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For: Bagyánszki M, Bódi N. Diabetes-related alterations in the enteric nervous system and its microenvironment. World J Diabetes 2012; 3(5): 80-93 [PMID: 22645637 DOI: 10.4239/wjd.v3.i5.80]
URL: https://www.wjgnet.com/1007-9327/full/v3/i5/80.htm
Number Citing Articles
1
Charles H. Knowles, Greger Lindberg, Emanuele Panza, Roberto De Giorgio. New perspectives in the diagnosis and management of enteric neuropathiesNature Reviews Gastroenterology & Hepatology 2013; 10(4): 206 doi: 10.1038/nrgastro.2013.18
2
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 intestineAutonomic Neuroscience 2013; 177(2): 199 doi: 10.1016/j.autneu.2013.04.014
3
Juliana Vanessa Colombo MARTINS-PERLES, Isabela ZIGNANI, Sara Raquel Garcia de SOUZA, Flávia Cristina Vieira FREZ, Gleison Daion Piovezana BOSSOLANI, Jacqueline Nelisis ZANONI. QUERCETIN SUPPLEMENTATION PREVENTS CHANGES IN THE SEROTONIN AND CASPASE-3 IMMUNOREACTIVE CELLS OF THE JEJUNUM OF DIABETIC RATSArquivos de Gastroenterologia 2019; 56(4): 405 doi: 10.1590/s0004-2803.201900000-81
4
Nikolett Bódi, Mária Bagyánszki. Diabetes2020; : 25 doi: 10.1016/B978-0-12-815776-3.00003-6
5
Alan J. Burns, Allan M. Goldstein, Donald F. Newgreen, Lincon Stamp, Karl-Herbert Schäfer, Marco Metzger, Ryo Hotta, Heather M. Young, Peter W. Andrews, Nikhil Thapar, Jaime Belkind-Gerson, Nadege Bondurand, Joel C. Bornstein, Wood Yee Chan, Kathryn Cheah, Michael D. Gershon, Robert O. Heuckeroth, Robert M.W. Hofstra, Lothar Just, Raj P. Kapur, Sebastian K. King, Conor J. McCann, Nandor Nagy, Elly Ngan, Florian Obermayr, Vassilis Pachnis, Pankaj J. Pasricha, Mai Har Sham, Paul Tam, Pieter Vanden Berghe. White paper on guidelines concerning enteric nervous system stem cell therapy for enteric neuropathiesDevelopmental Biology 2016; 417(2): 229 doi: 10.1016/j.ydbio.2016.04.001
6
Nikolett Bódi, Diána Mezei, Payal Chakraborty, Zita Szalai, Bence Pál Barta, János Balázs, Zsolt Rázga, Edit Hermesz, Mária Bagyánszki. Diabetes-related intestinal region-specific thickening of ganglionic basement membrane and regionally decreased matrix metalloproteinase 9 expression in myenteric gangliaWorld Journal of Diabetes 2021; 12(5): 658-672 doi: 10.4239/wjd.v12.i5.658
7
Nikolett Bódi, Zita Szalai, Lalitha Chandrakumar, Mária Bagyánszki. Region-dependent effects of diabetes and insulin-replacement on neuronal nitric oxide synthase- and heme oxygenase-immunoreactive submucous neuronsWorld Journal of Gastroenterology 2017; 23(41): 7359-7368 doi: 10.3748/wjg.v23.i41.7359
8
Nikolett Bódi, Zita Szalai, Mária Bagyánszki. Nitrergic Enteric Neurons in Health and Disease—Focus on Animal ModelsInternational Journal of Molecular Sciences 2019; 20(8): 2003 doi: 10.3390/ijms20082003
9
Arabinda Mandal, Chioma Moneme, Bhanu P. Tewari, Allan M. Goldstein, Harald Sontheimer, Lily Cheng, Sean R. Moore, Daniel Levin. A novel method for culturing enteric neurons generates neurospheres containing functional myenteric neuronal subtypesJournal of Neuroscience Methods 2024; : 110144 doi: 10.1016/j.jneumeth.2024.110144
