Cargando…

Contributions of the Hippocampal CA3 Circuitry to Acute Seizures and Hyperexcitability Responses in Mouse Models of Brain Ischemia

The hippocampal circuitry is widely recognized as susceptible to ischemic injury and seizure generation. However, hippocampal contribution to acute non-convulsive seizures (NCS) in models involving middle cerebral artery occlusion (MCAO) remains to be determined. To address this, we occluded the mid...

Descripción completa

Detalles Bibliográficos
Autores principales: Song, Hongmei, Mylvaganam, Sivakami M., Wang, Justin, Mylvaganam, Saeyon M. K., Wu, Chiping, Carlen, Peter L., Eubanks, James H., Feng, Jiachun, Zhang, Liang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6123792/
https://www.ncbi.nlm.nih.gov/pubmed/30210302
http://dx.doi.org/10.3389/fncel.2018.00278
_version_ 1783352907191549952
author Song, Hongmei
Mylvaganam, Sivakami M.
Wang, Justin
Mylvaganam, Saeyon M. K.
Wu, Chiping
Carlen, Peter L.
Eubanks, James H.
Feng, Jiachun
Zhang, Liang
author_facet Song, Hongmei
Mylvaganam, Sivakami M.
Wang, Justin
Mylvaganam, Saeyon M. K.
Wu, Chiping
Carlen, Peter L.
Eubanks, James H.
Feng, Jiachun
Zhang, Liang
author_sort Song, Hongmei
collection PubMed
description The hippocampal circuitry is widely recognized as susceptible to ischemic injury and seizure generation. However, hippocampal contribution to acute non-convulsive seizures (NCS) in models involving middle cerebral artery occlusion (MCAO) remains to be determined. To address this, we occluded the middle cerebral artery in adult C57 black mice and monitored electroencephalographic (EEG) discharges from hippocampal and neocortical areas. Electrographic discharges in the absence of convulsive motor behaviors were observed within 90 min following occlusion of the middle cerebral artery. Hippocampal discharges were more robust than corresponding cortical discharges in all seizure events examined, and hippocampal discharges alone or with minimal cortical involvement were also observed in some seizure events. Seizure development was associated with ipsilateral hippocampal injuries as determined by subsequent histological examinations. We also introduced hypoxia-hypoglycemia episodes in mouse brain slices and examined regional hyperexcitable responses ex vivo. Extracellular recordings showed that the hippocampal CA3 region had a greater propensity for exhibiting single/multiunit activities or epileptiform field potentials following hypoxic-hypoglycemic (HH) episodes compared to the CA1, dentate gyrus, entorhinal cortical (EC) or neocortical regions. Whole-cell recordings revealed that CA3 pyramidal neurons exhibited excessive excitatory postsynaptic currents, attenuated inhibitory postsynaptic currents and intermittent or repetitive spikes in response to HH challenge. Together, these observations suggest that hippocampal discharges, possibly as a result of CA3 circuitry hyperexcitability, are a major component of acute NCS in a mouse model of MCAO.
format Online
Article
Text
id pubmed-6123792
institution National Center for Biotechnology Information
language English
publishDate 2018
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-61237922018-09-12 Contributions of the Hippocampal CA3 Circuitry to Acute Seizures and Hyperexcitability Responses in Mouse Models of Brain Ischemia Song, Hongmei Mylvaganam, Sivakami M. Wang, Justin Mylvaganam, Saeyon M. K. Wu, Chiping Carlen, Peter L. Eubanks, James H. Feng, Jiachun Zhang, Liang Front Cell Neurosci Neuroscience The hippocampal circuitry is widely recognized as susceptible to ischemic injury and seizure generation. However, hippocampal contribution to acute non-convulsive seizures (NCS) in models involving middle cerebral artery occlusion (MCAO) remains to be determined. To address this, we occluded the middle cerebral artery in adult C57 black mice and monitored electroencephalographic (EEG) discharges from hippocampal and neocortical areas. Electrographic discharges in the absence of convulsive motor behaviors were observed within 90 min following