Feedback mechanisms are critical components of many pro-angiogenic signaling pathways that keep vessel growth within a functional range. The Vascular Endothelial Growth Factor-A (VEGF-A) pathway utilizes the decoy VEGF-A receptor Flt-1 to provide negative feedback regulation of VEGF-A signaling. In this study, we investigated how the genetic loss of flt-1 differentially affects the branching complexity of vascular networks in tissues despite similar effects on endothelial sprouting. We selectively ablated flt-1 in the post-natal retina and found that maximum induction of flt-1 loss resulted in alterations in endothelial sprouting and filopodial extension, ultimately yielding hyper-branched networks in the absence of changes in retinal astro...
Blood vessel networks form via sprouting of endothelial cells from parent vessels. Extrinsic cues gu...
Blood vessels are essential for the delivery of oxygen and nutrients to every tissue within the body...
While sprouting angiogenesis is critical to blood vessel formation, the cellular and molecular contr...
Feedback mechanisms are critical components of many pro-angiogenic signaling pathways that keep vess...
Blood vessel formation requires the integrated regulation of endothelial cell proliferation and bran...
Vascular endothelial growth factor (VEGF-A) is a major regulator of blood vessel formation and funct...
Blood vessel formation is essential for vertebrate development and is primarily achieved by angiogen...
Mice lacking the vascular endothelial growth factor (VEGF) receptor flt-1 (VEGFR-1) die from vascula...
Blood vessel formation is essential for vertebrate development and is primarily achieved by angiogen...
In developing blood vessel networks, the overall level of vessel branching often correlates with ang...
VEGF-A signaling is required for almost every aspect of vascular development, and it is a major regu...
SummaryVascular and nervous systems, two major networks in mammalian bodies, show a high degree of a...
Formation of organ-specific vasculatures requires cross-talk between developing tissue and specializ...
Vascular endothelial growth factor (VEGF) plays a critical role in normal development as well as ret...
OBJECTIVE: Vascular endothelial growth factor (VEGF) signaling induces Notch signaling during angiog...
Blood vessel networks form via sprouting of endothelial cells from parent vessels. Extrinsic cues gu...
Blood vessels are essential for the delivery of oxygen and nutrients to every tissue within the body...
While sprouting angiogenesis is critical to blood vessel formation, the cellular and molecular contr...
Feedback mechanisms are critical components of many pro-angiogenic signaling pathways that keep vess...
Blood vessel formation requires the integrated regulation of endothelial cell proliferation and bran...
Vascular endothelial growth factor (VEGF-A) is a major regulator of blood vessel formation and funct...
Blood vessel formation is essential for vertebrate development and is primarily achieved by angiogen...
Mice lacking the vascular endothelial growth factor (VEGF) receptor flt-1 (VEGFR-1) die from vascula...
Blood vessel formation is essential for vertebrate development and is primarily achieved by angiogen...
In developing blood vessel networks, the overall level of vessel branching often correlates with ang...
VEGF-A signaling is required for almost every aspect of vascular development, and it is a major regu...
SummaryVascular and nervous systems, two major networks in mammalian bodies, show a high degree of a...
Formation of organ-specific vasculatures requires cross-talk between developing tissue and specializ...
Vascular endothelial growth factor (VEGF) plays a critical role in normal development as well as ret...
OBJECTIVE: Vascular endothelial growth factor (VEGF) signaling induces Notch signaling during angiog...
Blood vessel networks form via sprouting of endothelial cells from parent vessels. Extrinsic cues gu...
Blood vessels are essential for the delivery of oxygen and nutrients to every tissue within the body...
While sprouting angiogenesis is critical to blood vessel formation, the cellular and molecular contr...