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Modulation of pacemaker channel function in a model of thalamocortical hyperexcitability by demyelination and cytokines

A consensus is yet to be reached regarding the exact prevalence of epileptic seizures or epilepsy in multiple sclerosis (MS). In addition, the underlying pathophysiological basis of the reciprocal interaction among neuroinflammation, demyelination, and epilepsy remains unclear. Therefore, a better u...

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Autores principales: Chaudhary, Rahul, Albrecht, Stefanie, Datunashvili, Maia, Cerina, Manuela, Lüttjohann, Annika, Han, Ye, Narayanan, Venu, Chetkovich, Dane M, Ruck, Tobias, Kuhlmann, Tanja, Pape, Hans-Christian, Meuth, Sven G, Zobeiri, Mehrnoush, Budde, Thomas
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9574242/
https://www.ncbi.nlm.nih.gov/pubmed/35076711
http://dx.doi.org/10.1093/cercor/bhab491
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author Chaudhary, Rahul
Albrecht, Stefanie
Datunashvili, Maia
Cerina, Manuela
Lüttjohann, Annika
Han, Ye
Narayanan, Venu
Chetkovich, Dane M
Ruck, Tobias
Kuhlmann, Tanja
Pape, Hans-Christian
Meuth, Sven G
Zobeiri, Mehrnoush
Budde, Thomas
author_facet Chaudhary, Rahul
Albrecht, Stefanie
Datunashvili, Maia
Cerina, Manuela
Lüttjohann, Annika
Han, Ye
Narayanan, Venu
Chetkovich, Dane M
Ruck, Tobias
Kuhlmann, Tanja
Pape, Hans-Christian
Meuth, Sven G
Zobeiri, Mehrnoush
Budde, Thomas
author_sort Chaudhary, Rahul
collection PubMed
description A consensus is yet to be reached regarding the exact prevalence of epileptic seizures or epilepsy in multiple sclerosis (MS). In addition, the underlying pathophysiological basis of the reciprocal interaction among neuroinflammation, demyelination, and epilepsy remains unclear. Therefore, a better understanding of cellular and network mechanisms linking these pathologies is needed. Cuprizone-induced general demyelination in rodents is a valuable model for studying MS pathologies. Here, we studied the relationship among epileptic activity, loss of myelin, and pro-inflammatory cytokines by inducing acute, generalized demyelination in a genetic mouse model of human absence epilepsy, C3H/HeJ mice. Both cellular and network mechanisms were studied using in vivo and in vitro electrophysiological techniques. We found that acute, generalized demyelination in C3H/HeJ mice resulted in a lower number of spike–wave discharges, increased cortical theta oscillations, and reduction of slow rhythmic intrathalamic burst activity. In addition, generalized demyelination resulted in a significant reduction in the amplitude of the hyperpolarization-activated inward current (I(h)) in thalamic relay cells, which was accompanied by lower surface expression of hyperpolarization-activated, cyclic nucleotide-gated channels, and the phosphorylated form of TRIP8b (pS237-TRIP8b). We suggest that demyelination-related changes in thalamic I(h) may be one of the factors defining the prevalence of seizures in MS.
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spelling pubmed-95742422022-10-19 Modulation of pacemaker channel function in a model of thalamocortical hyperexcitability by demyelination and cytokines Chaudhary, Rahul Albrecht, Stefanie Datunashvili, Maia Cerina, Manuela Lüttjohann, Annika Han, Ye Narayanan, Venu Chetkovich, Dane M Ruck, Tobias Kuhlmann, Tanja Pape, Hans-Christian Meuth, Sven G Zobeiri, Mehrnoush Budde, Thomas Cereb Cortex Original Article A consensus is yet to be reached regarding the exact prevalence of epileptic seizures or epilepsy in multiple sclerosis (MS). In addition, the underlying pathophysiological basis of the reciprocal interaction among neuroinflammation, demyelination, and epilepsy remains unclear. Therefore, a better understanding of cellular and network mechanisms linking these pathologies is needed. Cuprizone-induced general demyelination in rodents is a valuable model for studying MS pathologies. Here, we studied the relationship among epileptic activity, loss of myelin, and pro-inflammatory cytokines by inducing acute, generalized demyelination in a genetic mouse model of human absence epilepsy, C3H/HeJ mice. Both cellular and network mechanisms were studied using in vivo and in vitro electrophysiological techniques. We found that acute, generalized demyelination in C3H/HeJ mice resulted in a lower number of spike–wave discharges, increased cortical theta oscillations, and reduction of slow rhythmic intrathalamic burst activity. In addition, generalized demyelination resulted in a significant reduction in the amplitude of the hyperpolarization-activated inward current (I(h)) in thalamic relay cells, which was accompanied by lower surface expression of hyperpolarization-activated, cyclic nucleotide-gated channels, and the phosphorylated form of TRIP8b (pS237-TRIP8b). We suggest that demyelination-related changes in thalamic I(h) may be one of the factors defining the prevalence of seizures in MS. Oxford University Press 2022-01-25 /pmc/articles/PMC9574242/ /pubmed/35076711 http://dx.doi.org/10.1093/cercor/bhab491 Text en © The Author(s) 2022. Published by Oxford University Press. All rights reserved. For permissions, please e-mail: journals.permission@oup.com. https://creativecommons.org/licenses/by-nc/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (https://creativecommons.org/licenses/by-nc/4.0/), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited. For commercial re-use, please contact journals.permissions@oup.com
spellingShingle Original Article
Chaudhary, Rahul
Albrecht, Stefanie
Datunashvili, Maia
Cerina, Manuela
Lüttjohann, Annika
Han, Ye
Narayanan, Venu
Chetkovich, Dane M
Ruck, Tobias
Kuhlmann, Tanja
Pape, Hans-Christian
Meuth, Sven G
Zobeiri, Mehrnoush
Budde, Thomas
Modulation of pacemaker channel function in a model of thalamocortical hyperexcitability by demyelination and cytokines
title Modulation of pacemaker channel function in a model of thalamocortical hyperexcitability by demyelination and cytokines
title_full Modulation of pacemaker channel function in a model of thalamocortical hyperexcitability by demyelination and cytokines
title_fullStr Modulation of pacemaker channel function in a model of thalamocortical hyperexcitability by demyelination and cytokines
title_full_unstemmed Modulation of pacemaker channel function in a model of thalamocortical hyperexcitability by demyelination and cytokines
title_short Modulation of pacemaker channel function in a model of thalamocortical hyperexcitability by demyelination and cytokines
title_sort modulation of pacemaker channel function in a model of thalamocortical hyperexcitability by demyelination and cytokines
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9574242/
https://www.ncbi.nlm.nih.gov/pubmed/35076711
http://dx.doi.org/10.1093/cercor/bhab491
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