Literature DB >> 26689598

Enteric Glial Cells: A New Frontier in Neurogastroenterology and Clinical Target for Inflammatory Bowel Diseases.

Fernando Ochoa-Cortes1, Fabio Turco, Andromeda Linan-Rico, Suren Soghomonyan, Emmett Whitaker, Sven Wehner, Rosario Cuomo, Fievos L Christofi.   

Abstract

The word "glia" is derived from the Greek word "γλoια," glue of the enteric nervous system, and for many years, enteric glial cells (EGCs) were believed to provide mainly structural support. However, EGCs as astrocytes in the central nervous system may serve a much more vital and active role in the enteric nervous system, and in homeostatic regulation of gastrointestinal functions. The emphasis of this review will be on emerging concepts supported by basic, translational, and/or clinical studies, implicating EGCs in neuron-to-glial (neuroglial) communication, motility, interactions with other cells in the gut microenvironment, infection, and inflammatory bowel diseases. The concept of the "reactive glial phenotype" is explored as it relates to inflammatory bowel diseases, bacterial and viral infections, postoperative ileus, functional gastrointestinal disorders, and motility disorders. The main theme of this review is that EGCs are emerging as a new frontier in neurogastroenterology and a potential therapeutic target. New technological innovations in neuroimaging techniques are facilitating progress in the field, and an update is provided on exciting new translational studies. Gaps in our knowledge are discussed for further research. Restoring normal EGC function may prove to be an efficient strategy to dampen inflammation. Probiotics, palmitoylethanolamide (peroxisome proliferator-activated receptor-α), interleukin-1 antagonists (anakinra), and interventions acting on nitric oxide, receptor for advanced glycation end products, S100B, or purinergic signaling pathways are relevant clinical targets on EGCs with therapeutic potential.

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Year:  2016        PMID: 26689598      PMCID: PMC4718179          DOI: 10.1097/MIB.0000000000000667

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


  175 in total

1.  Endogenous prion protein conversion is required for prion-induced neuritic alterations and neuronal death.

Authors:  Sabrina Cronier; Julie Carimalo; Brigitte Schaeffer; Emilie Jaumain; Vincent Béringue; Marie-Christine Miquel; Hubert Laude; Jean-Michel Peyrin
Journal:  FASEB J       Date:  2012-06-01       Impact factor: 5.191

2.  An astrocytic basis of epilepsy.

Authors:  Guo-Feng Tian; Hooman Azmi; Takahiro Takano; Qiwu Xu; Weiguo Peng; Jane Lin; NancyAnn Oberheim; Nanhong Lou; Xiaohai Wang; H Ronald Zielke; Jian Kang; Maiken Nedergaard
Journal:  Nat Med       Date:  2005-08-14       Impact factor: 53.440

3.  Neuropharmacology of purinergic receptors in human submucous plexus: Involvement of P2X₁, P2X₂, P2X₃ channels, P2Y and A₃ metabotropic receptors in neurotransmission.

Authors:  A Liñán-Rico; J E Wunderlich; J T Enneking; D R Tso; I Grants; K C Williams; A Otey; K Michel; M Schemann; B Needleman; A Harzman; F L Christofi
Journal:  Neuropharmacology       Date:  2015-02-24       Impact factor: 5.250

4.  Toll-like receptors 3, 4, and 7 are expressed in the enteric nervous system and dorsal root ganglia.

Authors:  Isabella Barajon; Graziano Serrao; Francesca Arnaboldi; Emanuela Opizzi; Gerlomina Ripamonti; Andrea Balsari; Cristiano Rumio
Journal:  J Histochem Cytochem       Date:  2009-06-22       Impact factor: 2.479

Review 5.  Astrocyte control of synaptic transmission and neurovascular coupling.

Authors:  Philip G Haydon; Giorgio Carmignoto
Journal:  Physiol Rev       Date:  2006-07       Impact factor: 37.312

6.  Mucosal flora in inflammatory bowel disease.

Authors:  Alexander Swidsinski; Axel Ladhoff; Annelie Pernthaler; Sonja Swidsinski; Vera Loening-Baucke; Marianne Ortner; Jutta Weber; Uwe Hoffmann; Stefan Schreiber; Manfred Dietel; Herbert Lochs
Journal:  Gastroenterology       Date:  2002-01       Impact factor: 22.682

7.  Increased astrocytic ATP release results in enhanced excitability of the hippocampus.

Authors:  Hae Ung Lee; Yoshihiko Yamazaki; Kenji F Tanaka; Kishio Furuya; Masahiro Sokabe; Hideki Hida; Keizo Takao; Tsuyoshi Miyakawa; Satoshi Fujii; Kazuhiro Ikenaka
Journal:  Glia       Date:  2012-09-27       Impact factor: 7.452

8.  Intracellular calcium oscillations in astrocytes: a highly plastic, bidirectional form of communication between neurons and astrocytes in situ.

