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Mechanosensory Signaling in Enterochromaffin Cells and 5-HT Release: Potential Implications for Gut Inflammation

Enterochromaffin (EC) cells synthesize 95% of the body 5-HT and release 5-HT in response to mechanical or chemical stimulation. EC cell 5-HT has physiological effects on gut motility, secretion and visceral sensation. Abnormal regulation of 5-HT occurs in gastrointestinal disorders and Inflammatory...

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Autores principales: Linan-Rico, Andromeda, Ochoa-Cortes, Fernando, Beyder, Arthur, Soghomonyan, Suren, Zuleta-Alarcon, Alix, Coppola, Vincenzo, Christofi, Fievos L.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5165017/
https://www.ncbi.nlm.nih.gov/pubmed/28066160
http://dx.doi.org/10.3389/fnins.2016.00564
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author Linan-Rico, Andromeda
Ochoa-Cortes, Fernando
Beyder, Arthur
Soghomonyan, Suren
Zuleta-Alarcon, Alix
Coppola, Vincenzo
Christofi, Fievos L.
author_facet Linan-Rico, Andromeda
Ochoa-Cortes, Fernando
Beyder, Arthur
Soghomonyan, Suren
Zuleta-Alarcon, Alix
Coppola, Vincenzo
Christofi, Fievos L.
author_sort Linan-Rico, Andromeda
collection PubMed
description Enterochromaffin (EC) cells synthesize 95% of the body 5-HT and release 5-HT in response to mechanical or chemical stimulation. EC cell 5-HT has physiological effects on gut motility, secretion and visceral sensation. Abnormal regulation of 5-HT occurs in gastrointestinal disorders and Inflammatory Bowel Diseases (IBD) where 5-HT may represent a key player in the pathogenesis of intestinal inflammation. The focus of this review is on mechanism(s) involved in EC cell “mechanosensation” and critical gaps in our knowledge for future research. Much of our knowledge and concepts are from a human BON cell model of EC, although more recent work has included other cell lines, native EC cells from mouse and human and intact mucosa. EC cells are “mechanosensors” that respond to physical forces generated during peristaltic activity by translating the mechanical stimulus (MS) into an intracellular biochemical response leading to 5-HT and ATP release. The emerging picture of mechanosensation includes Piezo 2 channels, caveolin-rich microdomains, and tight regulation of 5-HT release by purines. The “purinergic hypothesis” is that MS releases purines to act in an autocrine/paracrine manner to activate excitatory (P2Y(1), P2Y(4), P2Y(6), and A(2A)/A(2B)) or inhibitory (P2Y(12), A(1), and A(3)) receptors to regulate 5-HT release. MS activates a P2Y(1)/G(α)q/PLC/IP(3)-IP(3)R/SERCA Ca(2+)signaling pathway, an A(2A)/A(2B)–Gs/AC/cAMP-PKA signaling pathway, an ATP-gated P2X(3) channel, and an inhibitory P2Y(12)-G(i/o)/AC-cAMP pathway. In human IBD, P2X(3) is down regulated and A(2B) is up regulated in EC cells, but the pathophysiological consequences of abnormal mechanosensory or purinergic 5-HT signaling remain unknown. EC cell mechanosensation remains poorly understood.
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spelling pubmed-51650172017-01-06 Mechanosensory Signaling in Enterochromaffin Cells and 5-HT Release: Potential Implications for Gut Inflammation Linan-Rico, Andromeda Ochoa-Cortes, Fernando Beyder, Arthur Soghomonyan, Suren Zuleta-Alarcon, Alix Coppola, Vincenzo Christofi, Fievos L. Front Neurosci Neuroscience Enterochromaffin (EC) cells synthesize 95% of the body 5-HT and release 5-HT in response to mechanical or chemical stimulation. EC cell 5-HT has physiological effects on gut motility, secretion and visceral sensation. Abnormal regulation of 5-HT occurs in gastrointestinal disorders and Inflammatory Bowel Diseases (IBD) where 5-HT may represent a key player in the pathogenesis of intestinal inflammation. The focus of this review is on mechanism(s) involved in EC cell “mechanosensation” and critical gaps in our knowledge for future research. Much of our knowledge and concepts are from a human BON cell model of EC, although more recent work has included other cell lines, native EC cells from mouse and human and intact mucosa. EC cells are “mechanosensors” that respond to physical forces generated during peristaltic activity by translating the mechanical stimulus (MS) into an intracellular biochemical response leading to 5-HT and ATP release. The emerging picture of mechanosensation includes Piezo 2 channels, caveolin-rich microdomains, and tight regulation of 5-HT release by purines. The “purinergic hypothesis” is that MS releases purines to act in an autocrine/paracrine manner to activate excitatory (P2Y(1), P2Y(4), P2Y(6), and A(2A)/A(2B)) or inhibitory (P2Y(12), A(1), and A(3)) receptors to regulate 5-HT release. MS activates a P2Y(1)/G(α)q/PLC/IP(3)-IP(3)R/SERCA Ca(2+)signaling pathway, an A(2A)/A(2B)–Gs/AC/cAMP-PKA signaling pathway, an ATP-gated P2X(3) channel, and an inhibitory P2Y(12)-G(i/o)/AC-cAMP pathway. In human IBD, P2X(3) is down regulated and A(2B) is up regulated in EC cells, but the pathophysiological consequences of abnormal mechanosensory or purinergic 5-HT signaling remain unknown. EC cell mechanosensation remains poorly understood. Frontiers Media S.A. 2016-12-19 /pmc/articles/PMC5165017/ /pubmed/28066160 http://dx.doi.org/10.3389/fnins.2016.00564 Text en Copyright © 2016 Linan-Rico, Ochoa-Cortes, Beyder, Soghomonyan, Zuleta-Alarcon, Coppola and Christofi. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) or licensor are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Neuroscience
Linan-Rico, Andromeda
Ochoa-Cortes, Fernando
Beyder, Arthur
Soghomonyan, Suren
Zuleta-Alarcon, Alix
Coppola, Vincenzo
Christofi, Fievos L.
Mechanosensory Signaling in Enterochromaffin Cells and 5-HT Release: Potential Implications for Gut Inflammation
title Mechanosensory Signaling in Enterochromaffin Cells and 5-HT Release: Potential Implications for Gut Inflammation
title_full Mechanosensory Signaling in Enterochromaffin Cells and 5-HT Release: Potential Implications for Gut Inflammation
title_fullStr Mechanosensory Signaling in Enterochromaffin Cells and 5-HT Release: Potential Implications for Gut Inflammation
title_full_unstemmed Mechanosensory Signaling in Enterochromaffin Cells and 5-HT Release: Potential Implications for Gut Inflammation
title_short Mechanosensory Signaling in Enterochromaffin Cells and 5-HT Release: Potential Implications for Gut Inflammation
title_sort mechanosensory signaling in enterochromaffin cells and 5-ht release: potential implications for gut inflammation
topic Neuroscience
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5165017/
https://www.ncbi.nlm.nih.gov/pubmed/28066160
http://dx.doi.org/10.3389/fnins.2016.00564
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