For: | Cirillo C, Sarnelli G, Esposito G, Turco F, Steardo L, Cuomo R. S100B protein in the gut: The evidence for enteroglial-sustained intestinal inflammation. World J Gastroenterol 2011; 17(10): 1261-1266 [PMID: 21455324 DOI: 10.3748/wjg.v17.i10.1261] |
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URL: | https://www.wjgnet.com/1007-9327/full/v17/i10/1261.htm |
Number | Citing Articles |
1 |
G Kannan, K L Gressitt, S Yang, C R Stallings, E Katsafanas, L A Schweinfurth, C L G Savage, M B Adamos, K M Sweeney, A E Origoni, S Khushalani, S Bahn, F M Leweke, F B Dickerson, R H Yolken, M V Pletnikov, E G Severance. Pathogen-mediated NMDA receptor autoimmunity and cellular barrier dysfunction in schizophrenia. Translational Psychiatry 2017; 7(8): e1186 doi: 10.1038/tp.2017.162
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2 |
Luisa Seguella, Federica Rinaldi, Carlotta Marianecci, Riccardo Capuano, Mirella Pesce, Giuseppe Annunziata, Fabrizio Casano, Gabrio Bassotti, Angelo Sidoni, Marco Milone, Giovanni Aprea, Giovanni Domenico de Palma, Maria Carafa, Marcella Pesce, Giuseppe Esposito, Giovanni Sarnelli. Pentamidine niosomes thwart S100B effects in human colon carcinoma biopsies favouring wtp53 rescue. Journal of Cellular and Molecular Medicine 2020; 24(5): 3053 doi: 10.1111/jcmm.14943
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3 |
Carolina Pellegrini, Chiara Ippolito, Cristina Segnani, Amelio Dolfi, Mariella Errede, Daniela Virgintino, Matteo Fornai, Luca Antonioli, Francesca Garelli, Anna Nericcio, Rocchina Colucci, Silvia Cerri, Fabio Blandini, Corrado Blandizzi, Nunzia Bernardini. Pathological remodelling of colonic wall following dopaminergic nigrostriatal neurodegeneration. Neurobiology of Disease 2020; 139: 104821 doi: 10.1016/j.nbd.2020.104821
|
4 |
Asuman Celikbilek, Mehmet Celikbilek, Seda Sabah, Nermin Tanık, Elif Borekci, Serkan Dogan, Yavuz Akin, Suleyman Baldane, Kemal Deniz, Neziha Yilmaz, Omer Ozbakir, Mehmet Yucesoy. The Serum S100B Level as a Biomarker of Enteroglial Activation in Patients with Ulcerative Colitis. International Journal of Inflammation 2014; 2014: 1 doi: 10.1155/2014/986525
|
5 |
Aristo Vojdani, Elroy Vojdani, Martha Herbert, Datis Kharrazian. Correlation between Antibodies to Bacterial Lipopolysaccharides and Barrier Proteins in Sera Positive for ASCA and ANCA. International Journal of Molecular Sciences 2020; 21(4): 1381 doi: 10.3390/ijms21041381
|
6 |
Laura López-Gómez, Agata Szymaszkiewicz, Marta Zielińska, Raquel Abalo. Nutraceuticals and Enteric Glial Cells. Molecules 2021; 26(12): 3762 doi: 10.3390/molecules26123762
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7 |
Camilla Fardell, Anna Zettergren, Caroline Ran, Andrea Carmine Belin, Agneta Ekman, Olof Sydow, Lars Bäckman, Björn Holmberg, Nil Dizdar, Peter Söderkvist, Hans Nissbrandt. S100B polymorphisms are associated with age of onset of Parkinson’s disease. BMC Medical Genetics 2018; 19(1) doi: 10.1186/s12881-018-0547-3
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8 |
Ilaria Marsilio, Valentina Caputi, Eva Latorre, Silvia Cerantola, Andrea Paquola, Ana I. Alcalde, José E. Mesonero, Siobhain M. O'Mahony, Antonella Bertazzo, Cristina Giaroni, Maria Cecilia Giron. Oxidized phospholipids affect small intestine neuromuscular transmission and serotonergic pathways in juvenile mice. Neurogastroenterology & Motility 2021; 33(4) doi: 10.1111/nmo.14036
|
9 |
John E. Buonora, Angela M. Yarnell, Rachel C. Lazarus, Michael Mousseau, Lawrence L. Latour, Sandro B. Rizoli, Andrew J. Baker, Shawn G. Rhind, Ramon Diaz-Arrastia, Gregory P. Mueller. Multivariate Analysis of Traumatic Brain Injury: Development of an Assessment Score. Frontiers in Neurology 2015; 6 doi: 10.3389/fneur.2015.00068
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10 |
Catherine Le Berre, Philippe Naveilhan, Malvyne Rolli-Derkinderen. Enteric glia at center stage of inflammatory bowel disease. Neuroscience Letters 2023; 809: 137315 doi: 10.1016/j.neulet.2023.137315
