BackgroundThe vascular endothelium has important endocrine and paracrine roles, particularly in the regulation of vascular tone and immune function, and it has been implicated in the pathophysiology of a range of cardiovascular and inflammatory conditions. This study uses a series of transgenic murine models to explore for the first time the role of the hypoxia-inducible factors, HIF-1α and HIF-2α in the pulmonary and systemic circulations as potential regulators of systemic vascular function in normoxic or hypoxic conditions and in response to inflammatory stress. We developed a series of transgenic mouse models, the HIF-1α Tie2Cre, deficient in HIF1-α in the systemic and pulmonary vascular endothelium and the L1Cre, a pulmonary endotheliu...
Many inflammatory diseases are characterised by persistent and inappropriate neutrophil activation, ...
During prolonged hypoxic conditions, endothelial cells change their gene expression to adjust to the...
Fetoplacental endothelial cells reside under physiological normoxic conditions (∼2-8% O2) in vivo. U...
BACKGROUND: The vascular endothelium has important endocrine and paracrine roles, particularly in th...
Abstract Background The vascular endothelium has important endocrine and paracrine roles, particular...
Most published studies addressing the role of hypoxia inducible factors (HIFs) in hypoxia-induced pu...
Abstract Hypoxia plays an important regulatory role in the vasculature to adjust blood flow to meet...
Chronic systemic hypertension causes cardiac pressure overload leading to increased myocardial O₂ co...
Hypoxic pulmonary vasoconstriction is correlated with pulmonary vascular remodeling. The hypoxia-ind...
Vascular flow through tissues is regulated via a number of homeostatic mechanisms. Localized control...
Hypoxic pulmonary vasoconstriction is correlated with pulmonary vascular remodeling. The hypoxia-ind...
Many diseases of the cardiovascular system involve an element of hypoxia due to impairments in oxyge...
ABSTRACT Low oxygen tension (hypoxia) is a major inducer of neovascularisation and evidence emergin...
This is the author accepted manuscript. The final version is available from the Proceedings of the N...
Objective-Atherosclerosis develops near branches and bends of arteries that are exposed to low shear...
Many inflammatory diseases are characterised by persistent and inappropriate neutrophil activation, ...
During prolonged hypoxic conditions, endothelial cells change their gene expression to adjust to the...
Fetoplacental endothelial cells reside under physiological normoxic conditions (∼2-8% O2) in vivo. U...
BACKGROUND: The vascular endothelium has important endocrine and paracrine roles, particularly in th...
Abstract Background The vascular endothelium has important endocrine and paracrine roles, particular...
Most published studies addressing the role of hypoxia inducible factors (HIFs) in hypoxia-induced pu...
Abstract Hypoxia plays an important regulatory role in the vasculature to adjust blood flow to meet...
Chronic systemic hypertension causes cardiac pressure overload leading to increased myocardial O₂ co...
Hypoxic pulmonary vasoconstriction is correlated with pulmonary vascular remodeling. The hypoxia-ind...
Vascular flow through tissues is regulated via a number of homeostatic mechanisms. Localized control...
Hypoxic pulmonary vasoconstriction is correlated with pulmonary vascular remodeling. The hypoxia-ind...
Many diseases of the cardiovascular system involve an element of hypoxia due to impairments in oxyge...
ABSTRACT Low oxygen tension (hypoxia) is a major inducer of neovascularisation and evidence emergin...
This is the author accepted manuscript. The final version is available from the Proceedings of the N...
Objective-Atherosclerosis develops near branches and bends of arteries that are exposed to low shear...
Many inflammatory diseases are characterised by persistent and inappropriate neutrophil activation, ...
During prolonged hypoxic conditions, endothelial cells change their gene expression to adjust to the...
Fetoplacental endothelial cells reside under physiological normoxic conditions (∼2-8% O2) in vivo. U...