Vascular networks surrounding individual organs are important for their development, maintenance, and function; however, how these networks are assembled remains poorly understood. Here we show that CNS progenitors, referred to as radial glia, modulate vascular patterning around the spinal cord by acting as negative regulators. We found that radial glia ablation in zebrafish embryos leads to excessive sprouting of the trunk vessels around the spinal cord, and exclusively those of venous identity. Mechanistically, we determined that radial glia control this process via the Vegf decoy receptor sFlt1: sflt1 mutants exhibit the venous over sprouting observed in radial glia-ablated larvae, and sFlt1 overexpression rescues it. Genetic mosaic anal...
The sympathetic nervous system controls smooth muscle tone and heart rate in the cardiovascular syst...
Blood vessels in the central nervous system supply a considerable amount of oxygen via intricate vas...
In many organs, stem cell function depends on communication with their niche partners. Cranial senso...
Vascular networks surrounding individual organs are important for their development, maintenance, an...
Formation of organ-specific vasculatures requires cross-talk between developing tissue and specializ...
The cerebral cortex performs complex cognitive functions at the expense of tremendous energy consump...
The cerebral cortex performs complex cognitive functions at the expense of tremendous energy consump...
Proper development of the nervous system requires strict regulation of neurogenesis. Neural progenit...
Formation of a precise vascular network within the central nervous system is of critical importance ...
Radial glial cells are presumptive neural stem cells (NSCs) in the developing nervous system. The di...
Vascular mural cells (vMCs) are essential components of the vertebrate vascular system, controlling ...
AbstractCerebral and spinal vascular systems are organized individually, and they then conjugate at ...
Cranial sensory ganglia are groups of neurons located in the head of chordates outside the central n...
The anatomical association between sensory nerves and blood vessels is well recognised in the adult,...
Angiogenesis, the formation of new blood vessels from preexisting vessels, is critical to most physi...
The sympathetic nervous system controls smooth muscle tone and heart rate in the cardiovascular syst...
Blood vessels in the central nervous system supply a considerable amount of oxygen via intricate vas...
In many organs, stem cell function depends on communication with their niche partners. Cranial senso...
Vascular networks surrounding individual organs are important for their development, maintenance, an...
Formation of organ-specific vasculatures requires cross-talk between developing tissue and specializ...
The cerebral cortex performs complex cognitive functions at the expense of tremendous energy consump...
The cerebral cortex performs complex cognitive functions at the expense of tremendous energy consump...
Proper development of the nervous system requires strict regulation of neurogenesis. Neural progenit...
Formation of a precise vascular network within the central nervous system is of critical importance ...
Radial glial cells are presumptive neural stem cells (NSCs) in the developing nervous system. The di...
Vascular mural cells (vMCs) are essential components of the vertebrate vascular system, controlling ...
AbstractCerebral and spinal vascular systems are organized individually, and they then conjugate at ...
Cranial sensory ganglia are groups of neurons located in the head of chordates outside the central n...
The anatomical association between sensory nerves and blood vessels is well recognised in the adult,...
Angiogenesis, the formation of new blood vessels from preexisting vessels, is critical to most physi...
The sympathetic nervous system controls smooth muscle tone and heart rate in the cardiovascular syst...
Blood vessels in the central nervous system supply a considerable amount of oxygen via intricate vas...
In many organs, stem cell function depends on communication with their niche partners. Cranial senso...