During angiogenesis, single endothelial cells (EC) specialize into tip cells that guide vessel sprouting towards growth factor gradients and instruct the adjacent vessel stalk. The balance between tip and stalk cells is regulated by endothelial Notch signalling through the expression of Notch ligand Delta-like 4 (Dll4) in tip cells, which suppresses a tip cell fate in adjacent stalk cells. Here we show, using genetic reporter and conditional deletion strategies, that myeloid cells regulate tip cell numbers and Dll4 expression via the Notch ligand Dll1 during vascular development in the retina. Dll1 is selectively expressed by a subpopulation of retinal myeloid cells, which progressively localizes to the sprouting vascular network. Condition...
Blood vessel patterning during angiogenesis is a guided process. Endothelial tip cells located at t...
RATIONALE: Notch signaling regulates vascular development. However, the implication of the Notch lig...
We investigated the role of Notch signaling in the vascular microenvironment, with particular attent...
Rationale: In developing blood vessels, single endothelial cells (ECs) specialize into tip cells tha...
In sprouting angiogenesis, specialized endothelial tip cells lead the outgrowth of blood-vessel spro...
Blood vessels and nerves are structurally similar, complex branched networks that require guidance t...
Formation of a regularly branched blood vessel network is crucial in development and physiology. Her...
Background. Retina is the highest oxygen-demanding and vascularized tissue in the body. Retinal deve...
Angiogenesis is the process by which new blood vessels form, as cells undergoing hypoxia secrete Vas...
The Notch ligand, Dll4, is essential for angiogenesis during embryonic vascular development and is i...
Delta-like 4 (Dll4), a membrane-bound ligand for Notch1 and Notch4, is selectively expressed in the ...
The importance of Notch signaling pathway in the regulation of vascular development and angiogenesis...
Delta-like 4 (Dll4), a membrane-bound Notch ligand, plays a fundamental role in vascular development...
Endothelial sprouting and proliferation are tightly coordinated processes mediating the formation of...
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 t...
RATIONALE: Notch signaling regulates vascular development. However, the implication of the Notch lig...
We investigated the role of Notch signaling in the vascular microenvironment, with particular attent...
Rationale: In developing blood vessels, single endothelial cells (ECs) specialize into tip cells tha...
In sprouting angiogenesis, specialized endothelial tip cells lead the outgrowth of blood-vessel spro...
Blood vessels and nerves are structurally similar, complex branched networks that require guidance t...
Formation of a regularly branched blood vessel network is crucial in development and physiology. Her...
Background. Retina is the highest oxygen-demanding and vascularized tissue in the body. Retinal deve...
Angiogenesis is the process by which new blood vessels form, as cells undergoing hypoxia secrete Vas...
The Notch ligand, Dll4, is essential for angiogenesis during embryonic vascular development and is i...
Delta-like 4 (Dll4), a membrane-bound ligand for Notch1 and Notch4, is selectively expressed in the ...
The importance of Notch signaling pathway in the regulation of vascular development and angiogenesis...
Delta-like 4 (Dll4), a membrane-bound Notch ligand, plays a fundamental role in vascular development...
Endothelial sprouting and proliferation are tightly coordinated processes mediating the formation of...
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 t...
RATIONALE: Notch signaling regulates vascular development. However, the implication of the Notch lig...
We investigated the role of Notch signaling in the vascular microenvironment, with particular attent...