Literature DB >> 25742399

Colitis induces enteric neurogenesis through a 5-HT4-dependent mechanism.

Jaime Belkind-Gerson1, Ryo Hotta, Nandor Nagy, Alyssa R Thomas, Hannah Graham, Lily Cheng, Juan Solorzano, Deanna Nguyen, Michal Kamionek, Jorg Dietrich, Bobby J Cherayil, Allan M Goldstein.   

Abstract

BACKGROUND: The intestine is known to contain enteric neuronal progenitors, but their precise identity and the mechanisms that activate them remain unknown. Based on the evidence for the neurogenic role of serotonin (5-HT) in the postnatal gut and the observation of enteric neuronal hyperplasia in inflammatory bowel disease, we hypothesized that colitis induces a neurogenic response through 5-HT4 receptor signaling.
METHODS: We examined the effects of 5-HT4 agonism on colonic neurogenesis and gliogenesis in vitro and in vivo in adult mice using dextran sodium sulfate to experimentally induce colitis.
RESULTS: In vitro, 5-HT4 agonism led to increased neuronal proliferation and density. Induction of experimental colitis in vivo similarly resulted in increased numbers of myenteric neurons, and this was inhibited by 5-HT4 antagonism. Interestingly, both in vitro and in vivo, 5-HT4 signaling increased glial cell proliferation but did not increase glial cell numbers, leading us to hypothesize that glia may give rise to neurons. After induction of colitis in normal, Nestin-GFP and Sox2-GFP transgenic mice, it was revealed that multiple glial markers (Sox2, Nestin, and CD49b) became strongly expressed by enteric neurons. Immunoselected enteric glia were found to give rise to neurons in culture, and this was inhibited in the presence of 5-HT4 blockade. Finally, isolated glia gave rise to a neuronal network upon transplantation into aganglionic embryonic avian hindgut.
CONCLUSIONS: These results show that colitis promotes enteric neurogenesis in the adult colon through a serotonin-dependent mechanism that drives glial cells to transdifferentiate into neurons.

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Year:  2015        PMID: 25742399      PMCID: PMC6688165          DOI: 10.1097/MIB.0000000000000326

Source DB:  PubMed          Journal:  Inflamm Bowel Dis        ISSN: 1078-0998            Impact factor:   5.325


  31 in total

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Authors:  Nandor Nagy; Allan M Goldstein
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2.  Adult enteric nervous system in health is maintained by a dynamic balance between neuronal apoptosis and neurogenesis.

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3.  Delivery of enteric neural progenitors with 5-HT4 agonist-loaded nanoparticles and thermosensitive hydrogel enhances cell proliferation and differentiation following transplantation in vivo.

Authors:  Ryo Hotta; Lily Cheng; Hannah K Graham; Nandor Nagy; Jaime Belkind-Gerson; George Mattheolabakis; Mansoor M Amiji; Allan M Goldstein
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10.  Estrogen receptor β controls proliferation of enteric glia and differentiation of neurons in the myenteric plexus after damage.

Authors:  F D'Errico; G Goverse; Y Dai; W Wu; M Stakenborg; E Labeeuw; V De Simone; B Verstockt; P J Gomez-Pinilla; M Warner; A Di Leo; G Matteoli; J A Gustafsson
Journal:  Proc Natl Acad Sci U S A       Date:  2018-05-14       Impact factor: 11.205

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