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Transplanted progenitors generate functional enteric neurons in the postnatal colon
Ryo Hotta, Lincon A. Stamp, Jaime P.P. Foong, Sophie N. McConnell, Annette J. Bergner, Richard B. Anderson, Hideki Enomoto, Donald F. Newgreen, Florian Obermayr, John B. Furness, Heather M. Young
Ryo Hotta, Lincon A. Stamp, Jaime P.P. Foong, Sophie N. McConnell, Annette J. Bergner, Richard B. Anderson, Hideki Enomoto, Donald F. Newgreen, Florian Obermayr, John B. Furness, Heather M. Young
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Research Article Gastroenterology

Transplanted progenitors generate functional enteric neurons in the postnatal colon

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Abstract

Cell therapy has the potential to treat gastrointestinal motility disorders caused by diseases of the enteric nervous system. Many studies have demonstrated that various stem/progenitor cells can give rise to functional neurons in the embryonic gut; however, it is not yet known whether transplanted neural progenitor cells can migrate, proliferate, and generate functional neurons in the postnatal bowel in vivo. We transplanted neurospheres generated from fetal and postnatal intestinal neural crest–derived cells into the colon of postnatal mice. The neurosphere-derived cells migrated, proliferated, and generated neurons and glial cells that formed ganglion-like clusters within the recipient colon. Graft-derived neurons exhibited morphological, neurochemical, and electrophysiological characteristics similar to those of enteric neurons; they received synaptic inputs; and their neurites projected to muscle layers and the enteric ganglia of the recipient mice. These findings show that transplanted enteric neural progenitor cells can generate functional enteric neurons in the postnatal bowel and advances the notion that cell therapy is a promising strategy for enteric neuropathies.

Authors

Ryo Hotta, Lincon A. Stamp, Jaime P.P. Foong, Sophie N. McConnell, Annette J. Bergner, Richard B. Anderson, Hideki Enomoto, Donald F. Newgreen, Florian Obermayr, John B. Furness, Heather M. Young

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Figure 5

Phenotypes of neurons and neurites derived from fNSs or pNSs within whole-mount preparations of recipient colon.

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Phenotypes of neurons and neurites derived from fNSs or pNSs within whol...
(A–C) Ganglion-like cluster of cells derived from a pNS. A subpopulation of graft-derived Hu+ cells in the cluster showed NOS immunoreactivity (asterisks); some of the NOS+ neurons had lamellar dendrites (arrows), characteristic of NOS enteric neurons. (D–F) Neurites arising from a transplanted fNS within the circular muscle layer. Some of the varicosities of graft-derived neurites showed NOS immunoreactivity (arrows). (G–I) Ganglion-like cluster of cells derived from a fNS. A subpopulation of graft-derived Hu+ cells in the cluster showed ChAT immunoreactivity (asterisks). (J) The processes (arrows) of Kit+ ICCs (asterisks) were closely associated with clusters of graft-derived cells, but none of the graft-derived cells showed Kit immunostaining. Scale bars: 10 μm.

Copyright © 2025 American Society for Clinical Investigation
ISSN: 0021-9738 (print), 1558-8238 (online)

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