Endothelial cells show surprising cell rearrangement behaviour during angiogenic sprouting; however, the underlying mechanisms and functional importance remain unclear. By combining computational modelling with experimentation, we identify that Notch/VEGFR-regulated differential dynamics of VE-cadherin junctions drive functional endothelial cell rearrangements during sprouting. We propose that continual flux in Notch signalling levels in individual cells results in differential VE-cadherin turnover and junctional-cortex protrusions, which powers differential cell movement. In cultured endothelial cells, Notch signalling quantitatively reduced junctional VE-cadherin mobility. In simulations, only differential adhesion dynamics generated long...
Angiogenesis and vascular remodeling are driven by extensive endothelial cell movements. Here, we pr...
The establishment of a functional patterned vascular network is crucial for development, tissue grow...
Formation of a regularly branched blood vessel network is crucial in development and physiology. Her...
Endothelial cells show surprising cell rearrangement behaviour during angiogenic sprouting; however,...
VEGFR-2/Notch signalling regulates angiogenesis in part by driving the remodelling of endothelial ce...
Sprouting angiogenesis requires the coordinated behaviour of endothelial cells, regulated by Notch a...
During new blood vessel formation, the cessation of angiogenic sprouting is necessary for the genera...
SummaryDuring new blood vessel formation, the cessation of angiogenic sprouting is necessary for the...
During angiogenesis, endothelial cells are influenced by multiple inputs and respond by activating s...
New blood vessels sprout from existing vasculature to ensure vascularization of developing organs an...
Angiogenesis and vascular remodeling are driven by a wide range of endothelial cell behaviors, such ...
ECs (endothelial cells) in the developing vasculature are heterogeneous in morphology, function and ...
During vessel sprouting, endothelial cells (ECs) dynamically rearrange positions in the sprout to co...
Vascular abnormalities contribute to many diseases such as cancer and diabetic retinopathy. In angio...
ECs (endothelial cells) in the developing vasculature are heterogeneous in morphology, function and ...
Angiogenesis and vascular remodeling are driven by extensive endothelial cell movements. Here, we pr...
The establishment of a functional patterned vascular network is crucial for development, tissue grow...
Formation of a regularly branched blood vessel network is crucial in development and physiology. Her...
Endothelial cells show surprising cell rearrangement behaviour during angiogenic sprouting; however,...
VEGFR-2/Notch signalling regulates angiogenesis in part by driving the remodelling of endothelial ce...
Sprouting angiogenesis requires the coordinated behaviour of endothelial cells, regulated by Notch a...
During new blood vessel formation, the cessation of angiogenic sprouting is necessary for the genera...
SummaryDuring new blood vessel formation, the cessation of angiogenic sprouting is necessary for the...
During angiogenesis, endothelial cells are influenced by multiple inputs and respond by activating s...
New blood vessels sprout from existing vasculature to ensure vascularization of developing organs an...
Angiogenesis and vascular remodeling are driven by a wide range of endothelial cell behaviors, such ...
ECs (endothelial cells) in the developing vasculature are heterogeneous in morphology, function and ...
During vessel sprouting, endothelial cells (ECs) dynamically rearrange positions in the sprout to co...
Vascular abnormalities contribute to many diseases such as cancer and diabetic retinopathy. In angio...
ECs (endothelial cells) in the developing vasculature are heterogeneous in morphology, function and ...
Angiogenesis and vascular remodeling are driven by extensive endothelial cell movements. Here, we pr...
The establishment of a functional patterned vascular network is crucial for development, tissue grow...
Formation of a regularly branched blood vessel network is crucial in development and physiology. Her...