Enteric nervous system progenitor cells isolated from postnatal human gut and cultured as neurospheres can then be transplanted into aganglionic gut to restore normal patterns of contractility. These progenitor cells may be of future use to treat patients with Hirschprung's disease, a congenital condition characterized by hindgut dysmotility due to the lack of enteric nervous system ganglia. Here we demonstrate that progenitor cells can also be isolated from aganglionic gut removed during corrective surgery for Hirschsprung's disease. Although the enteric nervous system marker calretinin is not expressed in the aganglionic gut region, de novo expression is initiated in cultured neurosphere cells isolated from aganglionic Hirschsprung bowel....
The source of Enteric Nervous System Progenitor Cells present in Aganglionic Gut in Hirschsprung’s d...
Background & Aims: Defective rostrocaudal colonization of the gut by vagal neural crest cells (v...
Gut motility disorders can result from an absent, damaged, or dysfunctional enteric nervous system (...
Enteric nervous system progenitor cells isolated from postnatal human gut and cultured as neurospher...
<div><p>Enteric nervous system progenitor cells isolated from postnatal human gut and cultured as ne...
Cell therapy offers the potential to replace the missing enteric nervous system (ENS) in patients wi...
The enteric nervous system (ENS), the intrinsic innervations of the gastrointestinal tract, consists...
BACKGROUND Enteric neural stem/progenitor cells (ENSCs) offer an innovative approach to treating Hir...
BACKGROUND & AIMS: Hirschsprung disease (HSCR) is caused by failure of cells derived from the ne...
Despite current treatments patients with Hirschsprung's disease (HSCR) suffer significant long-term ...
BACKGROUND: Transplanting autologous patient-derived enteric neuronal stem/progenitor cells (ENSCs) ...
AbstractWe have systematically examined the developmental potential of neural crest stem cells from ...
BACKGROUND & AIMS: Hirschsprung disease (HSCR) is caused by failure of cells derived from the neural...
Background & Aims: Hirschsprung disease (HSCR) is caused by failure of cells derived from the neural...
Neonatal human gut is a source of ENSPC that can be transplanted to restore the contractile properti...
The source of Enteric Nervous System Progenitor Cells present in Aganglionic Gut in Hirschsprung’s d...
Background & Aims: Defective rostrocaudal colonization of the gut by vagal neural crest cells (v...
Gut motility disorders can result from an absent, damaged, or dysfunctional enteric nervous system (...
Enteric nervous system progenitor cells isolated from postnatal human gut and cultured as neurospher...
<div><p>Enteric nervous system progenitor cells isolated from postnatal human gut and cultured as ne...
Cell therapy offers the potential to replace the missing enteric nervous system (ENS) in patients wi...
The enteric nervous system (ENS), the intrinsic innervations of the gastrointestinal tract, consists...
BACKGROUND Enteric neural stem/progenitor cells (ENSCs) offer an innovative approach to treating Hir...
BACKGROUND & AIMS: Hirschsprung disease (HSCR) is caused by failure of cells derived from the ne...
Despite current treatments patients with Hirschsprung's disease (HSCR) suffer significant long-term ...
BACKGROUND: Transplanting autologous patient-derived enteric neuronal stem/progenitor cells (ENSCs) ...
AbstractWe have systematically examined the developmental potential of neural crest stem cells from ...
BACKGROUND & AIMS: Hirschsprung disease (HSCR) is caused by failure of cells derived from the neural...
Background & Aims: Hirschsprung disease (HSCR) is caused by failure of cells derived from the neural...
Neonatal human gut is a source of ENSPC that can be transplanted to restore the contractile properti...
The source of Enteric Nervous System Progenitor Cells present in Aganglionic Gut in Hirschsprung’s d...
Background & Aims: Defective rostrocaudal colonization of the gut by vagal neural crest cells (v...
Gut motility disorders can result from an absent, damaged, or dysfunctional enteric nervous system (...