10
Sanjeev Kelkar. Diabetic Neuropathy and Clinical Practice2020; : 65 doi: 10.1007/978-981-15-2417-2_5
11
Diána Mezei, Nikolett Bódi, Zita Szalai, Zsuzsanna Márton, János Balázs, Mária Bagyánszki. Immediate Insulin Treatment Prevents Diabetes-Induced Gut Region-Specific Increase in the Number of Myenteric Serotonergic NeuronsApplied Sciences 2021; 11(13): 5949 doi: 10.3390/app11135949
12
Yvonne Nyavor, Catherine R. Brands, Jessica Nicholson, Sydney Kuther, Kortni K. Cox, George May, Christopher Miller, Allysha Yasuda, Forrest Potter, Joshua Cady, Heino M. Heyman, Thomas O. Metz, Timo D. Stark, Thomas Hofmann, Onesmo B. Balemba. Supernatants of intestinal luminal contents from mice fed high‐fat diet impair intestinal motility by injuring enteric neurons and smooth muscle cellsNeurogastroenterology & Motility 2021; 33(1) doi: 10.1111/nmo.13990
13
Aleksandra Veličkov, Goran Radenković, Vladimir Petrović, Asen Veličkov. DIABETIC ALTERATIONS OF INTERSTITIAL CELLS OF CAJALActa Medica Medianae 2017; 56(4): 100 doi: 10.5633/amm.2017.0416
14
Xiaojing Quan, Jie Zhang, Yanli Liu, Ceng Sun, Hesheng Luo, Jinhai Wang. Role of Hydrogen Sulfide in the Development of Colonic Hypomotility in a Diabetic Mouse Model Induced by StreptozocinJournal of Pharmacology and Experimental Therapeutics 2023; 384(2): 287 doi: 10.1124/jpet.122.001392
15
Mária Bagyánszki, Nikolett Bódi. Key elements determining the intestinal region-specific environment of enteric neurons in type 1 diabetesWorld Journal of Gastroenterology 2023; 29(18): 2704-2716 doi: 10.3748/wjg.v29.i18.2704
16
George Wahba, Anne-Emilie Hebert, David Grynspan, William Staines, Sarah Schock. A rapid and efficient method for dissociated cultures of mouse myenteric neuronsJournal of Neuroscience Methods 2016; 261: 110 doi: 10.1016/j.jneumeth.2015.11.024
17
F. Giancola, F. Fracassi, A. Gallucci, J. Sadeghinezhad, G. Polidoro, E. Zini, M. Asti, R. Chiocchetti. Quantification of nitrergic neurons in the myenteric plexus of gastric antrum and ileum of healthy and diabetic dogsAutonomic Neuroscience 2016; 197: 25 doi: 10.1016/j.autneu.2016.04.004
18
Ainsley M. Robinson, Samy Sakkal, Anthony Park, Valentina Jovanovska, Natalie Payne, Simona E. Carbone, Sarah Miller, Joel C. Bornstein, Claude Bernard, Richard Boyd, Kulmira Nurgali. Mesenchymal stem cells and conditioned medium avert enteric neuropathy and colon dysfunction in guinea pig TNBS-induced colitisAmerican Journal of Physiology-Gastrointestinal and Liver Physiology 2014; 307(11): G1115 doi: 10.1152/ajpgi.00174.2014
19
Wei Yang, Nian Wang, Xue Shi, Jie Chen. Synchronized Dual Pulse Gastric Electrical Stimulation Induces Activation of Enteric Glial Cells in Rats with Diabetic GastroparesisGastroenterology Research and Practice 2014; 2014: 1 doi: 10.1155/2014/964071
20
