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Enhanced Astrocyte Activity and Excitatory Synaptic Function in the Hippocampus of Pentylenetetrazole Kindling Model of Epilepsy

Epilepsy is a chronic condition characterized by recurrent spontaneous seizures. The interaction between astrocytes and neurons has been suggested to play a role in the abnormal neuronal activity observed in epilepsy. However, the exact way astrocytes influence neuronal activity in the epileptogenic...

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Autores principales: Díaz, Franco, Aguilar, Freddy, Wellmann, Mario, Martorell, Andrés, González-Arancibia, Camila, Chacana-Véliz, Lorena, Negrón-Oyarzo, Ignacio, Chávez, Andrés E., Fuenzalida, Marco, Nualart, Francisco, Sotomayor-Zárate, Ramón, Bonansco, Christian
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10572460/
https://www.ncbi.nlm.nih.gov/pubmed/37833953
http://dx.doi.org/10.3390/ijms241914506
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author Díaz, Franco
Aguilar, Freddy
Wellmann, Mario
Martorell, Andrés
González-Arancibia, Camila
Chacana-Véliz, Lorena
Negrón-Oyarzo, Ignacio
Chávez, Andrés E.
Fuenzalida, Marco
Nualart, Francisco
Sotomayor-Zárate, Ramón
Bonansco, Christian
author_facet Díaz, Franco
Aguilar, Freddy
Wellmann, Mario
Martorell, Andrés
González-Arancibia, Camila
Chacana-Véliz, Lorena
Negrón-Oyarzo, Ignacio
Chávez, Andrés E.
Fuenzalida, Marco
Nualart, Francisco
Sotomayor-Zárate, Ramón
Bonansco, Christian
author_sort Díaz, Franco
collection PubMed
description Epilepsy is a chronic condition characterized by recurrent spontaneous seizures. The interaction between astrocytes and neurons has been suggested to play a role in the abnormal neuronal activity observed in epilepsy. However, the exact way astrocytes influence neuronal activity in the epileptogenic brain remains unclear. Here, using the PTZ-induced kindling mouse model, we evaluated the interaction between astrocyte and synaptic function by measuring astrocytic Ca(2+) activity, neuronal excitability, and the excitatory/inhibitory balance in the hippocampus. Compared to control mice, hippocampal slices from PTZ-kindled mice displayed an increase in glial fibrillary acidic protein (GFAP) levels and an abnormal pattern of intracellular Ca(2+)-oscillations, characterized by an increased frequency of prolonged spontaneous transients. PTZ-kindled hippocampal slices also showed an increase in the E/I ratio towards excitation, likely resulting from an augmented release probability of excitatory inputs without affecting inhibitory synapses. Notably, the alterations in the release probability seen in PTZ-kindled slices can be recovered by reducing astrocyte hyperactivity with the reversible toxin fluorocitrate. This suggests that astroglial hyper-reactivity enhances excitatory synaptic transmission, thereby impacting the E/I balance in the hippocampus. Altogether, our findings support the notion that abnormal astrocyte–neuron interactions are pivotal mechanisms in epileptogenesis.
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spelling pubmed-105724602023-10-14 Enhanced Astrocyte Activity and Excitatory Synaptic Function in the Hippocampus of Pentylenetetrazole Kindling Model of Epilepsy Díaz, Franco Aguilar, Freddy Wellmann, Mario Martorell, Andrés González-Arancibia, Camila Chacana-Véliz, Lorena Negrón-Oyarzo, Ignacio Chávez, Andrés E. Fuenzalida, Marco Nualart, Francisco Sotomayor-Zárate, Ramón Bonansco, Christian Int J Mol Sci Article Epilepsy is a chronic condition characterized by recurrent spontaneous seizures. The interaction between astrocytes and neurons has been suggested to play a role in the abnormal neuronal activity observed in epilepsy. However, the exact way astrocytes influence neuronal activity in the epileptogenic brain remains unclear. Here, using the PTZ-induced kindling mouse model, we evaluated the interaction between astrocyte and synaptic function by measuring astrocytic Ca(2+) activity, neuronal excitability, and the excitatory/inhibitory balance in the hippocampus. Compared to control mice, hippocampal slices from PTZ-kindled mice displayed an increase in glial fibrillary acidic protein (GFAP) levels and an abnormal pattern of intracellular Ca(2+)-oscillations, characterized by an increased frequency of prolonged spontaneous transients. PTZ-kindled hippocampal slices also showed an increase in the E/I ratio towards excitation, likely resulting from an augmented release probability of excitatory inputs without affecting inhibitory synapses. Notably, the alterations in the release probability seen in PTZ-kindled slices can be recovered by reducing astrocyte hyperactivity with the reversible toxin fluorocitrate. This suggests that astroglial hyper-reactivity enhances excitatory synaptic transmission, thereby impacting the E/I balance in the hippocampus. Altogether, our findings support the notion that abnormal astrocyte–neuron interactions are pivotal mechanisms in epileptogenesis. MDPI 2023-09-25 /pmc/articles/PMC10572460/ /pubmed/37833953 http://dx.doi.org/10.3390/ijms241914506 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Díaz, Franco
Aguilar, Freddy
Wellmann, Mario
Martorell, Andrés
González-Arancibia, Camila
Chacana-Véliz, Lorena
Negrón-Oyarzo, Ignacio
Chávez, Andrés E.
Fuenzalida, Marco
Nualart, Francisco
Sotomayor-Zárate, Ramón
Bonansco, Christian
Enhanced Astrocyte Activity and Excitatory Synaptic Function in the Hippocampus of Pentylenetetrazole Kindling Model of Epilepsy
title Enhanced Astrocyte Activity and Excitatory Synaptic Function in the Hippocampus of Pentylenetetrazole Kindling Model of Epilepsy
title_full Enhanced Astrocyte Activity and Excitatory Synaptic Function in the Hippocampus of Pentylenetetrazole Kindling Model of Epilepsy
title_fullStr Enhanced Astrocyte Activity and Excitatory Synaptic Function in the Hippocampus of Pentylenetetrazole Kindling Model of Epilepsy
title_full_unstemmed Enhanced Astrocyte Activity and Excitatory Synaptic Function in the Hippocampus of Pentylenetetrazole Kindling Model of Epilepsy
title_short Enhanced Astrocyte Activity and Excitatory Synaptic Function in the Hippocampus of Pentylenetetrazole Kindling Model of Epilepsy
title_sort enhanced astrocyte activity and excitatory synaptic function in the hippocampus of pentylenetetrazole kindling model of epilepsy
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10572460/
https://www.ncbi.nlm.nih.gov/pubmed/37833953
http://dx.doi.org/10.3390/ijms241914506
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