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11 |
Huichao Xie, Xiong Zeng, Wensheng Wang, Wei Wang, Ben Han, QianShan Tan, Qiu Hu, Xingyu Liu, Shuaishuai Chen, Jun Chen, Lihua Sun, Yihui Chen, Weidong Xiao. Enteric glial cells aggravate the intestinal epithelial barrier damage by secreting S100β under high-altitude conditions. Molecular Biomedicine 2023; 4(1) doi: 10.1186/s43556-023-00143-1
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12 |
Hikaru Teramoto, Naohide Hirashima, Masahiko Tanaka. Calcineurin B1 Deficiency Reduces Proliferation, Increases Apoptosis, and Alters Secretion in Enteric Glial Cells of Mouse Small Intestine in Culture. Cells 2023; 12(14): 1867 doi: 10.3390/cells12141867
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13 |
Lucia Aidos, Margherita Pallaoro, Giorgio Mirra, Valentina Serra, Marta Castrica, Stella Agradi, Giulio Curone, Daniele Vigo, Federica Riva, Claudia Maria Balzaretti, Roberta De Bellis, Grazia Pastorelli, Gabriele Brecchia, Silvia Clotilde Modina, Alessia Di Giancamillo. Intestine Health and Barrier Function in Fattening Rabbits Fed Bovine Colostrum. Veterinary Sciences 2023; 10(11): 657 doi: 10.3390/vetsci10110657
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14 |
Aaron Lerner. The intestinal luminal sources of α-synuclein: a gastroenterologist perspective. Nutrition Reviews 2022; 80(2): 282 doi: 10.1093/nutrit/nuab024
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15 |
Michael Meir, Sven Flemming, Natalie Burkard, Johanna Wagner, Christoph-Thomas Germer, Nicolas Schlegel. The glial cell-line derived neurotrophic factor: a novel regulator of intestinal barrier function in health and disease. American Journal of Physiology-Gastrointestinal and Liver Physiology 2016; 310(11): G1118 doi: 10.1152/ajpgi.00125.2016
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16 |
Declan P McKernan, David P Finn. An apPEAling new therapeutic for ulcerative colitis?. Gut 2014; 63(8): 1207 doi: 10.1136/gutjnl-2013-305929
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17 |
Rüdiger von Bauer, Dimitrios Oikonomou, Alba Sulaj, Sawsan Mohammed, Agnes Hotz-Wagenblatt, Hermann-Josef Gröne, Bernd Arnold, Christine Falk, Dorit Luethje, Axel Erhardt, David M. Stern, Angelika Bierhaus, Peter P. Nawroth. CD166/ALCAM Mediates Proinflammatory Effects of S100B in Delayed Type Hypersensitivity. The Journal of Immunology 2013; 191(1): 369 doi: 10.4049/jimmunol.1201864
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18 |
Stefano Di Bella, Gianfranco Sanson, Jacopo Monticelli, Verena Zerbato, Luigi Principe, Mauro Giuffrè, Giuseppe Pipitone, Roberto Luzzati, Christopher Staley, Mayuresh Abhyankar.
Clostridioides difficile
infection: history, epidemiology, risk factors, prevention, clinical manifestations, treatment, and future options
. Clinical Microbiology Reviews 2024; 37(2) doi: 10.1128/cmr.00135-23
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19 |
Fernando Ochoa-Cortes, Fabio Turco, Andromeda Linan-Rico, Suren Soghomonyan, Emmett Whitaker, Sven Wehner, Rosario Cuomo, Fievos L. Christofi. Enteric Glial Cells. Inflammatory Bowel Diseases 2016; 22(2): 433 doi: 10.1097/MIB.0000000000000667
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20 |
Katia Fettucciari, Pamela Ponsini, Davide Gioè, Lara Macchioni, Camilla Palumbo, Elisabetta Antonelli, Stefano Coaccioli, Vincenzo Villanacci, Lanfranco Corazzi, Pierfrancesco Marconi, Gabrio Bassotti. Enteric glial cells are susceptible to Clostridium difficile toxin B. Cellular and Molecular Life Sciences 2017; 74(8): 1527 doi: 10.1007/s00018-016-2426-4
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21 |
Jihui Zheng, Wenjing Zhu, Fang He, Zhu Li, Na Cai, Hong-Hui Wang, Shuai Chen. An Aptamer-Based Antagonist against the Receptor for Advanced Glycation End-Products (RAGE) Blocks Development of Colorectal Cancer. Mediators of Inflammation 2021; 2021: 1 doi: 10.1155/2021/9958051
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22 |