occlusion of the middle cerebral artery. Hippocampal discharges were more robust than corresponding cortical discharges in all seizure events examined, and hippocampal discharges alone or with minimal cortical involvement were also observed in some seizure events. Seizure development was associated with ipsilateral hippocampal injuries as determined by subsequent histological examinations. We also introduced hypoxia-hypoglycemia episodes in mouse brain slices and examined regional hyperexcitable responses ex vivo. Extracellular recordings showed that the hippocampal CA3 region had a greater propensity for exhibiting single/multiunit activities or epileptiform field potentials following hypoxic-hypoglycemic (HH) episodes compared to the CA1, dentate gyrus, entorhinal cortical (EC) or neocortical regions. Whole-cell recordings revealed that CA3 pyramidal neurons exhibited excessive excitatory postsynaptic currents, attenuated inhibitory postsynaptic currents and intermittent or repetitive spikes in response to HH challenge. Together, these observations suggest that hippocampal discharges, possibly as a result of CA3 circuitry hyperexcitability, are a major component of acute NCS in a mouse model of MCAO. Frontiers Media S.A. 2018-08-29 /pmc/articles/PMC6123792/ /pubmed/30210302 http://dx.doi.org/10.3389/fncel.2018.00278 Text en Copyright © 2018 Song, Mylvaganam, Wang, Mylvaganam, Wu, Carlen, Eubanks, Feng and Zhang. 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) and the copyright owner(s) 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
Song, Hongmei
Mylvaganam, Sivakami M.
Wang, Justin
Mylvaganam, Saeyon M. K.
Wu, Chiping
Carlen, Peter L.
Eubanks, James H.
Feng, Jiachun
Zhang, Liang
Contributions of the Hippocampal CA3 Circuitry to Acute Seizures and Hyperexcitability Responses in Mouse Models of Brain Ischemia
title Contributions of the Hippocampal CA3 Circuitry to Acute Seizures and Hyperexcitability Responses in Mouse Models of Brain Ischemia
title_full Contributions of the Hippocampal CA3 Circuitry to Acute Seizures and Hyperexcitability Responses in Mouse Models of Brain Ischemia
title_fullStr Contributions of the Hippocampal CA3 Circuitry to Acute Seizures and Hyperexcitability Responses in Mouse Models of Brain Ischemia
title_full_unstemmed Contributions of the Hippocampal CA3 Circuitry to Acute Seizures and Hyperexcitability Responses in Mouse Models of Brain Ischemia
title_short Contributions of the Hippocampal CA3 Circuitry to Acute Seizures and Hyperexcitability Responses in Mouse Models of Brain Ischemia
title_sort contributions of the hippocampal ca3 circuitry to acute seizures and hyperexcitability responses in mouse models of brain ischemia
topic Neuroscience
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6123792/
https://www.ncbi.nlm.nih.gov/pubmed/30210302
http://dx.doi.org/10.3389/fncel.2018.00278
work_keys_str_mv AT songhongmei contributionsofthehippocampalca3circuitrytoacuteseizuresandhyperexcitabilityresponsesinmousemodelsofbrainischemia
AT mylvaganamsivakamim contributionsofthehippocampalca3circuitrytoacuteseizuresandhyperexcitabilityresponsesinmousemodelsofbrainischemia
AT wangjustin contributionsofthehippocampalca3circuitrytoacuteseizuresandhyperexcitabilityresponsesinmousemodelsofbrainischemia
AT mylvaganamsaeyonmk contributionsofthehippocampalca3circuitrytoacuteseizuresandhyperexcitabilityresponsesinmousemodelsofbrainischemia
AT wuchiping contributionsofthehippocampalca3circuitrytoacuteseizuresandhyperexcitabilityresponsesinmousemodelsofbrainischemia
AT carlenpeterl contributionsofthehippocampalca3circuitrytoacuteseizuresandhyperexcitabilityresponsesinmousemodelsofbrainischemia
AT eubanksjamesh contributionsofthehippocampalca3circuitrytoacuteseizuresandhyperexcitabilityresponsesinmousemodelsofbrainischemia
AT fengjiachun contributionsofthehippocampalca3circuitrytoacuteseizuresandhyperexcitabilityresponsesinmousemodelsofbrainischemia
AT zhangliang contributionsofthehippocampalca3circuitrytoacuteseizuresandhyperexcitabilityresponsesinmousemodelsofbrainischemia