Roustem N. Miftahof. Biomechanics of the Human Stomach2017; : 229 doi: 10.1007/978-3-319-59677-8_13
21
Maria Francesca Viola, Guy Boeckxstaens. Niche-specific functional heterogeneity of intestinal resident macrophagesGut 2021; 70(7): 1383 doi: 10.1136/gutjnl-2020-323121
22
Theresa Meldgaard, Søren Schou Olesen, Adam D. Farmer, Klaus Krogh, Anne Astrid Wendel, Birgitte Brock, Asbjørn Mohr Drewes, Christina Brock. Diabetic Enteropathy: From Molecule to Mechanism-Based TreatmentJournal of Diabetes Research 2018; 2018: 1 doi: 10.1155/2018/3827301
23
Nikolett Bódi, Abigél Egyed-Kolumbán, Benita Onhausz, Bence Pál Barta, Afnan AL Doghmi, János Balázs, Zita Szalai, Mária Bagyánszki. Intestinal Region-Dependent Alterations of Toll-Like Receptor 4 Expression in Myenteric Neurons of Type 1 Diabetic RatsBiomedicines 2023; 11(1): 129 doi: 10.3390/biomedicines11010129
24
Theresa Meldgaard, Jutta Keller, Anne Estrup Olesen, Søren Schou Olesen, Klaus Krogh, Mette Borre, Adam Farmer, Birgitte Brock, Christina Brock, Asbjørn Mohr Drewes. Pathophysiology and management of diabetic gastroenteropathyTherapeutic Advances in Gastroenterology 2019; 12: 175628481985204 doi: 10.1177/1756284819852047
25
Lauren Sahakian, Rhiannon T Filippone, Rhian Stavely, Ainsley M Robinson, Xu Sean Yan, Raquel Abalo, Rajaraman Eri, Joel C Bornstein, Mark R Kelley, Kulmira Nurgali. Inhibition of APE1/Ref-1 Redox Signaling Alleviates Intestinal Dysfunction and Damage to Myenteric Neurons in a Mouse Model of Spontaneous Chronic ColitisInflammatory Bowel Diseases 2021; 27(3): 388 doi: 10.1093/ibd/izaa161
26
Chethan Sampath, Abhinav V. Raju, Michael L. Freeman, Shanthi Srinivasan, Pandu R. Gangula. Nrf2 attenuates hyperglycemia-induced nNOS impairment in adult mouse primary enteric neuronal crest cells and normalizes stomach functionAmerican Journal of Physiology-Gastrointestinal and Liver Physiology 2022; 322(3): G368 doi: 10.1152/ajpgi.00323.2021
27
Lalitha Chandrakumar, Mária Bagyánszki, Zita Szalai, Diána Mezei, Nikolett Bódi. Diabetes-Related Induction of the Heme Oxygenase System and Enhanced Colocalization of Heme Oxygenase 1 and 2 with Neuronal Nitric Oxide Synthase in Myenteric Neurons of Different Intestinal SegmentsOxidative Medicine and Cellular Longevity 2017; 2017: 1 doi: 10.1155/2017/1890512
28
Marina Avetisyan, Ellen Merrick Schill, Robert O. Heuckeroth. Building a second brain in the bowelJournal of Clinical Investigation 2015; 125(3): 899 doi: 10.1172/JCI76307
29
Viktor József Horváth, Zsuzsanna Putz, Ferenc Izbéki, Anna Erzsébet Körei, László Gerő, Csaba Lengyel, Péter Kempler, Tamás Várkonyi. Diabetes-Related Dysfunction of the Small Intestine and the Colon: Focus on MotilityCurrent Diabetes Reports 2015; 15(11) doi: 10.1007/s11892-015-0672-8
30
Michał Bulc, Katarzyna Palus, Łukasz Zielonka, Magdalena Gajęcka, Jarosław Całka. Changes in expression of inhibitory substances in the intramural neurons of the stomach following streptozotocin- induced diabetes in the pigWorld Journal of Gastroenterology 2017; 23(33): 6088-6099 doi: 10.3748/wjg.v23.i33.6088
