Pluripotent stem cells (PSCs) could provide a powerful system to model development of the human esophagus, whose distinct tissue organization compared to rodent esophagus suggests that developmental mechanisms may not be conserved between species. We therefore established an efficient protocol for generating esophageal progenitor cells (EPCs) from human PSCs. We found that inhibition of TGF beta and BMP signaling is required for sequential specification of EPCs, which can be further purified using cell-surface markers. These EPCs resemble their human fetal counterparts and can recapitulate normal development of esophageal stratified squamous epithelium during in vitro 3D cultures and in vivo. Importantly, combining hPSC differentiation stra...
<p>Primary cultures of esophageal myofibroblasts (A) and GFP-hTERT transfected esophageal myofibrobl...
© 2020 AGA Institute Background & Aims: Studies are needed to determine the mechanism by which Barre...
Tissue homeostasis requires balanced self-renewal and differentiation of stem/progenitor cells, espe...
Pluripotent stem cells (PSCs) could provide a powerful system to model development of the human esop...
Pluripotent stem cells (PSCs) could provide a powerful system to model development of the human esop...
The aim of this thesis is to further unravel the pathways and genes responsible for epithelial homeo...
Because the esophageal epithelium lacks a defined stem cell niche, it is unclear whether all basal e...
Aberrations in the esophageal proliferation-differentiation gradient are histologic hallmarks in eos...
textabstractBackground: To facilitate the in vivo study of esophageal (stem) cell biology in homeost...
OBJECTIVE: Knowledge of the cellular mechanisms involved in homeostasis of human squamous oesophagus...
<div><p>Barrett's esophagus (BE) is defined as an incomplete intestinal metaplasia characterized gen...
Background & Aims: Although cells comprising esophageal submucosal glands (ESMGs) represent a potent...
Esophageal cancer is one of the deadliest cancers in the U.S and worldwide. Esophageal cancer is cha...
AbstractThe mouse embryonic oesophagus is initially lined with a simple columnar epithelial layer wh...
Because the esophageal epithelium lacks a defined stem cell niche, it is unclear whether all basal e...
<p>Primary cultures of esophageal myofibroblasts (A) and GFP-hTERT transfected esophageal myofibrobl...
© 2020 AGA Institute Background & Aims: Studies are needed to determine the mechanism by which Barre...
Tissue homeostasis requires balanced self-renewal and differentiation of stem/progenitor cells, espe...
Pluripotent stem cells (PSCs) could provide a powerful system to model development of the human esop...
Pluripotent stem cells (PSCs) could provide a powerful system to model development of the human esop...
The aim of this thesis is to further unravel the pathways and genes responsible for epithelial homeo...
Because the esophageal epithelium lacks a defined stem cell niche, it is unclear whether all basal e...
Aberrations in the esophageal proliferation-differentiation gradient are histologic hallmarks in eos...
textabstractBackground: To facilitate the in vivo study of esophageal (stem) cell biology in homeost...
OBJECTIVE: Knowledge of the cellular mechanisms involved in homeostasis of human squamous oesophagus...
<div><p>Barrett's esophagus (BE) is defined as an incomplete intestinal metaplasia characterized gen...
Background & Aims: Although cells comprising esophageal submucosal glands (ESMGs) represent a potent...
Esophageal cancer is one of the deadliest cancers in the U.S and worldwide. Esophageal cancer is cha...
AbstractThe mouse embryonic oesophagus is initially lined with a simple columnar epithelial layer wh...
Because the esophageal epithelium lacks a defined stem cell niche, it is unclear whether all basal e...
<p>Primary cultures of esophageal myofibroblasts (A) and GFP-hTERT transfected esophageal myofibrobl...
© 2020 AGA Institute Background & Aims: Studies are needed to determine the mechanism by which Barre...
Tissue homeostasis requires balanced self-renewal and differentiation of stem/progenitor cells, espe...