Literature DB >> 27189853

Microglia-Neuron Communication in Epilepsy.

Ukpong B Eyo1, Madhuvika Murugan1, Long-Jun Wu1.   

Abstract

Epilepsy has remained a significant social concern and financial burden globally. Current therapeutic strategies are based primarily on neurocentric mechanisms that have not proven successful in at least a third of patients, raising the need for novel alternative and complementary approaches. Recent evidence implicates glial cells and neuroinflammation in the pathogenesis of epilepsy with the promise of targeting these cells to complement existing strategies. Specifically, microglial involvement, as a major inflammatory cell in the epileptic brain, has been poorly studied. In this review, we highlight microglial reaction to experimental seizures, discuss microglial control of neuronal activities, and propose the functions of microglia during acute epileptic phenotypes, delayed neurodegeneration, and aberrant neurogenesis. Future research that would help fill in the current gaps in our knowledge includes epilepsy-induced alterations in basic microglial functions, neuro-microglial interactions during chronic epilepsy, and microglial contribution to developmental seizures. Studying the role of microglia in epilepsy could inform therapies to better alleviate the disease. GLIA 2016;65:5-18.
© 2016 Wiley Periodicals, Inc.

Entities:  

Keywords:  epilepsy; kainic acid; microglia; pilocarpine; seizures

Mesh:

Year:  2016        PMID: 27189853      PMCID: PMC5116010          DOI: 10.1002/glia.23006

Source DB:  PubMed          Journal:  Glia        ISSN: 0894-1491            Impact factor:   7.452


  164 in total

1.  Potentiation of NMDA receptor-mediated synaptic responses by microglia.

Authors:  Shigeki Moriguchi; Yoshito Mizoguchi; Yoshiro Tomimatsu; Yoshinori Hayashi; Tomoko Kadowaki; Yoshifumi Kagamiishi; Nobuo Katsube; Kenji Yamamoto; Kazuhide Inoue; Shigenori Watanabe; Junichi Nabekura; Hiroshi Nakanishi
Journal:  Brain Res Mol Brain Res       Date:  2003-11-26

2.  Increased neocortical expression of the P2X7 receptor after status epilepticus and anticonvulsant effect of P2X7 receptor antagonist A-438079.

Authors:  Alba Jimenez-Pacheco; Guillaume Mesuret; Amaya Sanz-Rodriguez; Katsuhiro Tanaka; Claire Mooney; Ronan Conroy; Maria Teresa Miras-Portugal; Miguel Diaz-Hernandez; David C Henshall; Tobias Engel
Journal:  Epilepsia       Date:  2013-06-28       Impact factor: 5.864

3.  Inhibition of kainic acid induced expression of interleukin-1 beta and interleukin-1 receptor antagonist mRNA in the rat brain by NMDA receptor antagonists.

Authors:  C Eriksson; L P Zou; S Ahlenius; B Winblad; M Schultzberg
Journal:  Brain Res Mol Brain Res       Date:  2000-12-28

4.  NO mediates microglial response to acute spinal cord injury under ATP control in vivo.

Authors:  Payam Dibaj; Fabien Nadrigny; Heinz Steffens; Anja Scheller; Johannes Hirrlinger; Eike D Schomburg; Clemens Neusch; Frank Kirchhoff
Journal:  Glia       Date:  2010-07       Impact factor: 7.452

Review 5.  Neuroprotection by tetracyclines.

Authors:  María Domercq; Carlos Matute
Journal:  Trends Pharmacol Sci       Date:  2004-12       Impact factor: 14.819

6.  Epileptogenic roles of astroglial death and regeneration in the dentate gyrus of experimental temporal lobe epilepsy.

Authors:  Tae-Cheon Kang; Duk-Soo Kim; Sung-Eun Kwak; Ji-Eun Kim; Moo Ho Won; Dae-Won Kim; Soo-Young Choi; Oh-Shin Kwon
Journal:  Glia       Date:  2006-09       Impact factor: 7.452

7.  Status epilepticus induces a particular microglial activation state characterized by enhanced purinergic signaling.

Authors:  Elena Avignone; Lauriane Ulmann; Françoise Levavasseur; François Rassendren; Etienne Audinat
Journal:  J Neurosci       Date:  2008-09-10       Impact factor: 6.167

8.  Rapid astrocyte and microglial activation following pilocarpine-induced seizures in rats.

Authors:  Lee A Shapiro; Lulu Wang; Charles E Ribak
Journal:  Epilepsia       Date:  2008       Impact factor: 5.864

9.  Interleukin-1beta immunoreactivity and microglia are enhanced in the rat hippocampus by focal kainate application: functional evidence for enhancement of electrographic seizures.