Lisa Zanoletti, Aurora Valdata, Kristina Nehlsen, Pawan Faris, Claudio Casali, Rosalia Cacciatore, Ilaria Sbarsi, Francesca Carriero, Davide Arfini, Lies van Baarle, Veronica De Simone, Giulia Barbieri, Elena Raimondi, Tobias May, Francesco Moccia, Mauro Bozzola, Gianluca Matteoli, Sergio Comincini, Federico Manai. Cytological, molecular, cytogenetic, and physiological characterization of a novel immortalized human enteric glial cell line. Frontiers in Cellular Neuroscience 2023; 17 doi: 10.3389/fncel.2023.1170309
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23 |
Aristo Vojdani, Aaron Lerner, Elroy Vojdani. Cross-Reactivity and Sequence Homology Between Alpha-Synuclein and Food Products: A Step Further for Parkinson’s Disease Synucleinopathy. Cells 2021; 10(5): 1111 doi: 10.3390/cells10051111
|
24 |
David Grundmann, Eva Loris, Silke Maas‐Omlor, Wenhui Huang, Anja Scheller, Frank Kirchhoff, Karl‐Herbert Schäfer. Enteric Glia: S100, GFAP, and Beyond. The Anatomical Record 2019; 302(8): 1333 doi: 10.1002/ar.24128
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25 |
Masahiro Yamamoto, Mitsue Nishiyama, Seiichi Iizuka, Shigeaki Suzuki, Norihiro Suzuki, Sadakazu Aiso, Jin Nakahara. Transient receptor potential vanilloid 1-immunoreactive signals in murine enteric glial cells. World Journal of Gastroenterology 2016; 22(44): 9752-9764 doi: 10.3748/wjg.v22.i44.9752
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26 |
Ya-Mei Wang, Yi-Tao Jia, Zhong-Xin Li. Role of enteric glial cells in intestinal function and intestinal diseases. World Chinese Journal of Digestology 2020; 28(19): 979 doi: 10.11569/wcjd.v28.i19.979
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27 |
Lixin Wang, Pu-Qing Yuan, Yvette Taché. Vasculature in the mouse colon and spatial relationships with the enteric nervous system, glia, and immune cells. Frontiers in Neuroanatomy 2023; 17 doi: 10.3389/fnana.2023.1130169
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28 |
Paola Brun, Maria Cecilia Giron, Marsela Qesari, Andrea Porzionato, Valentina Caputi, Chiara Zoppellaro, Serena Banzato, Alessia Rosaria Grillo, Lisa Spagnol, Raffaele De Caro, Daniela Pizzuti, Vito Barbieri, Antonio Rosato, Giacomo Carlo Sturniolo, Diego Martines, Giovanni Zaninotto, Giorgio Palù, Ignazio Castagliuolo. Toll-Like Receptor 2 Regulates Intestinal Inflammation by Controlling Integrity of the Enteric Nervous System. Gastroenterology 2013; 145(6): 1323 doi: 10.1053/j.gastro.2013.08.047
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29 |
Giorgia Galiazzo, Fiorella Giancola, Agnese Stanzani, Federico Fracassi, Chiara Bernardini, Monica Forni, Marco Pietra, Roberto Chiocchetti. Localization of cannabinoid receptors CB1, CB2, GPR55, and PPARα in the canine gastrointestinal tract. Histochemistry and Cell Biology 2018; 150(2): 187 doi: 10.1007/s00418-018-1684-7
|
30 |
Kayvon Moin, Carly Funk, Meagan Josephs. Gut-brain axis: Review on the association between Parkinson’s disease and plant lectins. Archive of Clinical Cases 2022; 9(4): 177 doi: 10.22551/2022.37.0904.10228
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31 |
Chloe Stenkamp-Strahm, Savannah Patterson, Jennifer Boren, Martin Gericke, Onesmo Balemba. High-fat diet and age-dependent effects on enteric glial cell populations of mouse small intestine. Autonomic Neuroscience 2013; 177(2): 199 doi: 10.1016/j.autneu.2013.04.014
|
32 |
Sarah M. O’Donovan, Erin K. Crowley, Jillian R.‐M. Brown, Orla O’Sullivan, Olivia F. O’Leary, Suzanne Timmons, Yvonne M. Nolan, David J. Clarke, Niall P. Hyland, Susan A. Joyce, Aideen M. Sullivan, Cora O'Neill. Nigral overexpression of α‐synuclein in a rat Parkinson’s disease model indicates alterations in the enteric nervous system and the gut microbiome. Neurogastroenterology & Motility 2020; 32(1) doi: 10.1111/nmo.13726
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33 |
