Cargando…

Effects of Anterior Thalamic Nucleus Deep Brain Stimulation in Chronic Epileptic Rats

Deep brain stimulation (DBS) has been investigated for the treatment of epilepsy. In rodents, an increase in the latency for the development of seizures and status epilepticus (SE) has been reported in different animal models but the consequences of delivering stimulation to chronic epileptic animal...

Descripción completa

Detalles Bibliográficos
Autores principales: Covolan, Luciene, de Almeida, Antônio-Carlos G., Amorim, Beatriz, Cavarsan, Clarissa, Miranda, Maisa Ferreira, Aarão, Mayra C., Madureira, Ana Paula, Rodrigues, Antônio M., Nobrega, José N., Mello, Luiz E., Hamani, Clement
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4043725/
https://www.ncbi.nlm.nih.gov/pubmed/24892420
http://dx.doi.org/10.1371/journal.pone.0097618
_version_ 1782318976104136704
author Covolan, Luciene
de Almeida, Antônio-Carlos G.
Amorim, Beatriz
Cavarsan, Clarissa
Miranda, Maisa Ferreira
Aarão, Mayra C.
Madureira, Ana Paula
Rodrigues, Antônio M.
Nobrega, José N.
Mello, Luiz E.
Hamani, Clement
author_facet Covolan, Luciene
de Almeida, Antônio-Carlos G.
Amorim, Beatriz
Cavarsan, Clarissa
Miranda, Maisa Ferreira
Aarão, Mayra C.
Madureira, Ana Paula
Rodrigues, Antônio M.
Nobrega, José N.
Mello, Luiz E.
Hamani, Clement
author_sort Covolan, Luciene
collection PubMed
description Deep brain stimulation (DBS) has been investigated for the treatment of epilepsy. In rodents, an increase in the latency for the development of seizures and status epilepticus (SE) has been reported in different animal models but the consequences of delivering stimulation to chronic epileptic animals have not been extensively addressed. We study the effects of anterior thalamic nucleus (AN) stimulation at different current intensities in rats rendered epileptic following pilocarpine (Pilo) administration. Four months after Pilo-induced SE, chronic epileptic rats were bilaterally implanted with AN electrodes or had sham-surgery. Stimulation was delivered for 6 h/day, 5 days/week at 130 Hz, 90 µsec. and either 100 µA or 500 µA. The frequency of spontaneous recurrent seizures in animals receiving stimulation was compared to that recorded in the preoperative period and in rats given sham treatment. To investigate the effects of DBS on hippocampal excitability, brain slices from animals receiving AN DBS or sham surgery were studied with electrophysiology. We found that rats treated with AN DBS at 100 µA had a 52% non-significant reduction in the frequency of seizures as compared to sham-treated controls and 61% less seizures than at baseline. Animals given DBS at 500 µA had 5.1 times more seizures than controls and a 2.8 fold increase in seizure rate as compared to preoperative values. In non-stimulated controls, the average frequency of seizures before and after surgery remained unaltered. In vitro recordings have shown that slices from animals previously given DBS at 100 µA had a longer latency for the development of epileptiform activity, shorter and smaller DC shifts, and a smaller spike amplitude compared to non-stimulated controls. In contrast, a higher spike amplitude was recorded in slices from animals given AN DBS at 500 µA.
format Online
Article
Text
id pubmed-4043725
institution National Center for Biotechnology Information
language English
publishDate 2014
