Vascular remodeling under conditions of growth or exercise, or during recovery from arterial restriction or blockage is essential for health, but mechanisms are poorly understood. It has been proposed that endothelial cells have a preferred level of fluid shear stress, or 'set point', that determines remodeling. We show that human umbilical vein endothelial cells respond optimally within a range of fluid shear stress that approximate physiological shear. Lymphatic endothelial cells, which experience much lower flow in vivo, show similar effects but at lower value of shear stress. VEGFR3 levels, a component of a junctional mechanosensory complex, mediate these differences. Experiments in mice and zebrafish demonstrate that changing levels of...
Mechanical cues and biochemical stimulations impact cell functions throughout the body. We investiga...
SummaryFluid shear stress (FSS) from blood flow acting on the endothelium critically regulates vascu...
Fluid shear stress (FSS) from blood flow acting on the endothelium critically regulates vascular mor...
Vascular remodeling under conditions of growth or exercise, or during recovery from arterial restric...
Contains fulltext : 154418.pdf (publisher's version ) (Open Access)Vascular remode...
Vascular endothelial growth factor (VEGF) plays a crucial role in developmental and pathological ang...
Vascular endothelial growth factor (VEGF) plays a crucial role in developmental and pathological ang...
Vascular endothelial cells form the inner lining of all blood vessels and play a central role in ves...
Shear stress and the endothelium. Vascular endothelial cells (ECs) in vivo are influenced by two dis...
International audienceBlood flow produces mechanical frictional forces, parallel to the blood flow e...
Many cell types can transduce mechanical forces leading to changes in gene expression or activation ...
Objective—Arterial-venous specification in the embryo has been assumed to depend on the influence of...
AbstractArterial hemodynamic shear stress and blood vessel stiffening both significantly influence t...
The circulatory system is the first organ system to become functional during embryonic development a...
Flowing blood exerts a frictional force, fluid shear stress (FSS), on the endothelial cells that lin...
Mechanical cues and biochemical stimulations impact cell functions throughout the body. We investiga...
SummaryFluid shear stress (FSS) from blood flow acting on the endothelium critically regulates vascu...
Fluid shear stress (FSS) from blood flow acting on the endothelium critically regulates vascular mor...
Vascular remodeling under conditions of growth or exercise, or during recovery from arterial restric...
Contains fulltext : 154418.pdf (publisher's version ) (Open Access)Vascular remode...
Vascular endothelial growth factor (VEGF) plays a crucial role in developmental and pathological ang...
Vascular endothelial growth factor (VEGF) plays a crucial role in developmental and pathological ang...
Vascular endothelial cells form the inner lining of all blood vessels and play a central role in ves...
Shear stress and the endothelium. Vascular endothelial cells (ECs) in vivo are influenced by two dis...
International audienceBlood flow produces mechanical frictional forces, parallel to the blood flow e...
Many cell types can transduce mechanical forces leading to changes in gene expression or activation ...
Objective—Arterial-venous specification in the embryo has been assumed to depend on the influence of...
AbstractArterial hemodynamic shear stress and blood vessel stiffening both significantly influence t...
The circulatory system is the first organ system to become functional during embryonic development a...
Flowing blood exerts a frictional force, fluid shear stress (FSS), on the endothelial cells that lin...
Mechanical cues and biochemical stimulations impact cell functions throughout the body. We investiga...
SummaryFluid shear stress (FSS) from blood flow acting on the endothelium critically regulates vascu...
Fluid shear stress (FSS) from blood flow acting on the endothelium critically regulates vascular mor...