Luca Antonioli, Vanessa D'Antongiovanni, Carolina Pellegrini, Matteo Fornai, Laura Benvenuti, Alma di Carlo, Renè van den Wijngaard, Valentina Caputi, Silvia Cerantola, Maria Cecilia Giron, Zoltán H. Németh, György Haskó, Corrado Blandizzi, Rocchina Colucci. Colonic dysmotility associated with high‐fat diet‐induced obesity: Role of enteric glia. The FASEB Journal 2020; 34(4): 5512 doi: 10.1096/fj.201901844R
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34 |
Ying Xu, Ming-Zheng Xie, Guo-Gang Liang. Advances in morphologic study of enteric glial cells. World Chinese Journal of Digestology 2019; 27(8): 521 doi: 10.11569/wcjd.v27.i8.521
|
35 |
Ainsley M. Robinson, Vanesa Stojanovska, Ahmed A. Rahman, Rachel M. McQuade, Paul V. Senior, Kulmira Nurgali. Effects of Oxaliplatin Treatment on the Enteric Glial Cells and Neurons in the Mouse Ileum. Journal of Histochemistry & Cytochemistry 2016; 64(9): 530 doi: 10.1369/0022155416656842
|
36 |
François Cossais, Sebastian Leuschner, Martina Barrenschee, Christina Lange, Michael Ebsen, Ilka Vogel, Martina Böttner, Thilo Wedel. Persistent Increased Enteric Glial Expression of S100β is Associated With Low-grade Inflammation in Patients With Diverticular Disease. Journal of Clinical Gastroenterology 2019; 53(6): 449 doi: 10.1097/MCG.0000000000001011
|
37 |
Marlene M. Hao, Elena Capoccia, Carla Cirillo, Werend Boesmans, Pieter Vanden Berghe. Arundic Acid Prevents Developmental Upregulation of S100B Expression and Inhibits Enteric Glial Development. Frontiers in Cellular Neuroscience 2017; 11 doi: 10.3389/fncel.2017.00042
|
38 |
Luisa Valdetaro, Beatriz Thomasi, Maria Carolina Ricciardi, Karoline de Melo Santos, Juliana de Mattos Coelho-Aguiar, Ana Lúcia Tavares-Gomes. Enteric nervous system as a target and source of SARS-CoV-2 and other viral infections. American Journal of Physiology-Gastrointestinal and Liver Physiology 2023; 325(2): G93 doi: 10.1152/ajpgi.00229.2022
|
39 |
Robert Yuan, Nupur Bhattacharya, Justin A. Kenkel, Jeanne Shen, Michael A. DiMaio, Sreya Bagchi, Tyler R. Prestwood, Aida Habtezion, Edgar G. Engleman. Enteric Glia Play a Critical Role in Promoting the Development of Colorectal Cancer. Frontiers in Oncology 2020; 10 doi: 10.3389/fonc.2020.595892
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40 |
Marianna Danková, Štefan Tóth, Monika Holodová, Zuzana Fagová, Kristína Čurgali, Eva Mechírová, Milan Maretta, Radomíra Nemcová, Soňa Gancarčíková, Štefan Polák. Immunohistochemical visualisation of the enteric nervous system architecture in the germ-free piglets. Journal of Molecular Histology 2022; 53(4): 773 doi: 10.1007/s10735-022-10079-5
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41 |
Vanessa D'Antongiovanni, Matteo Fornai, Rocchina Colucci, Anna Nericcio, Laura Benvenuti, Clelia Di Salvo, Cristina Segnani, Clarissa Pierucci, Chiara Ippolito, Zoltan H. Nemeth, György Haskó, Nunzia Bernardini, Luca Antonioli, Carolina Pellegrini. Enteric glial NLRP3 inflammasome contributes to gut mucosal barrier alterations in a mouse model of diet‐induced obesity. Acta Physiologica 2024; doi: 10.1111/apha.14232
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42 |
Corinna Rosenbaum, Martin Alexander Schick, Jakob Wollborn, Andreas Heider, Claus-Jürgen Scholz, Alexander Cecil, Beate Niesler, Johannes Hirrlinger, Heike Walles, Marco Metzger, Yvette Tache. Activation of Myenteric Glia during Acute Inflammation In Vitro and In Vivo. PLOS ONE 2016; 11(3): e0151335 doi: 10.1371/journal.pone.0151335
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43 |
Giuseppe Esposito, Elena Capoccia, Giovanni Sarnelli, Caterina Scuderi, Carla Cirillo, Rosario Cuomo, Luca Steardo. The antiprotozoal drug pentamidine ameliorates experimentally induced acute colitis in mice. Journal of Neuroinflammation 2012; 9(1) doi: 10.1186/1742-2094-9-277
|
44 |
Yan-Bo Yu, Yan-Qing Li. Enteric glial cells and their role in the intestinal epithelial barrier. World Journal of Gastroenterology 2014; 20(32): 11273-11280 doi: 10.3748/wjg.v20.i32.11273
|
45 |
