PURPOSE OF REVIEW:The formation of a hierarchical vascular network is a complex process that requires precise temporal and spatial integration of several signaling pathways. Amongst those, Notch has emerged as a key regulator of multiple steps that expand from endothelial sprouting to arterial specification and remains relevant in the adult. This review aims to summarize major concepts and rising hypotheses on the role of Notch signaling in the endothelium. RECENT FINDINGS:A wealth of new information has helped to clarify how Notch signaling cooperates with other pathways to orchestrate vascular morphogenesis, branching, and function. Endothelial vascular endothelial growth factor, C-X-C chemokine receptor type 4, and nicotinamide adenine d...
Endothelial cells transduce mechanical forces from blood flow into intracellular signals required fo...
The recent increase in human lifespan, coupled with unhealthy diets and lifestyles have led to an un...
The development of the vascular system begins with the formation of hemangioblastic cells, hemangiob...
PURPOSE OF REVIEW:The formation of a hierarchical vascular network is a complex process that require...
The Notch signalling pathway is one of the main regulators of endothelial biology. In the last 20 ye...
The vasculature is essential for the delivery of oxygen and nutrients and the removal of metabolic w...
Notch signaling is an evolutionarily conserved, intercellular signaling mechanism that plays myriad ...
International audienceNotch signaling is a major pathway in cell fate decisions. Since the first rep...
Notch signaling is an ancient intercellular signaling mechanism that plays myriad roles during vascu...
Purpose of reviewNotch signaling is an evolutionary conserved pathway critical for cardiovascular de...
Notch signaling plays many important roles in homeostasis and remodeling in the vessel wall, and ser...
The Notch signaling pathway plays a critical role in many developmental and disease related processe...
Notch receptors are important mediators of cell fate during embryogenesis, but their role in adult p...
We investigated the role of Notch signaling in the vascular microenvironment, with particular attent...
International audienceAlthough the involvement of the Notch pathway in several areas of vascular bio...
Endothelial cells transduce mechanical forces from blood flow into intracellular signals required fo...
The recent increase in human lifespan, coupled with unhealthy diets and lifestyles have led to an un...
The development of the vascular system begins with the formation of hemangioblastic cells, hemangiob...
PURPOSE OF REVIEW:The formation of a hierarchical vascular network is a complex process that require...
The Notch signalling pathway is one of the main regulators of endothelial biology. In the last 20 ye...
The vasculature is essential for the delivery of oxygen and nutrients and the removal of metabolic w...
Notch signaling is an evolutionarily conserved, intercellular signaling mechanism that plays myriad ...
International audienceNotch signaling is a major pathway in cell fate decisions. Since the first rep...
Notch signaling is an ancient intercellular signaling mechanism that plays myriad roles during vascu...
Purpose of reviewNotch signaling is an evolutionary conserved pathway critical for cardiovascular de...
Notch signaling plays many important roles in homeostasis and remodeling in the vessel wall, and ser...
The Notch signaling pathway plays a critical role in many developmental and disease related processe...
Notch receptors are important mediators of cell fate during embryogenesis, but their role in adult p...
We investigated the role of Notch signaling in the vascular microenvironment, with particular attent...
International audienceAlthough the involvement of the Notch pathway in several areas of vascular bio...
Endothelial cells transduce mechanical forces from blood flow into intracellular signals required fo...
The recent increase in human lifespan, coupled with unhealthy diets and lifestyles have led to an un...
The development of the vascular system begins with the formation of hemangioblastic cells, hemangiob...