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Alcohol Abuse Promotes Changes in Non-Synaptic Epileptiform Activity with Concomitant Expression Changes in Cotransporters and Glial Cells

Non-synaptic mechanisms are being considered the common factor of brain damage in status epilepticus and alcohol intoxication. The present work reports the influence of the chronic use of ethanol on epileptic processes sustained by non-synaptic mechanisms. Adult male Wistar rats administered with et...

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Autores principales: Santos, Luiz Eduardo Canton, da Silveira, Gilcélio Amaral, Costa, Victor Diego Cupertino, Batista, Aline Gisele, Madureira, Ana Paula, Rodrigues, Antônio Márcio, Scorza, Carla Alessandra, Amorim, Henrique Alves, Arida, Ricardo Mário, Duarte, Mario Antônio, Scorza, Fúlvio Alexandre, Cavalheiro, Esper Abrão, de Almeida, Antônio-Carlos Guimarães
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3827301/
https://www.ncbi.nlm.nih.gov/pubmed/24236060
http://dx.doi.org/10.1371/journal.pone.0078854
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author Santos, Luiz Eduardo Canton
da Silveira, Gilcélio Amaral
Costa, Victor Diego Cupertino
Batista, Aline Gisele
Madureira, Ana Paula
Rodrigues, Antônio Márcio
Scorza, Carla Alessandra
Amorim, Henrique Alves
Arida, Ricardo Mário
Duarte, Mario Antônio
Scorza, Fúlvio Alexandre
Cavalheiro, Esper Abrão
de Almeida, Antônio-Carlos Guimarães
author_facet Santos, Luiz Eduardo Canton
da Silveira, Gilcélio Amaral
Costa, Victor Diego Cupertino
Batista, Aline Gisele
Madureira, Ana Paula
Rodrigues, Antônio Márcio
Scorza, Carla Alessandra
Amorim, Henrique Alves
Arida, Ricardo Mário
Duarte, Mario Antônio
Scorza, Fúlvio Alexandre
Cavalheiro, Esper Abrão
de Almeida, Antônio-Carlos Guimarães
author_sort Santos, Luiz Eduardo Canton
collection PubMed
description Non-synaptic mechanisms are being considered the common factor of brain damage in status epilepticus and alcohol intoxication. The present work reports the influence of the chronic use of ethanol on epileptic processes sustained by non-synaptic mechanisms. Adult male Wistar rats administered with ethanol (1, 2 e 3 g/kg/d) during 28 days were compared with Control. Non-synaptic epileptiform activities (NEAs) were induced by means of the zero-calcium and high-potassium model using hippocampal slices. The observed involvement of the dentate gyrus (DG) on the neurodegeneration promoted by ethanol motivated the monitoring of the electrophysiological activity in this region. The DG regions were analyzed for the presence of NKCC1, KCC2, GFAP and CD11b immunoreactivity and cell density. The treated groups showed extracellular potential measured at the granular layer with increased DC shift and population spikes (PS), which was remarkable for the group E1. The latencies to the NEAs onset were more prominent also for the treated groups, being correlated with the neuronal loss. In line with these findings were the predispositions of the treated slices for neuronal edema after NEAs induction, suggesting that restrict inter-cell space counteracts the neuronal loss and subsists the hyper-synchronism. The significant increase of the expressions of NKCC1 and CD11b for the treated groups confirms the existence of conditions favorable to the observed edematous necrosis. The data suggest that the ethanol consumption promotes changes on the non-synaptic mechanisms modulating the NEAs. For the lower ethanol dosage the neurophysiological changes were more effective suggesting to be due to the less intense neurodegenertation.
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spelling pubmed-38273012013-11-14 Alcohol Abuse Promotes Changes in Non-Synaptic Epileptiform Activity with Concomitant Expression Changes in Cotransporters and Glial Cells Santos, Luiz Eduardo Canton da Silveira, Gilcélio Amaral Costa, Victor Diego Cupertino Batista, Aline Gisele Madureira, Ana Paula Rodrigues, Antônio Márcio Scorza, Carla Alessandra Amorim, Henrique Alves Arida, Ricardo Mário Duarte, Mario Antônio Scorza, Fúlvio Alexandre Cavalheiro, Esper Abrão de Almeida, Antônio-Carlos Guimarães PLoS One Research Article Non-synaptic mechanisms are being considered the common factor of brain damage in status epilepticus and alcohol intoxication. The present work reports the influence of the chronic use of ethanol on epileptic processes sustained by non-synaptic mechanisms. Adult male Wistar rats administered with ethanol (1, 2 e 3 g/kg/d) during 28 days were compared with Control. Non-synaptic epileptiform activities (NEAs) were induced by means of the zero-calcium and high-potassium model using hippocampal slices. The observed involvement of the dentate gyrus (DG) on the neurodegeneration promoted by ethanol motivated the monitoring of the electrophysiological activity in this region. The DG regions were analyzed for the presence of NKCC1, KCC2, GFAP and CD11b immunoreactivity and cell density. The treated groups showed extracellular potential measured at the granular layer with increased DC shift and population spikes (PS), which was remarkable for the group E1. The latencies to the NEAs onset were more prominent also for the treated groups, being correlated with the neuronal loss. In line with these findings were the predispositions of the treated slices for neuronal edema after NEAs induction, suggesting that restrict inter-cell space counteracts the neuronal loss and subsists the hyper-synchronism. The significant increase of the expressions of NKCC1 and CD11b for the treated groups confirms the existence of conditions favorable to the observed edematous necrosis. The data suggest that the ethanol consumption promotes changes on the non-synaptic mechanisms modulating the NEAs. For the lower ethanol dosage the neurophysiological changes were more effective suggesting to be due to the less intense neurodegenertation. Public Library of Science 2013-11-13 /pmc/articles/PMC3827301/ /pubmed/24236060 http://dx.doi.org/10.1371/journal.pone.0078854 Text en © 2013 Santos et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Santos, Luiz Eduardo Canton
da Silveira, Gilcélio Amaral
Costa, Victor Diego Cupertino
Batista, Aline Gisele
Madureira, Ana Paula
Rodrigues, Antônio Márcio
Scorza, Carla Alessandra
Amorim, Henrique Alves
Arida, Ricardo Mário
Duarte, Mario Antônio
Scorza, Fúlvio Alexandre
Cavalheiro, Esper Abrão
de Almeida, Antônio-Carlos Guimarães
Alcohol Abuse Promotes Changes in Non-Synaptic Epileptiform Activity with Concomitant Expression Changes in Cotransporters and Glial Cells
title Alcohol Abuse Promotes Changes in Non-Synaptic Epileptiform Activity with Concomitant Expression Changes in Cotransporters and Glial Cells
title_full Alcohol Abuse Promotes Changes in Non-Synaptic Epileptiform Activity with Concomitant Expression Changes in Cotransporters and Glial Cells
title_fullStr Alcohol Abuse Promotes Changes in Non-Synaptic Epileptiform Activity with Concomitant Expression Changes in Cotransporters and Glial Cells
title_full_unstemmed Alcohol Abuse Promotes Changes in Non-Synaptic Epileptiform Activity with Concomitant Expression Changes in Cotransporters and Glial Cells
title_short Alcohol Abuse Promotes Changes in Non-Synaptic Epileptiform Activity with Concomitant Expression Changes in Cotransporters and Glial Cells
title_sort alcohol abuse promotes changes in non-synaptic epileptiform activity with concomitant expression changes in cotransporters and glial cells
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3827301/
https://www.ncbi.nlm.nih.gov/pubmed/24236060
http://dx.doi.org/10.1371/journal.pone.0078854
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