Authors:  L Pasti; A Volterra; T Pozzan; G Carmignoto
Journal:  J Neurosci       Date:  1997-10-15       Impact factor: 6.167

9.  Enteric neural disruption in necrotizing enterocolitis occurs in association with myenteric glial cell CCL20 expression.

Authors:  Andrew O Fagbemi; Franco Torrente; Joanne Puleston; Kokila Lakhoo; Sean James; Simon H Murch
Journal:  J Pediatr Gastroenterol Nutr       Date:  2013-12       Impact factor: 2.839

10.  Increased mucosal nitric oxide production in ulcerative colitis is mediated in part by the enteroglial-derived S100B protein.

Authors:  C Cirillo; G Sarnelli; G Esposito; M Grosso; R Petruzzelli; P Izzo; G Calì; F P D'Armiento; A Rocco; G Nardone; T Iuvone; L Steardo; R Cuomo
Journal:  Neurogastroenterol Motil       Date:  2009-06-24       Impact factor: 3.598

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  42 in total

1.  Enteric Glia Regulate Gastrointestinal Motility but Are Not Required for Maintenance of the Epithelium in Mice.

Authors:  Meenakshi Rao; Daniella Rastelli; Lauren Dong; Sophia Chiu; Wanda Setlik; Michael D Gershon; Gabriel Corfas
Journal:  Gastroenterology       Date:  2017-07-13       Impact factor: 22.682

2.  Localization of cannabinoid receptors CB1, CB2, GPR55, and PPARα in the canine gastrointestinal tract.

Authors:  Giorgia Galiazzo; Fiorella Giancola; Agnese Stanzani; Federico Fracassi; Chiara Bernardini; Monica Forni; Marco Pietra; Roberto Chiocchetti
Journal:  Histochem Cell Biol       Date:  2018-06-07       Impact factor: 4.304

Review 3.  Resident macrophages in the healthy and inflamed intestinal muscularis externa.

Authors:  Sven Wehner; Daniel Robert Engel
Journal:  Pflugers Arch       Date:  2017-02-24       Impact factor: 3.657

Review 4.  Neurons and Glia in the Enteric Nervous System and Epithelial Barrier Function.

Authors:  Nathalie Vergnolle; Carla Cirillo
Journal:  Physiology (Bethesda)       Date:  2018-07-01

Review 5.  Immunopathological and molecular basis of functional dyspepsia and current therapeutic approaches.

Authors:  Mounika Addula; Victoria E D Wilson; Savio Reddymasu; Devendra K Agrawal
Journal:  Expert Rev Clin Immunol       Date:  2018-09-29       Impact factor: 4.473

6.  Colonic motor dysfunctions in a mouse model of high-fat diet-induced obesity: an involvement of A2B adenosine receptors.

Authors:  Luca Antonioli; Carolina Pellegrini; Matteo Fornai; Erika Tirotta; Daniela Gentile; Laura Benvenuti; Maria Cecilia Giron; Valentina Caputi; Ilaria Marsilio; Genny Orso; Nunzia Bernardini; Cristina Segnani; Chiara Ippolito; Balázs Csóka; Zoltán H Németh; György Haskó; Carmelo Scarpignato; Corrado Blandizzi; Rocchina Colucci
Journal:  Purinergic Signal       Date:  2017-08-14       Impact factor: 3.765

7.  Molecular Signaling and Dysfunction of the Human Reactive Enteric Glial Cell Phenotype: Implications for GI Infection, IBD, POI, Neurological, Motility, and GI Disorders.

Authors:  Andromeda Liñán-Rico; Fabio Turco; Fernando Ochoa-Cortes; Alan Harzman; Bradley J Needleman; Razvan Arsenescu; Mahmoud Abdel-Rasoul; Paolo Fadda; Iveta Grants; Emmett Whitaker; Rosario Cuomo; Fievos L Christofi
Journal:  Inflamm Bowel Dis       Date:  2016-08       Impact factor: 5.325

Review 8.  Purinergic drug targets for gastrointestinal disorders.

Authors:  Geoffrey Burnstock; Kenneth A Jacobson; Fievos L Christofi
Journal:  Curr Opin Pharmacol       Date:  2017-11-14       Impact factor: 5.547

Review 9.  Gene-environment interactions and the enteric nervous system: Neural plasticity and Hirschsprung disease prevention.

Authors:  Robert O Heuckeroth; Karl-Herbert Schäfer
Journal:  Dev Biol       Date:  2016-03-17       Impact factor: 3.582

10.  Enteric glial cells are susceptible to Clostridium difficile toxin B.

Authors:  Katia Fettucciari; Pamela Ponsini; Davide Gioè; Lara Macchioni; Camilla Palumbo; Elisabetta Antonelli; Stefano Coaccioli; Vincenzo Villanacci; Lanfranco Corazzi; Pierfrancesco Marconi; Gabrio Bassotti
Journal:  Cell Mol Life Sci       Date:  2016-11-28       Impact factor: 9.261

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