Notch signaling is an evolutionarily conserved pathway and plays key roles in embryonic vascular development and angiogenesis. Multiple components of the Notch pathway are expressed in vasculature, and mice deficient for a variety of these components display embryonic lethality with vascular remodeling defects. Alteration of Notch signaling in various endothelial cells generates profound effects on angiogenesis in vitro. New evidence shows that Notch signaling from tumor cells is able to activate endothelial cells and trigger tumor angiogenesis in vitro and in a xenograft mouse tumor model. Selective interruption of Notch signaling within tumors may provide an antiangiogenic strategy
The well conserved Notch signalling pathway plays a crucial role in vascular development and physiol...
The well conserved Notch signalling pathway plays a crucial role in vascular development and physiol...
The well conserved Notch signalling pathway plays a crucial role in vascular development and physiol...
Notch signaling plays an important role in developmental and pathological angiogenesis. Notch ligan...
Angiogenesis is an essential process required for tumor growth and progression. The Notch signaling ...
Anti-angiogenesis agents and the identification of cancer stem-like cells (CSC) are opening new aven...
Anti-angiogenesis agents and the identification of cancer stem-like cells (CSC) are opening new aven...
SummaryWhile significant progress has been made in understanding the induction of tumor vasculature ...
SummaryThe Notch pathway is a highly conserved signaling system that controls a diversity of growth,...
The Notch family of transmembrane receptors consists of four members in mammals, Notchl through Not...
Notch is a critical regulator of angiogenesis and arterial specification. We show that ectopic expre...
The Notch signalling pathway is one of the main regulators of endothelial biology. In the last 20 ye...
In the vasculature, Notch signaling functions as a downstream effecter of Vascular Endothelial Growt...
Notch receptors are important mediators of cell fate during embryogenesis, but their role in adult p...
Abstract.: The highly conserved Notch signaling pathway plays pleiotropic roles during embryonic dev...
The well conserved Notch signalling pathway plays a crucial role in vascular development and physiol...
The well conserved Notch signalling pathway plays a crucial role in vascular development and physiol...
The well conserved Notch signalling pathway plays a crucial role in vascular development and physiol...
Notch signaling plays an important role in developmental and pathological angiogenesis. Notch ligan...
Angiogenesis is an essential process required for tumor growth and progression. The Notch signaling ...
Anti-angiogenesis agents and the identification of cancer stem-like cells (CSC) are opening new aven...
Anti-angiogenesis agents and the identification of cancer stem-like cells (CSC) are opening new aven...
SummaryWhile significant progress has been made in understanding the induction of tumor vasculature ...
SummaryThe Notch pathway is a highly conserved signaling system that controls a diversity of growth,...
The Notch family of transmembrane receptors consists of four members in mammals, Notchl through Not...
Notch is a critical regulator of angiogenesis and arterial specification. We show that ectopic expre...
The Notch signalling pathway is one of the main regulators of endothelial biology. In the last 20 ye...
In the vasculature, Notch signaling functions as a downstream effecter of Vascular Endothelial Growt...
Notch receptors are important mediators of cell fate during embryogenesis, but their role in adult p...
Abstract.: The highly conserved Notch signaling pathway plays pleiotropic roles during embryonic dev...
The well conserved Notch signalling pathway plays a crucial role in vascular development and physiol...
The well conserved Notch signalling pathway plays a crucial role in vascular development and physiol...
The well conserved Notch signalling pathway plays a crucial role in vascular development and physiol...