In the past decade, enormous progress has been made in understanding the role of stem cells in physiologic tissue renewal and in pathologic processes such as cancer. These findings have shed light on the identity and biological properties of such cells and the intrinsic and extrinsic signals that balance stem cell self-renewal with differentiation. With its astonishing self-renewal capacity, the intestinal epithelium has provided a unique model to study stem cell biology, lineage specification, and cancer. Here we review the role of Notch signaling in physiologic cell renewal and differentiation in the intestine as well as during its malignant transformation
Stem cell and progenitor fate in the mammalian intestine: Notch and lateral inhibition in homeostasi...
The conserved role of Notch signaling in controlling intestinal cell fate specification and homeosta...
Ingrid Espinoza,1,2 Radhika Pochampally,1,2 Fei Xing,1 Kounosuke Watabe,1,3 Lucio Miele1,4 1Cancer I...
In the past decade, enormous progress has been made in understanding the role of stem cells in physi...
The mammalian intestine is a prototype of a self-renewing organ. The rapid cellular turnover is supp...
Colon tumours are hierarchically organized and contain multipotent self-renewing cells, called Cance...
: The study of stem cell regulation in intestinal and colonic tissues is an area of significant focu...
AbstractThe Notch signaling pathway regulates intestinal epithelial cell homeostasis, including stem...
Colorectal cancer is the third most commonly diagnosed cancer in both men and women in the United St...
The gastrointestinal (GI) tract epithelium is continuously replenished by actively cycling stem and ...
The gastric epithelium is sustained by a population of stem cells that replenish the various mature ...
The intestinal epithelium follows the paradigms of stem cell biology established for other self-rene...
The intestinal epithelium follows the paradigms of stem cell biology established for other self-rene...
In recent years a substantial body of evidence has accumulated to support the notion that signaling ...
The conserved role of Notch signaling in controlling intestinal cell fate specification and homeosta...
Stem cell and progenitor fate in the mammalian intestine: Notch and lateral inhibition in homeostasi...
The conserved role of Notch signaling in controlling intestinal cell fate specification and homeosta...
Ingrid Espinoza,1,2 Radhika Pochampally,1,2 Fei Xing,1 Kounosuke Watabe,1,3 Lucio Miele1,4 1Cancer I...
In the past decade, enormous progress has been made in understanding the role of stem cells in physi...
The mammalian intestine is a prototype of a self-renewing organ. The rapid cellular turnover is supp...
Colon tumours are hierarchically organized and contain multipotent self-renewing cells, called Cance...
: The study of stem cell regulation in intestinal and colonic tissues is an area of significant focu...
AbstractThe Notch signaling pathway regulates intestinal epithelial cell homeostasis, including stem...
Colorectal cancer is the third most commonly diagnosed cancer in both men and women in the United St...
The gastrointestinal (GI) tract epithelium is continuously replenished by actively cycling stem and ...
The gastric epithelium is sustained by a population of stem cells that replenish the various mature ...
The intestinal epithelium follows the paradigms of stem cell biology established for other self-rene...
The intestinal epithelium follows the paradigms of stem cell biology established for other self-rene...
In recent years a substantial body of evidence has accumulated to support the notion that signaling ...
The conserved role of Notch signaling in controlling intestinal cell fate specification and homeosta...
Stem cell and progenitor fate in the mammalian intestine: Notch and lateral inhibition in homeostasi...
The conserved role of Notch signaling in controlling intestinal cell fate specification and homeosta...
Ingrid Espinoza,1,2 Radhika Pochampally,1,2 Fei Xing,1 Kounosuke Watabe,1,3 Lucio Miele1,4 1Cancer I...