Stretch is an essential mechanism for lung growth and development. Animal models in which fetal lungs have been chronically over or underdistended demonstrate a disrupted mix of type II and type I cells, with static overdistention typically promoting a type I cell phenotype. The Rho GTPase family, key regulators of cytoskeletal signaling, are known to mediate cellular differentiation in response to stretch in other organs. Using a well-described model of alveolar epithelial cell differentiation and a validated stretch device, we investigated the effects of supraphysiologic stretch on human fetal lung alveolar epithelial cell phenotype. Static stretch applied to epithelial cells suppressed type II cell markers (SP-B and Pepsinogen C, PGC), a...
A small GTPase, Rho, plays key roles in cell adhesion, motility, and contraction after stimulation. ...
Contractile tension of alveolar epithelial cells plays a major role in the force balance that regula...
Small GTP-binding proteins of the Rho family (RhoA, Cdc42, Rac1) regulate the organisation and the t...
Stretch is an essential mechanism for lung growth and development. Animal models in which fetal lung...
Mechanical forces are critical for normal fetal lung development. However, the signaling events that...
Accurate fluid pressure in the fetal lung is critical for its development, especially at the beginni...
SummaryIntroductionIn vivo, the airway epithelium stretches and relaxes with each respiratory cycle,...
We measured stretch-induced changes in transepithelial permeability in vitro to uncharged tracers 1....
Alveolar development and repair require tight spatiotemporal regulation of numerous signalling pathw...
Mechanical ventilation is vital for supporting patients with pulmonary insufficiency. However, expe...
Fetal tracheal occlusion (TO) is a clinical therapy that has been proven to promote stretch-induced ...
Ventilator-associated lung injury (VALI) describes the process by which mechanical ventilation of th...
RATIONALE: RhoA and Rho kinase contribute to pulmonary vasoconstriction and vascular remodeling in p...
Mechanical ventilation is vital for supporting patients with pulmonary insufficiency. However, exper...
chanical forces are critical for fetal lung development. Using surfac-tant protein C (SP-C) as a mar...
A small GTPase, Rho, plays key roles in cell adhesion, motility, and contraction after stimulation. ...
Contractile tension of alveolar epithelial cells plays a major role in the force balance that regula...
Small GTP-binding proteins of the Rho family (RhoA, Cdc42, Rac1) regulate the organisation and the t...
Stretch is an essential mechanism for lung growth and development. Animal models in which fetal lung...
Mechanical forces are critical for normal fetal lung development. However, the signaling events that...
Accurate fluid pressure in the fetal lung is critical for its development, especially at the beginni...
SummaryIntroductionIn vivo, the airway epithelium stretches and relaxes with each respiratory cycle,...
We measured stretch-induced changes in transepithelial permeability in vitro to uncharged tracers 1....
Alveolar development and repair require tight spatiotemporal regulation of numerous signalling pathw...
Mechanical ventilation is vital for supporting patients with pulmonary insufficiency. However, expe...
Fetal tracheal occlusion (TO) is a clinical therapy that has been proven to promote stretch-induced ...
Ventilator-associated lung injury (VALI) describes the process by which mechanical ventilation of th...
RATIONALE: RhoA and Rho kinase contribute to pulmonary vasoconstriction and vascular remodeling in p...
Mechanical ventilation is vital for supporting patients with pulmonary insufficiency. However, exper...
chanical forces are critical for fetal lung development. Using surfac-tant protein C (SP-C) as a mar...
A small GTPase, Rho, plays key roles in cell adhesion, motility, and contraction after stimulation. ...
Contractile tension of alveolar epithelial cells plays a major role in the force balance that regula...
Small GTP-binding proteins of the Rho family (RhoA, Cdc42, Rac1) regulate the organisation and the t...