Organoid Derivation and Orthotopic Xenotransplantation for Studying Human Intestinal Stem Cell Dynamics

Author(s):  
Shinya Sugimoto ◽  
Masayuki Fujii ◽  
Toshiro Sato
2020 ◽  
Vol 319 (4) ◽  
pp. G494-G501 ◽  
Author(s):  
Yoshitatsu Sei ◽  
Jianying Feng ◽  
Xilin Zhao ◽  
Stephen A. Wank

Small intestinal neuroendocrine tumors (SI-NET) are serotonin-secreting well-differentiated neuroendocrine tumors of putative enterochromaffin (EC) cell origin. Recent studies recognize a subset of EC cells that is label-retaining at the +4 position in the crypt and functions as a reserve intestinal stem cell. Importantly, this +4 reserve EC cell subset not only contributes to regeneration of the intestinal epithelium during injury and inflammation but also to basal crypt homeostasis at a constant rate. The latter function suggests that the +4 EC cell subset serves as an active reserve stem cell via a constant rate of dedifferentiation. Characterization of early tumor formation of SI-NET, observed as crypt-based EC cell clusters in many cases of familial SI-NETs, suggests that the +4 active reserve EC cell subset is the cell of origin. This newly discovered active reserve stem cell property of EC cells can account for unique biological mechanisms and processes associated with the genesis and development of SI-NETs. The recognition of this property of the +4 active reserve EC cell subset may provide novel opportunities to explore NETs in the gastrointestinal tract and other organs.


2018 ◽  
Vol 22 (6) ◽  
pp. 785-787 ◽  
Author(s):  
Michael C. Hodder ◽  
Dustin J. Flanagan ◽  
Owen J. Sansom

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