Summary Hemodynamic shear stresses cause endothelial cells (ECs) to polarize in the plane of the flow. Paradoxically, under strong shear flows, ECs disassemble their primary cilia, common sensors of shear, and thus must use an alternative mechanism of sensing the strength and direction of flow. In our experiments in microfluidic perfusion chambers, confluent ECs developed planar cell polarity at a rate proportional to the shear stress. The location of Golgi apparatus and microtubule organizing center was biased to the upstream side of the nucleus, i.e. the ECs polarized against the flow. These in vitro results agreed with observations in murine blood vessels, where EC polarization against the flow was stronger in high flow arteries than in ...
Atherosclerosis prone regions of the vasculature are exposed to disturbed flow where low and oscilla...
<p><b>A,</b> Overview of the axial polarization pattern of endothelial cells in a WT P6 retina vascu...
Atherosclerosis prone regions of the vasculature are exposed to disturbed flow where low and oscilla...
Hemodynamic shear stresses cause endothelial cells (ECs) to polarize in the plane of the flow. Parad...
Summary Hemodynamic shear stresses cause endothelial cells (ECs) to polarize in the plane of the flo...
AbstractAt present, little is known about how endothelial cells respond to spatial variations in flu...
Endothelial cells (ECs) respond to flow but the exact mechanism producing alignment is not completel...
Endothelial cells are stimulated by shear stress throughout the vasculature and respond with changes...
International audienceVascular networks form, remodel and mature under the influence of multiple sig...
<div><p>Disturbed flow can eliminate the alignment of endothelial cells in the direction of laminar ...
Background: Vascular endothelial cells (ECs) provide a highly interactive barrier between blood and ...
Endothelial cells (ECs) are continuously exposed in vivo to cyclic strain and shear stress from puls...
To determine the effect of laminar fluid shear stress on the morphology, motility, and biochemical e...
AbstractThe vascular endothelium is a cellular monolayer that lines the arterial walls. It plays a v...
Endothelial cells are stimulated by shear stress throughout the vasculature and respond with changes...
Atherosclerosis prone regions of the vasculature are exposed to disturbed flow where low and oscilla...
<p><b>A,</b> Overview of the axial polarization pattern of endothelial cells in a WT P6 retina vascu...
Atherosclerosis prone regions of the vasculature are exposed to disturbed flow where low and oscilla...
Hemodynamic shear stresses cause endothelial cells (ECs) to polarize in the plane of the flow. Parad...
Summary Hemodynamic shear stresses cause endothelial cells (ECs) to polarize in the plane of the flo...
AbstractAt present, little is known about how endothelial cells respond to spatial variations in flu...
Endothelial cells (ECs) respond to flow but the exact mechanism producing alignment is not completel...
Endothelial cells are stimulated by shear stress throughout the vasculature and respond with changes...
International audienceVascular networks form, remodel and mature under the influence of multiple sig...
<div><p>Disturbed flow can eliminate the alignment of endothelial cells in the direction of laminar ...
Background: Vascular endothelial cells (ECs) provide a highly interactive barrier between blood and ...
Endothelial cells (ECs) are continuously exposed in vivo to cyclic strain and shear stress from puls...
To determine the effect of laminar fluid shear stress on the morphology, motility, and biochemical e...
AbstractThe vascular endothelium is a cellular monolayer that lines the arterial walls. It plays a v...
Endothelial cells are stimulated by shear stress throughout the vasculature and respond with changes...
Atherosclerosis prone regions of the vasculature are exposed to disturbed flow where low and oscilla...
<p><b>A,</b> Overview of the axial polarization pattern of endothelial cells in a WT P6 retina vascu...
Atherosclerosis prone regions of the vasculature are exposed to disturbed flow where low and oscilla...