The past two decades of angiogenesis research have identified a wealth of pro- and antiangiogenic signals originating from the tissue environment, which control blood vessel density and function. Understanding when and how blood vessels respond to the combination of signals they encounter to achieve a balanced cellular response is a major challenge for the field of developmental and tumor angiogenesis. This review focuses on how endothelial cell-cell communication via the Notch pathway contributes to this signal integration and is essential for functional vessel patterning
The development of the vascular system begins with the formation of hemangioblastic cells, hemangiob...
During angiogenesis, new blood vessels sprout and grow from existing ones. This processplays a cruci...
During angiogenesis, new blood vessels sprout and grow from existing ones. This processplays a cruci...
The past two decades of angiogenesis research have identified a wealth of pro- and antiangiogenic si...
The past two decades of angiogenesis research have identified a wealth of pro- and antiangiogenic si...
ECs (endothelial cells) in the developing vasculature are heterogeneous in morphology, function and ...
The Notch signalling pathway is one of the main regulators of endothelial biology. In the last 20 ye...
Angiogenesis, the formation of new blood vessels from preexisting ones, is a process involved in nor...
ECs (endothelial cells) in the developing vasculature are heterogeneous in morphology, function and ...
Blood vessel patterning during angiogenesis is a guided process. Endothelial tip cells located at th...
The formation of new blood vessels by angiogenesis requires the precise coordination of endothelial ...
Notch signaling is an evolutionarily conserved pathway and plays key roles in embryonic vascular dev...
Vascular patterning involves sprouting of blood vessels, which is governed by orchestrated communica...
Blood vessel patterning during angiogenesis is a guided process. Endothelial tip cells located at t...
During angiogenesis, new blood vessels sprout and grow from existing ones. This process plays a cruc...
The development of the vascular system begins with the formation of hemangioblastic cells, hemangiob...
During angiogenesis, new blood vessels sprout and grow from existing ones. This processplays a cruci...
During angiogenesis, new blood vessels sprout and grow from existing ones. This processplays a cruci...
The past two decades of angiogenesis research have identified a wealth of pro- and antiangiogenic si...
The past two decades of angiogenesis research have identified a wealth of pro- and antiangiogenic si...
ECs (endothelial cells) in the developing vasculature are heterogeneous in morphology, function and ...
The Notch signalling pathway is one of the main regulators of endothelial biology. In the last 20 ye...
Angiogenesis, the formation of new blood vessels from preexisting ones, is a process involved in nor...
ECs (endothelial cells) in the developing vasculature are heterogeneous in morphology, function and ...
Blood vessel patterning during angiogenesis is a guided process. Endothelial tip cells located at th...
The formation of new blood vessels by angiogenesis requires the precise coordination of endothelial ...
Notch signaling is an evolutionarily conserved pathway and plays key roles in embryonic vascular dev...
Vascular patterning involves sprouting of blood vessels, which is governed by orchestrated communica...
Blood vessel patterning during angiogenesis is a guided process. Endothelial tip cells located at t...
During angiogenesis, new blood vessels sprout and grow from existing ones. This process plays a cruc...
The development of the vascular system begins with the formation of hemangioblastic cells, hemangiob...
During angiogenesis, new blood vessels sprout and grow from existing ones. This processplays a cruci...
During angiogenesis, new blood vessels sprout and grow from existing ones. This processplays a cruci...