Authors:  A Vezzani; M Conti; A De Luigi; T Ravizza; D Moneta; F Marchesi; M G De Simoni
Journal:  J Neurosci       Date:  1999-06-15       Impact factor: 6.167

10.  Microglial P2Y12 is necessary for synaptic plasticity in mouse visual cortex.

Authors:  G O Sipe; R L Lowery; M-È Tremblay; E A Kelly; C E Lamantia; A K Majewska
Journal:  Nat Commun       Date:  2016-03-07       Impact factor: 14.919

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  81 in total

Review 1.  Microglial interactions with the neurovascular system in physiology and pathology.

Authors:  Xiaoliang Zhao; Ukpong B Eyo; Madhuvika Murugan; Long-Jun Wu
Journal:  Dev Neurobiol       Date:  2018-02-01       Impact factor: 3.964

2.  Notch Signaling Regulates Microglial Activation and Inflammatory Reactions in a Rat Model of Temporal Lobe Epilepsy.

Authors:  Lei Wu; Yushuang Li; Minhua Yu; Fei Yang; Mengqi Tu; Haibo Xu
Journal:  Neurochem Res       Date:  2018-05-08       Impact factor: 3.996

3.  Chemokine CCL2-CCR2 Signaling Induces Neuronal Cell Death via STAT3 Activation and IL-1β Production after Status Epilepticus.

Authors:  Dai-Shi Tian; Jiyun Peng; Madhuvika Murugan; Li-Jie Feng; Jun-Li Liu; Ukpong B Eyo; Li-Jun Zhou; Rochelle Mogilevsky; Wei Wang; Long-Jun Wu
Journal:  J Neurosci       Date:  2017-07-17       Impact factor: 6.167

Review 4.  Neuroimmune interaction in seizures and epilepsy: focusing on monocyte infiltration.

Authors:  Dale B Bosco; Dai-Shi Tian; Long-Jun Wu
Journal:  FEBS J       Date:  2020-06-15       Impact factor: 5.542

5.  Chronic demyelination-induced seizures.

Authors:  Andrew S Lapato; Jenny I Szu; Jonathan P C Hasselmann; Anna J Khalaj; Devin K Binder; Seema K Tiwari-Woodruff
Journal:  Neuroscience       Date:  2017-01-30       Impact factor: 3.590

6.  Microglial proliferation and monocyte infiltration contribute to microgliosis following status epilepticus.

Authors:  Lijie Feng; Madhuvika Murugan; Dale B Bosco; Yong Liu; Jiyun Peng; Gregory A Worrell; Hai-Long Wang; Lauren E Ta; Jason R Richardson; Yuxian Shen; Long-Jun Wu
Journal:  Glia       Date:  2019-04-05       Impact factor: 7.452

7.  Engulfed by Glia: Glial Pruning in Development, Function, and Injury across Species.

Authors:  Stephan Raiders; Taeho Han; Nicole Scott-Hewitt; Sarah Kucenas; Deborah Lew; Mary A Logan; Aakanksha Singhvi
Journal:  J Neurosci       Date:  2021-01-19       Impact factor: 6.167

8.  Microglial depletion aggravates the severity of acute and chronic seizures in mice.

Authors:  Wenning Wu; Yujiao Li; Yujia Wei; Dale B Bosco; Manling Xie; Ming-Gao Zhao; Jason R Richardson; Long-Jun Wu
Journal:  Brain Behav Immun       Date:  2020-07-02       Impact factor: 7.217

Review 9.  Errant gardeners: glial-cell-dependent synaptic pruning and neurodevelopmental disorders.

Authors:  Urte Neniskyte; Cornelius T Gross
Journal:  Nat Rev Neurosci       Date:  2017-09-21       Impact factor: 34.870

10.  mTOR Hyperactivity Levels Influence the Severity of Epilepsy and Associated Neuropathology in an Experimental Model of Tuberous Sclerosis Complex and Focal Cortical Dysplasia.

Authors:  Lena H Nguyen; Travorn Mahadeo; Angélique Bordey
Journal:  J Neurosci       Date:  2019-01-30       Impact factor: 6.167

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