During prolonged hypoxic conditions, endothelial cells change their gene expression to adjust to the low oxygen environment. This process is mainly regulated by the hypoxia-inducible factors, HIF-1α and HIF-2α. Although endothelial cells do not form sprouts during prolonged hypoxic culturing, silencing of HIF-2α partially restores sprout formation. The present study identifies novel HIF-2α-target genes that may regulate endothelial sprouting during prolonged hypoxia. The gene expression profile of primary human microvascular endothelial cells (hMVECs) that were cultured at 20 % oxygen was compared to hMVECs that were cultured at 1 % oxygen for 14 days by using genome-wide RNA-sequencing. The differentially regulated genes in hypoxia were co...
Fetoplacental endothelial cells reside under physiological normoxic conditions (∼2-8% O2) in vivo. U...
BACKGROUND: Adaptation to low oxygen by changing gene expression is vitally important for cell survi...
Vascular homeostasis and regeneration in ischemic tissue relies on intrinsic competence of the tissu...
During prolonged hypoxic conditions, endothelial cells change their gene expression to adjust to the...
During short-term hypoxia, Hypoxia Inducible Factors (particular their subunits HIF-1α and HIF-2α) r...
Background/Aims: The mechanisms involved in endothelial barrier dysfunction induced by hypoxia are i...
The ability of cells to adapt to changes in oxygen (O2) levels is essential for normal development a...
Background: Adaptation to low oxygen by changing gene expression is vitally important for cell survi...
BACKGROUND: The vascular endothelium has important endocrine and paracrine roles, particularly in th...
ABSTRACT Low oxygen tension (hypoxia) is a major inducer of neovascularisation and evidence emergin...
This study explored the possibility that upregulation of Hypoxia Inducible Factor-1 (Hif-1)-responsi...
Background: The local skin flap procedure is very useful for reconstruction. However, flap necrosis ...
<div><h3>Background</h3><p>Adaptation to low oxygen by changing gene expression is vitally important...
In my doctoral work, I identified hypoxia-inducible factor (HIF) as a primary mechanism driving modu...
Every cell in the body requires oxygen for its functioning, in virtually every animal, and a tightly...
Fetoplacental endothelial cells reside under physiological normoxic conditions (∼2-8% O2) in vivo. U...
BACKGROUND: Adaptation to low oxygen by changing gene expression is vitally important for cell survi...
Vascular homeostasis and regeneration in ischemic tissue relies on intrinsic competence of the tissu...
During prolonged hypoxic conditions, endothelial cells change their gene expression to adjust to the...
During short-term hypoxia, Hypoxia Inducible Factors (particular their subunits HIF-1α and HIF-2α) r...
Background/Aims: The mechanisms involved in endothelial barrier dysfunction induced by hypoxia are i...
The ability of cells to adapt to changes in oxygen (O2) levels is essential for normal development a...
Background: Adaptation to low oxygen by changing gene expression is vitally important for cell survi...
BACKGROUND: The vascular endothelium has important endocrine and paracrine roles, particularly in th...
ABSTRACT Low oxygen tension (hypoxia) is a major inducer of neovascularisation and evidence emergin...
This study explored the possibility that upregulation of Hypoxia Inducible Factor-1 (Hif-1)-responsi...
Background: The local skin flap procedure is very useful for reconstruction. However, flap necrosis ...
<div><h3>Background</h3><p>Adaptation to low oxygen by changing gene expression is vitally important...
In my doctoral work, I identified hypoxia-inducible factor (HIF) as a primary mechanism driving modu...
Every cell in the body requires oxygen for its functioning, in virtually every animal, and a tightly...
Fetoplacental endothelial cells reside under physiological normoxic conditions (∼2-8% O2) in vivo. U...
BACKGROUND: Adaptation to low oxygen by changing gene expression is vitally important for cell survi...
Vascular homeostasis and regeneration in ischemic tissue relies on intrinsic competence of the tissu...