AbstractThe vasculature and nervous system share striking similarities in their networked, tree-like architecture and in the way they are super-imposed in mature organs. It has previously been suggested that the intestinal microvasculature network directs the migration of enteric neural crest cells (ENCC) along the gut to promote the formation of the enteric nervous system (ENS). To investigate the inter-relationship of migrating ENCC, ENS formation and gut vascular development we combined fate-mapping of ENCC with immunolabelling and intravascular dye injection to visualise nascent blood vessel networks. We found that the enteric and vascular networks initially had very distinct patterns of development. In the foregut, ENCC migrated throug...
Background & Aims: Defective rostrocaudal colonization of the gut by vagal neural crest cells (v...
AbstractThe enteric nervous system (ENS) arises from the coordinated migration, expansion and differ...
AbstractThe enteric nervous system (ENS) is derived from vagal and sacral neural crest cells that mi...
AbstractThe vasculature and nervous system share striking similarities in their networked, tree-like...
textabstractThe vasculature and nervous system share striking similarities in their networked, tree-...
AbstractNeural crest cells leave the hindbrain, enter the gut mesenchyme at the pharynx, and migrate...
AbstractEnteric neural crest-derived cells (ENCCs) migrate along the intestine to form a highly orga...
© 2020 Dongcheng ZhangThe enteric nervous system (ENS) in the gastrointestinal tract is a complex ne...
The enteric nervous system(ENS) is essential for digestive function and gut homeostasis. Here we sho...
BACKGROUND: Directed cell migration is essential for normal development. In most of the migratory ce...
The enteric nervous system (ENS) is essential for digestive function and gut homeostasis. Here we sh...
AbstractThe enteric nervous system arises from vagal (caudal hindbrain) and sacral level neural cres...
The organization and cellular composition of tissues are key determinants of their biological functi...
Background\ud \ud Directed cell migration is essential for normal development. In most of the migrat...
Co-ordinated gastrointestinal function is the result of integrated communication between the enteric...
Background & Aims: Defective rostrocaudal colonization of the gut by vagal neural crest cells (v...
AbstractThe enteric nervous system (ENS) arises from the coordinated migration, expansion and differ...
AbstractThe enteric nervous system (ENS) is derived from vagal and sacral neural crest cells that mi...
AbstractThe vasculature and nervous system share striking similarities in their networked, tree-like...
textabstractThe vasculature and nervous system share striking similarities in their networked, tree-...
AbstractNeural crest cells leave the hindbrain, enter the gut mesenchyme at the pharynx, and migrate...
AbstractEnteric neural crest-derived cells (ENCCs) migrate along the intestine to form a highly orga...
© 2020 Dongcheng ZhangThe enteric nervous system (ENS) in the gastrointestinal tract is a complex ne...
The enteric nervous system(ENS) is essential for digestive function and gut homeostasis. Here we sho...
BACKGROUND: Directed cell migration is essential for normal development. In most of the migratory ce...
The enteric nervous system (ENS) is essential for digestive function and gut homeostasis. Here we sh...
AbstractThe enteric nervous system arises from vagal (caudal hindbrain) and sacral level neural cres...
The organization and cellular composition of tissues are key determinants of their biological functi...
Background\ud \ud Directed cell migration is essential for normal development. In most of the migrat...
Co-ordinated gastrointestinal function is the result of integrated communication between the enteric...
Background & Aims: Defective rostrocaudal colonization of the gut by vagal neural crest cells (v...
AbstractThe enteric nervous system (ENS) arises from the coordinated migration, expansion and differ...
AbstractThe enteric nervous system (ENS) is derived from vagal and sacral neural crest cells that mi...