31
Roustem N. Miftahof. Biomechanics of the Human Stomach2017; : 245 doi: 10.1007/978-3-319-59677-8_14
32
Xiaowei Zhu, Yanyu Li, Xuping Zhu, Ke Wang, Xue Zhu, Yanmin Jiang, Lan Xu, Jianbo Li. Circular RNA-VPS13A attenuates diabetes-induced enteric glia damage by targeting miR-182/GDNF axisActa Biochimica et Biophysica Sinica 2022; 54(7): 999 doi: 10.3724/abbs.2022073
33
Chloe M. Stenkamp-Strahm, Yvonne E. A. Nyavor, Adam J. Kappmeyer, Sarah Horton, Martin Gericke, Onesmo B. Balemba. Prolonged high fat diet ingestion, obesity, and type 2 diabetes symptoms correlate with phenotypic plasticity in myenteric neurons and nerve damage in the mouse duodenumCell and Tissue Research 2015; 361(2): 411 doi: 10.1007/s00441-015-2132-9
34
S. S. Yarandi, S. Srinivasan. Diabetic gastrointestinal motility disorders and the role of enteric nervous system: Current status and future directionsNeurogastroenterology & Motility 2014; 26(5): 611 doi: 10.1111/nmo.12330
35
Yogesh Bhattarai, David Fried, Brian Gulbransen, Mark Kadrofske, Roxanne Fernandes, Hui Xu, James Galligan. High-fat diet-induced obesity alters nitric oxide-mediated neuromuscular transmission and smooth muscle excitability in the mouse distal colonAmerican Journal of Physiology-Gastrointestinal and Liver Physiology 2016; 311(2): G210 doi: 10.1152/ajpgi.00085.2016
36
Hamid R. Fateh, Seyed Pezhman Madani, Ramin Heshmat, Bagher Larijani. Correlation of Michigan neuropathy screening instrument, United Kingdom screening test and electrodiagnosis for early detection of diabetic peripheral neuropathyJournal of Diabetes & Metabolic Disorders 2015; 15(1) doi: 10.1186/s40200-016-0229-7
37
J. Keller. Autonome Neuropathie und mehrDer Diabetologe 2013; 9(7): 517 doi: 10.1007/s11428-013-1064-9
38
Srikar Uppaluri, Manisha Ashok Jain, Hira Ali, Jay Shingala, Dhruti Amin, Trisha Ajwani, Irum Fatima, Neil Patel, Nirja Kaka, Yashendra Sethi, Nitin Kapoor. Pathogenesis and management of diabetic gastroparesis: An updated clinically oriented reviewDiabetes & Metabolic Syndrome: Clinical Research & Reviews 2024; 18(3): 102994 doi: 10.1016/j.dsx.2024.102994
39
Lauren Sahakian, Ainsley M. Robinson, Linda Sahakian, Rhian Stavely, Mark R. Kelley, Kulmira Nurgali. APE1/Ref-1 as a Therapeutic Target for Inflammatory Bowel DiseaseBiomolecules 2023; 13(11): 1569 doi: 10.3390/biom13111569
40
P. -Y. Gougeon, Sandra Lourenssen, Tian Y. Han, Dileep G. Nair, Mark J. Ropeleski, Michael G. Blennerhassett. The Pro-Inflammatory Cytokines IL-1β and TNFα Are Neurotrophic for Enteric NeuronsThe Journal of Neuroscience 2013; 33(8): 3339 doi: 10.1523/JNEUROSCI.3564-12.2013
41
Steven Fried, Eve Wemelle, Patrice D. Cani, Claude Knauf. Interactions between the microbiota and enteric nervous system during gut-brain disordersNeuropharmacology 2021; 197: 108721 doi: 10.1016/j.neuropharm.2021.108721