Carla Cirillo, Talat Bessissow, An-Sofie Desmet, Hanne Vanheel, Jan Tack, Pieter Vanden Berghe. Evidence for Neuronal and Structural Changes in Submucous Ganglia of Patients With Functional Dyspepsia. American Journal of Gastroenterology 2015; 110(8): 1205 doi: 10.1038/ajg.2015.158
|
46 |
Luisa Seguella, Brian D. Gulbransen. Enteric glial biology, intercellular signalling and roles in gastrointestinal disease. Nature Reviews Gastroenterology & Hepatology 2021; 18(8): 571 doi: 10.1038/s41575-021-00423-7
|
47 |
Luisa Seguella, Mirella Pesce, Riccardo Capuano, Fabrizio Casano, Marcella Pesce, Chiara Corpetti, Martina Vincenzi, Daniela Maftei, Roberta Lattanzi, Alessandro Del Re, Giovanni Sarnelli, Brian D. Gulbransen, Giuseppe Esposito. High-fat diet impairs duodenal barrier function and elicits glia-dependent changes along the gut-brain axis that are required for anxiogenic and depressive-like behaviors. Journal of Neuroinflammation 2021; 18(1) doi: 10.1186/s12974-021-02164-5
|
48 |
Vladimir Grubišić, Brian D. Gulbransen. Enteric glia: the most alimentary of all glia. The Journal of Physiology 2017; 595(2): 557 doi: 10.1113/JP271021
|
49 |
Fabrizio Michetti, Maria Elisabetta Clementi, Rosa Di Liddo, Federica Valeriani, Francesco Ria, Mario Rende, Gabriele Di Sante, Vincenzo Romano Spica. The S100B Protein: A Multifaceted Pathogenic Factor More Than a Biomarker. International Journal of Molecular Sciences 2023; 24(11): 9605 doi: 10.3390/ijms24119605
|
50 |
Gleison Daion Piovezana Bossolani, Bruna Thais Silva, Juliana Vanessa Colombo Martins Perles, Mariana Machado Lima, Flávia Cristina Vieira Frez, Sara Raquel Garcia de Souza, Camila Caviquioli Sehaber-Sierakowski, Ciomar Aparecida Bersani-Amado, Jacqueline Nelisis Zanoni. Rheumatoid arthritis induces enteric neurodegeneration and jejunal inflammation, and quercetin promotes neuroprotective and anti-inflammatory actions. Life Sciences 2019; 238: 116956 doi: 10.1016/j.lfs.2019.116956
|
51 |
Elena Lucarini, Luisa Seguella, Martina Vincenzi, Carmen Parisio, Laura Micheli, Alessandra Toti, Chiara Corpetti, Alessandro Del Re, Silvia Squillace, Daniela Maftei, Roberta Lattanzi, Carla Ghelardini, Lorenzo Di Cesare Mannelli, Giuseppe Esposito. Role of Enteric Glia as Bridging Element between Gut Inflammation and Visceral Pain Consolidation during Acute Colitis in Rats. Biomedicines 2021; 9(11): 1671 doi: 10.3390/biomedicines9111671
|
52 |
Oliviu-Florentiu Sarb, Adriana-Daniela Sarb, Maria Iacobescu, Irina-Maria Vlad, Mircea-Vasile Milaciu, Lorena Ciurmarnean, Vitalie Vacaras, Alina-Ioana Tantau. From Gut to Brain: Uncovering Potential Serum Biomarkers Connecting Inflammatory Bowel Diseases to Neurodegenerative Diseases. International Journal of Molecular Sciences 2024; 25(11): 5676 doi: 10.3390/ijms25115676
|
53 |
Giuseppe Esposito, Elena Capoccia, Fabio Turco, Ilaria Palumbo, Jie Lu, Antonio Steardo, Rosario Cuomo, Giovanni Sarnelli, Luca Steardo. Palmitoylethanolamide improves colon inflammation through an enteric glia/toll like receptor 4-dependent PPAR-α activation. Gut 2014; 63(8): 1300 doi: 10.1136/gutjnl-2013-305005
|
54 |
Laura Benvenuti, Vanessa D'Antongiovanni, Carolina Pellegrini, Luca Antonioli, Nunzia Bernardini, Corrado Blandizzi, Matteo Fornai. Enteric Glia at the Crossroads between Intestinal Immune System and Epithelial Barrier: Implications for Parkinson Disease. International Journal of Molecular Sciences 2020; 21(23): 9199 doi: 10.3390/ijms21239199
|
55 |
C. Traini, S. Evangelista, V. Girod, M.S. Faussone‐Pellegrini, M.G. Vannucchi. Changes of excitatory and inhibitory neurotransmitters in the colon of rats underwent to the wrap partial restraint stress. Neurogastroenterology & Motility 2016; 28(8): 1172 doi: 10.1111/nmo.12816
|
56 |
Patricia Pereira Almeida, Luisa Valdetaro, Beatriz Bastos de Moraes Thomasi, Milena Barcza Stockler‐Pinto, Ana Lúcia Tavares‐Gomes. High‐fat diets on the enteric nervous system: Possible interactions and mechanisms underlying dysmotility. Obesity Reviews 2022; 23(4) doi: 10.1111/obr.13404
|
57 |