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-40437252014-06-09 Effects of Anterior Thalamic Nucleus Deep Brain Stimulation in Chronic Epileptic Rats Covolan, Luciene de Almeida, Antônio-Carlos G. Amorim, Beatriz Cavarsan, Clarissa Miranda, Maisa Ferreira Aarão, Mayra C. Madureira, Ana Paula Rodrigues, Antônio M. Nobrega, José N. Mello, Luiz E. Hamani, Clement PLoS One Research Article Deep brain stimulation (DBS) has been investigated for the treatment of epilepsy. In rodents, an increase in the latency for the development of seizures and status epilepticus (SE) has been reported in different animal models but the consequences of delivering stimulation to chronic epileptic animals have not been extensively addressed. We study the effects of anterior thalamic nucleus (AN) stimulation at different current intensities in rats rendered epileptic following pilocarpine (Pilo) administration. Four months after Pilo-induced SE, chronic epileptic rats were bilaterally implanted with AN electrodes or had sham-surgery. Stimulation was delivered for 6 h/day, 5 days/week at 130 Hz, 90 µsec. and either 100 µA or 500 µA. The frequency of spontaneous recurrent seizures in animals receiving stimulation was compared to that recorded in the preoperative period and in rats given sham treatment. To investigate the effects of DBS on hippocampal excitability, brain slices from animals receiving AN DBS or sham surgery were studied with electrophysiology. We found that rats treated with AN DBS at 100 µA had a 52% non-significant reduction in the frequency of seizures as compared to sham-treated controls and 61% less seizures than at baseline. Animals given DBS at 500 µA had 5.1 times more seizures than controls and a 2.8 fold increase in seizure rate as compared to preoperative values. In non-stimulated controls, the average frequency of seizures before and after surgery remained unaltered. In vitro recordings have shown that slices from animals previously given DBS at 100 µA had a longer latency for the development of epileptiform activity, shorter and smaller DC shifts, and a smaller spike amplitude compared to non-stimulated controls. In contrast, a higher spike amplitude was recorded in slices from animals given AN DBS at 500 µA. Public Library of Science 2014-06-03 /pmc/articles/PMC4043725/ /pubmed/24892420 http://dx.doi.org/10.1371/journal.pone.0097618 Text en © 2014 Covolan 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
Covolan, Luciene
de Almeida, Antônio-Carlos G.
Amorim, Beatriz
Cavarsan, Clarissa
Miranda, Maisa Ferreira
Aarão, Mayra C.
Madureira, Ana Paula
Rodrigues, Antônio M.
Nobrega, José N.
Mello, Luiz E.
Hamani, Clement
Effects of Anterior Thalamic Nucleus Deep Brain Stimulation in Chronic Epileptic Rats
title Effects of Anterior Thalamic Nucleus Deep Brain Stimulation in Chronic Epileptic Rats
title_full Effects of Anterior Thalamic Nucleus Deep Brain Stimulation in Chronic Epileptic Rats
title_fullStr Effects of Anterior Thalamic Nucleus Deep Brain Stimulation in Chronic Epileptic Rats
title_full_unstemmed Effects of Anterior Thalamic Nucleus Deep Brain Stimulation in Chronic Epileptic Rats
title_short Effects of Anterior Thalamic Nucleus Deep Brain Stimulation in Chronic Epileptic Rats
title_sort effects of anterior thalamic nucleus deep brain stimulation in chronic epileptic rats
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4043725/
https://www.ncbi.nlm.nih.gov/pubmed/24892420
http://dx.doi.org/10.1371/journal.pone.0097618
work_keys_str_mv AT covolanluciene effectsofanteriorthalamicnucleusdeepbrainstimulationinchronicepilepticrats
AT dealmeidaantoniocarlosg effectsofanteriorthalamicnucleusdeepbrainstimulationinchronicepilepticrats
AT amorimbeatriz effectsofanteriorthalamicnucleusdeepbrainstimulationinchronicepilepticrats
AT cavarsanclarissa effectsofanteriorthalamicnucleusdeepbrainstimulationinchronicepilepticrats
AT mirandamaisaferreira effectsofanteriorthalamicnucleusdeepbrainstimulationinchronicepilepticrats
AT aaraomayrac effectsofanteriorthalamicnucleusdeepbrainstimulationinchronicepilepticrats
AT madureiraanapaula effectsofanteriorthalamicnucleusdeepbrainstimulationinchronicepilepticrats
AT rodriguesantoniom effectsofanteriorthalamicnucleusdeepbrainstimulationinchronicepilepticrats
AT nobregajosen effectsofanteriorthalamicnucleusdeepbrainstimulationinchronicepilepticrats
AT melloluize effectsofanteriorthalamicnucleusdeepbrainstimulationinchronicepilepticrats
AT hamaniclement effectsofanteriorthalamicnucleusdeepbrainstimulationinchronicepilepticrats