Mechanical forces are translated into biochemical stimuli by mechanotransduction channels, such as the mechanically activated cation channel Piezo2. Lung Piezo2 expression has recently been shown to be restricted to endothelial cells. Hence, we aimed to investigate the role of Piezo2 in regulation of pulmonary vascular function and structure, as well as its contribution to development of pulmonary arterial hypertension (PAH). The expression of Piezo2 was significantly reduced in pulmonary microvascular endothelial cells (MVECs) from patients with PAH, in lung tissue from mice with a Bmpr2+/R899X knock-in mutation commonly found in patients with pulmonary hypertension, and in lung tissue of monocrotaline (MCT) and sugen-hypoxia-induced PH (S...
Regulation of Ca2+ entry plays important roles in cardiovascular physiology and pathophysiology. Und...
Piezo1 is a mechanosensitive cation channel with widespread physiological importance; however, its r...
Pulmonary arterial hypertension (PAH) is caused by functional and structural changes in the pulmonar...
In intrapulmonary artery (IPA), endothelial cells (EC) respond to mechanical stimuli by releasing va...
Arterial blood pressure is controlled by vasodilatory factors such as nitric oxide (NO) that are rel...
Abstract Background Mechanical ventilation can induce or aggravate lung injury, which is termed vent...
Shear stress exerted by the blood stream modulates endothelial functions through altering gene expre...
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 ...
The videos show Calcium influx, using a Ca sensitive dye, into pulmonary microvascular endothelial c...
BackgroundWe evaluated the role of a mechanically-gated ion channel, Piezo2, in mechanical stimulati...
Piezo1 forms mechanically-activated non-selective cation channels that contribute to endothelial res...
Piezo1 proteins are Na+ and Ca2+ permeable mechanosensitive ion channels. Expressed on endothelial c...
Regulation of Ca2+ entry plays important roles in cardiovascular physiology and pathophysiology. Und...
Piezo1 is a mechanosensitive cation channel with widespread physiological importance; however, its r...
Pulmonary arterial hypertension (PAH) is caused by functional and structural changes in the pulmonar...
In intrapulmonary artery (IPA), endothelial cells (EC) respond to mechanical stimuli by releasing va...
Arterial blood pressure is controlled by vasodilatory factors such as nitric oxide (NO) that are rel...
Abstract Background Mechanical ventilation can induce or aggravate lung injury, which is termed vent...
Shear stress exerted by the blood stream modulates endothelial functions through altering gene expre...
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 ...
The videos show Calcium influx, using a Ca sensitive dye, into pulmonary microvascular endothelial c...
BackgroundWe evaluated the role of a mechanically-gated ion channel, Piezo2, in mechanical stimulati...
Piezo1 forms mechanically-activated non-selective cation channels that contribute to endothelial res...
Piezo1 proteins are Na+ and Ca2+ permeable mechanosensitive ion channels. Expressed on endothelial c...
Regulation of Ca2+ entry plays important roles in cardiovascular physiology and pathophysiology. Und...
Piezo1 is a mechanosensitive cation channel with widespread physiological importance; however, its r...
Pulmonary arterial hypertension (PAH) is caused by functional and structural changes in the pulmonar...