Nian Wang, Shuangning Song, Jie Chen. Synchronized dual pulse gastric electrical stimulation improves gastric emptying and activates enteric glial cells via upregulation of GFAP and S100B with different courses of subdiaphragmatic vagotomy in rats. Molecular Medicine Reports 2017; 15(6): 3826 doi: 10.3892/mmr.2017.6471
|
58 |
Efthalia Angelopoulou, Yam Nath Paudel, Christina Piperi. Emerging role of S100B protein implication in Parkinson’s disease pathogenesis. Cellular and Molecular Life Sciences 2021; 78(4): 1445 doi: 10.1007/s00018-020-03673-x
|
59 |
Shubhankar Suman. Enteric Nervous System Alterations in Inflammatory Bowel Disease: Perspectives and Implications. Gastrointestinal Disorders 2024; 6(2): 368 doi: 10.3390/gidisord6020025
|
60 |
E. F. dos Santos‐Júnior, C. Gonçalves‐Pimentel, L. C. C. de Araújo, T. G. da Silva, M. R. de Melo‐Júnior, V. Moura‐Neto, B. L. D. S. Andrade‐da‐Costa. Malnutrition increases NO production and induces changes in inflammatory and oxidative status in the distal colon of lactating rats. Neurogastroenterology & Motility 2016; 28(8): 1204 doi: 10.1111/nmo.12820
|
61 |
Breana Channer, Stephanie M. Matt, Emily A. Nickoloff-Bybel, Vasiliki Pappa, Yash Agarwal, Jason Wickman, Peter J. Gaskill, Habibeh Khoshbouei. Dopamine, Immunity, and Disease. Pharmacological Reviews 2023; 75(1): 62 doi: 10.1124/pharmrev.122.000618
|
62 |
Vincenzo Romano Spica, Federica Valeriani, Massimiliano Orsini, Maria Elisabetta Clementi, Luisa Seguella, Gianluca Gianfranceschi, Rosa Di Liddo, Gabriele Di Sante, Francesca Ubaldi, Francesco Ria, Giuseppe Esposito, Fabrizio Michetti. S100B Affects Gut Microbiota Biodiversity. International Journal of Molecular Sciences 2023; 24(3): 2248 doi: 10.3390/ijms24032248
|
63 |
Ilaria Andreana, Valeria Bincoletto, Paola Milla, Franco Dosio, Barbara Stella, Silvia Arpicco. Nanotechnological approaches for pentamidine delivery. Drug Delivery and Translational Research 2022; 12(8): 1911 doi: 10.1007/s13346-022-01127-4
|
64 |
Aiwen Feng, Cheng Li, Shaosheng Su, Yingyan Liu. 1,25(OH)2D3 supplementation alleviates gut–vascular barrier disruption via inhibition of S100B/ADAM10 pathway. Tissue Barriers 2024; 12(4) doi: 10.1080/21688370.2024.2327776
|
65 |
Tomasz Brudek, Teus van Laar. Inflammatory Bowel Diseases and Parkinson’s Disease. Journal of Parkinson's Disease 2019; 9(s2): S331 doi: 10.3233/JPD-191729
|
66 |
E Capoccia, C Cirillo, S Gigli, M Pesce, A D’Alessandro, R Cuomo, G Sarnelli, L Steardo, G Esposito. Enteric glia: A new player in inflammatory bowel diseases. International Journal of Immunopathology and Pharmacology 2015; 28(4): 443 doi: 10.1177/0394632015599707
|
67 |
Ana Luisa Cardoso, Adelaide Fernandes, Juan Antonio Aguilar-Pimentel, Martin Hrabě de Angelis, Joana Ribeiro Guedes, Maria Alexandra Brito, Saida Ortolano, Giovambattista Pani, Sophia Athanasopoulou, Efstathios S. Gonos, Markus Schosserer, Johannes Grillari, Pärt Peterson, Bilge Guvenc Tuna, Soner Dogan, Angelika Meyer, Ronald van Os, Anne-Ulrike Trendelenburg. Towards frailty biomarkers: Candidates from genes and pathways regulated in aging and age-related diseases. Ageing Research Reviews 2018; 47: 214 doi: 10.1016/j.arr.2018.07.004
|
68 |
Elizaveta E. Genrikhs, Elena V. Stelmashook, Dmitriy N. Voronkov, Svetlana V. Novikova, Olga P. Alexandrova, Artem V. Fedorov, Nickolay K. Isaev. The single intravenous administration of methylene blue after traumatic brain injury diminishes neurological deficit, blood-brain barrier disruption and decrease in the expression of S100 protein in rats. Brain Research 2020; 1740: 146854 doi: 10.1016/j.brainres.2020.146854
|
69 |
John E. Buonora, Michael Mousseau, David M. Jacobowitz, Rachel C. Lazarus, Angela M. Yarnell, Cara H. Olsen, Harvey B. Pollard, Ramon Diaz-Arrastia, Lawrence Latour, Gregory P. Mueller. Autoimmune Profiling Reveals Peroxiredoxin 6 as a Candidate Traumatic Brain Injury Biomarker. Journal of Neurotrauma 2015; 32(22): 1805 doi: 10.1089/neu.2014.3736
|
70 |
