Arterial blood pressure is controlled by vasodilatory factors such as nitric oxide (NO) that are released from the endothelium under the influence of fluid shear stress exerted by flowing blood. Flow-induced endothelial release of ATP and subsequent activation of G(q)/G(11)-coupled purinergic P2Y(2) receptors have been shown to mediate fluid shear stress-induced stimulation of NO formation. However, the mechanism by which fluid shear stress initiates these processes is unclear. Here, we have shown that the endothelial mechanosensitive cation channel PIEZO1 is required for flow-induced ATP release and subsequent P2Y(2)/G(q)/G(11)-mediated activation of downstream signaling that results in phosphorylation and activation of AKT and endothelial...
Vascular endothelial cells that are in direct contact with blood flow are exposed to fluid shear str...
ATP is an important endogenous mediator in the cardiovascular system. It induces endothelium depende...
BackgroundWe evaluated the role of a mechanically-gated ion channel, Piezo2, in mechanical stimulati...
Arterial blood pressure is controlled by vasodilatory factors such as nitric oxide (NO) that are rel...
Mechanical forces are translated into biochemical stimuli by mechanotransduction channels, such as t...
Mechanosensitive ion channels mediate endothelial responses to blood flow and orchestrate their phys...
Mechanosensation is perhaps the last sensory modality not understood at the molecular level. Ion cha...
The mechanisms by which physical forces regulate endothelial cells to determine the complexities of ...
In intrapulmonary artery (IPA), endothelial cells (EC) respond to mechanical stimuli by releasing va...
Formation of NO by endothelial NOS (eNOS) is a central process in the homeostatic regulation of vasc...
Mammalian biology adapts to physical activity but the molecular mechanisms sensing the activity rema...
Piezo1 proteins are Na+ and Ca2+ permeable mechanosensitive ion channels. Expressed on endothelial c...
Piezo proteins (Piezo1 and Piezo2) are recently identified mechanically activated cation channels in...
Piezo1 forms mechanically-activated non-selective cation channels that contribute to endothelial res...
Vascular endothelial cells that are in direct contact with blood flow are exposed to fluid shear str...
Vascular endothelial cells that are in direct contact with blood flow are exposed to fluid shear str...
ATP is an important endogenous mediator in the cardiovascular system. It induces endothelium depende...
BackgroundWe evaluated the role of a mechanically-gated ion channel, Piezo2, in mechanical stimulati...
Arterial blood pressure is controlled by vasodilatory factors such as nitric oxide (NO) that are rel...
Mechanical forces are translated into biochemical stimuli by mechanotransduction channels, such as t...
Mechanosensitive ion channels mediate endothelial responses to blood flow and orchestrate their phys...
Mechanosensation is perhaps the last sensory modality not understood at the molecular level. Ion cha...
The mechanisms by which physical forces regulate endothelial cells to determine the complexities of ...
In intrapulmonary artery (IPA), endothelial cells (EC) respond to mechanical stimuli by releasing va...
Formation of NO by endothelial NOS (eNOS) is a central process in the homeostatic regulation of vasc...
Mammalian biology adapts to physical activity but the molecular mechanisms sensing the activity rema...
Piezo1 proteins are Na+ and Ca2+ permeable mechanosensitive ion channels. Expressed on endothelial c...
Piezo proteins (Piezo1 and Piezo2) are recently identified mechanically activated cation channels in...
Piezo1 forms mechanically-activated non-selective cation channels that contribute to endothelial res...
Vascular endothelial cells that are in direct contact with blood flow are exposed to fluid shear str...
Vascular endothelial cells that are in direct contact with blood flow are exposed to fluid shear str...
ATP is an important endogenous mediator in the cardiovascular system. It induces endothelium depende...
BackgroundWe evaluated the role of a mechanically-gated ion channel, Piezo2, in mechanical stimulati...