AbstractBlood vessel formation depends on the highly coordinated actions of a variety of angiogenic regulators. Vascular endothelial growth factor (VEGF) and Angiopoietin-1 (Ang-1) are both potent and essential proangiogenic factors with complementary roles in vascular development and function. Whereas VEGF is required for the formation of the initial vascular plexus, Ang-1 contributes to the stabilization and maturation of growing blood vessels.Here, we provide evidence of a novel microRNA (miRNA)-dependent molecular mechanism of Ang-1 signalling modulation aimed at stabilizing adult vasculature. MiRNAs are short non-coding RNA molecules that post-trascriptionally regulate gene expression by translational suppression or in some instances b...
Whereas a healthy endothelium maintains physiological vascular functions, endothelial damage contrib...
Angiogenesis requires coordination of distinct cell behaviors between tip and stalk cells. Although ...
microRNAs (miRNAs) can regulate the interplay between perivascular cells (PVC) and endothelial cells...
AbstractBlood vessel formation depends on the highly coordinated actions of a variety of angiogenic ...
SummaryPrecise regulation of the formation, maintenance, and remodeling of the vasculature is requir...
SummaryEndothelial cells play essential roles in maintenance of vascular integrity, angiogenesis, an...
Precise regulation of the formation, maintenance, and remodeling of the vasculature is required for ...
Precise regulation of the formation, maintenance, and remodeling of the vasculature is required for ...
SummaryAngiogenesis requires coordination of distinct cell behaviors between tip and stalk cells. Al...
Angiogenesis is a multi-factorial physiological process deregulated in human diseases characterised ...
AIMS MicroRNA-126 (miR-126), which is enriched in endothelial cells, plays a role in angiogenesis. B...
Blood vessels form de novo through the tightly regulated programs of vasculogenesis and angiogenesis...
SummaryA key step in angiogenesis is the upregulation of growth factor receptors on endothelial cell...
MicroRNAs are negative regulators of gene expression that play a key role in cell-type specific diff...
This thesis details our studies assessing the role of the endothelial-enriched miRNA-126 in the regu...
Whereas a healthy endothelium maintains physiological vascular functions, endothelial damage contrib...
Angiogenesis requires coordination of distinct cell behaviors between tip and stalk cells. Although ...
microRNAs (miRNAs) can regulate the interplay between perivascular cells (PVC) and endothelial cells...
AbstractBlood vessel formation depends on the highly coordinated actions of a variety of angiogenic ...
SummaryPrecise regulation of the formation, maintenance, and remodeling of the vasculature is requir...
SummaryEndothelial cells play essential roles in maintenance of vascular integrity, angiogenesis, an...
Precise regulation of the formation, maintenance, and remodeling of the vasculature is required for ...
Precise regulation of the formation, maintenance, and remodeling of the vasculature is required for ...
SummaryAngiogenesis requires coordination of distinct cell behaviors between tip and stalk cells. Al...
Angiogenesis is a multi-factorial physiological process deregulated in human diseases characterised ...
AIMS MicroRNA-126 (miR-126), which is enriched in endothelial cells, plays a role in angiogenesis. B...
Blood vessels form de novo through the tightly regulated programs of vasculogenesis and angiogenesis...
SummaryA key step in angiogenesis is the upregulation of growth factor receptors on endothelial cell...
MicroRNAs are negative regulators of gene expression that play a key role in cell-type specific diff...
This thesis details our studies assessing the role of the endothelial-enriched miRNA-126 in the regu...
Whereas a healthy endothelium maintains physiological vascular functions, endothelial damage contrib...
Angiogenesis requires coordination of distinct cell behaviors between tip and stalk cells. Although ...
microRNAs (miRNAs) can regulate the interplay between perivascular cells (PVC) and endothelial cells...