Murielle Girard, Dominique Malauzat, Philippe Nubukpo. Serum inflammatory molecules and markers of neuronal damage in alcohol-dependent subjects after withdrawal. The World Journal of Biological Psychiatry 2019; 20(1): 76 doi: 10.1080/15622975.2017.1349338
|
71 |
Shanshan Zhong, Zhike Zhou, Yifan Liang, Xi Cheng, Yong Li, Weiyu Teng, Mei Zhao, Chang Liu, Meiting Guan, Chuansheng Zhao. Targeting strategies for chemotherapy-induced peripheral neuropathy: does gut microbiota play a role?. Critical Reviews in Microbiology 2019; 45(4): 369 doi: 10.1080/1040841X.2019.1608905
|
72 |
Christina L. Graves, Erik Norloff, Darius Thompson, Oksana Kosyk, Yingning Sang, Angela Chen, Anthony S. Zannas, Shannon M. Wallet. Chronic early life stress alters the neuroimmune profile and functioning of the developing zebrafish gut. Brain, Behavior, & Immunity - Health 2023; 31: 100655 doi: 10.1016/j.bbih.2023.100655
|
73 |
Michellie Thurman, Samuel Johnson, Arpan Acharya, Suresh Pallikkuth, Mohan Mahesh, Siddappa N. Byrareddy. Biomarkers of Activation and Inflammation to Track Disparity in Chronological and Physiological Age of People Living With HIV on Combination Antiretroviral Therapy. Frontiers in Immunology 2020; 11 doi: 10.3389/fimmu.2020.583934
|
74 |
Guanqun Chao, Fangxu Ye, Yuan Yuan, Shuo Zhang. Berberine ameliorates non‐steroidal anti‐inflammatory drugs‐induced intestinal injury by the repair of enteric nervous system. Fundamental & Clinical Pharmacology 2020; 34(2): 238 doi: 10.1111/fcp.12509
|
75 |
M.A. Ottinger, K. Duffy, A. Schlappal, B. Sitzmann, J. Wu, D. Zimmer. Reference Module in Biomedical Sciences. 2014; doi: 10.1016/B978-0-12-801238-3.00156-2
|
76 |
Ran Qi, Wei Yang, Jie Chen. Role of enteric glial cells in gastric motility in diabetic rats at different stages. Journal of Huazhong University of Science and Technology [Medical Sciences] 2013; 33(4): 496 doi: 10.1007/s11596-013-1148-1
|
77 |
Aaron Lerner, Sandra Neidhöfer, Torsten Matthias. The Gut Microbiome Feelings of the Brain: A Perspective for Non-Microbiologists. Microorganisms 2017; 5(4): 66 doi: 10.3390/microorganisms5040066
|
78 |
Nathalie Vergnolle, Carla Cirillo. Neurons and Glia in the Enteric Nervous System and Epithelial Barrier Function. Physiology 2018; 33(4): 269 doi: 10.1152/physiol.00009.2018
|
79 |
Sneha Santhosh, Lisa Zanoletti, Lincon A. Stamp, Marlene M. Hao, Gianluca Matteoli. From diversity to disease: unravelling the role of enteric glial cells. Frontiers in Immunology 2024; 15 doi: 10.3389/fimmu.2024.1408744
|
80 |
Hernán Villalón, Stefanie Pantoja, Natalia Vergara, Marie-Chantal Caussade, María de los Ángeles Vial, Mauricio Pinto, Cristián Silva. SÍNDROME INFLAMATORIO PERINATAL PERSISTENTE DEL PREMATURO EXTREMO. IMPORTANTE FACTOR DE MORBIMORTALIDAD. PARTE II: COMPROMISO MULTISISTÉMICO. Revista Médica Clínica Las Condes 2021; 32(6): 672 doi: 10.1016/j.rmclc.2021.10.004
|
81 |
Laura López-Gómez, Agata Szymaszkiewicz, Marta Zielińska, Raquel Abalo. The Enteric Glia and Its Modulation by the Endocannabinoid System, a New Target for Cannabinoid-Based Nutraceuticals?. Molecules 2022; 27(19): 6773 doi: 10.3390/molecules27196773
|
82 |
Luisa Seguella, Riccardo Capuano, Mirella Pesce, Giuseppe Annunziata, Marcella Pesce, Barbara de Conno, Giovanni Sarnelli, Laura Aurino, Giuseppe Esposito. S100B Protein Stimulates Proliferation and Angiogenic Mediators Release through RAGE/pAkt/mTOR Pathway in Human Colon Adenocarcinoma Caco-2 Cells. International Journal of Molecular Sciences 2019; 20(13): 3240 doi: 10.3390/ijms20133240
|
83 |
Kate Phuong-Nguyen, Bryony A. McNeill, Kathryn Aston-Mourney, Leni R. Rivera. Advanced Glycation End-Products and Their Effects on Gut Health. Nutrients 2023; 15(2): 405 doi: 10.3390/nu15020405
|
84 |
Aaron Lerner, Carina Benzvi, Aristo Vojdani. SARS-CoV-2 Gut-Targeted Epitopes: Sequence Similarity and Cross-Reactivity Join Together for Molecular Mimicry. Biomedicines 2023; 11(7): 1937 doi: 10.3390/biomedicines11071937
|
85 |
Alexander Humberg, Ingmar Fortmann, Bastian Siller, Matthias Volkmar Kopp, Egbert Herting, Wolfgang Göpel, Christoph Härtel. Preterm birth and sustained inflammation: consequences for the neonate. Seminars in Immunopathology 2020; 42(4): 451 doi: 10.1007/s00281-020-00803-2
|
86 |
Gabriela Mandú Gimenes, Joice Naiara Bertaglia Pereira, Eliane Borges da Silva, Alef Aragão Carneiro dos Santos, Thais Martins Rodrigues, Giovanna de Oliveira Santana, Maria Vitoria Martins Scervino, Tania Cristina Pithon-Curi, Sandro Massao Hirabara, Renata Gorjão, Rui Curi. Intestinal Motility Dysfunction in Goto-Kakizaki Rats: Role of the Myenteric Plexus. Cells 2024; 13(19): 1626 doi: 10.3390/cells13191626
|
87 |
Britt Nibbering, Dale N. Gerding, Ed J. Kuijper, Romy D. Zwittink, Wiep Klaas Smits. Host Immune Responses to Clostridioides difficile: Toxins and Beyond. Frontiers in Microbiology 2021; 12 doi: 10.3389/fmicb.2021.804949
|
88 |
Andrea V. Loureiro, Lauro I. Moura-Neto, Conceição S. Martins, Pedro I. M. Silva, Matheus B.S. Lopes, Renata F. C. Leitão, Juliana M. Coelho-Aguiar, Vivaldo Moura-Neto, Cirle A. Warren, Deiziane V.S. Costa, Gerly A. C. Brito. Role of Pannexin-1-P2X7R signaling on cell death and pro-inflammatory mediator expression induced by Clostridioides difficile toxins in enteric glia. Frontiers in Immunology 2022; 13 doi: 10.3389/fimmu.2022.956340
|
89 |
Nittaya Marungruang, Tatiana Kovalenko, Iryna Osadchenko, Ulrikke Voss, Fang Huang, Stephen Burleigh, Galyna Ushakova, Galyna Skibo, Margareta Nyman, Olena Prykhodko, Frida Fåk Hållenius. Lingonberries and their two separated fractions differently alter the gut microbiota, improve metabolic functions, reduce gut inflammatory properties, and improve brain function in ApoE−/− mice fed high-fat diet. Nutritional Neuroscience 2020; 23(8): 600 doi: 10.1080/1028415X.2018.1536423
|
90 |
Camille Pochard, Sabrina Coquenlorge, Marie Freyssinet, Philippe Naveilhan, Arnaud Bourreille, Michel Neunlist, Malvyne Rolli-Derkinderen. The multiple faces of inflammatory enteric glial cells: is Crohn’s disease a gliopathy?. American Journal of Physiology-Gastrointestinal and Liver Physiology 2018; 315(1): G1 doi: 10.1152/ajpgi.00016.2018
|
91 |
Raphaela da Cunha Franceschi, Patrícia Nardin, Clivia Valle Machado, Lucas Silva Tortorelli, Malcon Andrei Martinez-Pereira, Caroline Zanotto, Carlos-Alberto Gonçalves, Denise Maria Zancan. Enteric glial reactivity to systemic LPS administration: Changes in GFAP and S100B protein. Neuroscience Research 2017; 119: 15 doi: 10.1016/j.neures.2016.12.005
|
92 |
Marie-Luise Ederer, Madlen Günther, Lena Best, Julia Lindner, Christoph Kaleta, Otto W. Witte, Rowena Simon, Christiane Frahm. Voluntary Wheel Running in Old C57BL/6 Mice Reduces Age-Related Inflammation in the Colon but Not in the Brain. Cells 2022; 11(3): 566 doi: 10.3390/cells11030566
|
93 |
Kendra L. Puig, Adam J. Swigost, Xudong Zhou, Mary Ann Sens, Colin K. Combs. Amyloid Precursor Protein Expression Modulates Intestine Immune Phenotype. Journal of Neuroimmune Pharmacology 2012; 7(1): 215 doi: 10.1007/s11481-011-9327-y
|
94 |
Océane Reale, Antoine Huguet, Valérie Fessard. Novel Insights on the Toxicity of Phycotoxins on the Gut through the Targeting of Enteric Glial Cells. Marine Drugs 2019; 17(7): 429 doi: 10.3390/md17070429
|
95 |
Beatriz Bastos de Moraes Thomasi, Luisa Valdetaro, Maria Carolina Garcia Ricciardi, Lívia Hayashide, Ana Carolina Moraes Neves Fernandes, Amanda Mussauer, Mayara Lídia da Silva, Adriana da Cunha Faria-Melibeu, Manuel Gustavo Leitão Ribeiro, Juliana de Mattos Coelho-Aguiar, Paula Campello-Costa, Vivaldo Moura-Neto, Ana Lúcia Tavares-Gomes. Enteric glial cell reactivity in colonic layers and mucosal modulation in a mouse model of Parkinson’s disease induced by 6-hydroxydopamine. Brain Research Bulletin 2022; 187: 111 doi: 10.1016/j.brainresbull.2022.06.013
|
96 |
Aiwen Feng, Shaosheng Su, Cheng Li, Yutian Kang, Jiasheng Qiu, Jun Zhou. Berberine decreases S100B generation to regulate gut vascular barrier permeability in mice with burn injury. Pharmaceutical Biology 2024; 62(1): 53 doi: 10.1080/13880209.2023.2291679
|