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Alpha-pinene and dizocilpine (MK-801) attenuate kindling development and astrocytosis in an experimental mouse model of epilepsy

Understanding the molecular and cellular mechanisms involved during the onset of epilepsy is crucial for elucidating the overall mechanism of epileptogenesis and therapeutic strategies. Previous studies, using a pentylenetetrazole (PTZ)-induced kindling mouse model, showed that astrocyte activation...

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Autores principales: Ueno, Hiroshi, Shimada, Atsumi, Suemitsu, Shunsuke, Murakami, Shinji, Kitamura, Naoya, Wani, Kenta, Takahashi, Yu, Matsumoto, Yosuke, Okamoto, Motoi, Ishihara, Takeshi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7390835/
https://www.ncbi.nlm.nih.gov/pubmed/32760846
http://dx.doi.org/10.1016/j.ibror.2020.07.007
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author Ueno, Hiroshi
Shimada, Atsumi
Suemitsu, Shunsuke
Murakami, Shinji
Kitamura, Naoya
Wani, Kenta
Takahashi, Yu
Matsumoto, Yosuke
Okamoto, Motoi
Ishihara, Takeshi
author_facet Ueno, Hiroshi
Shimada, Atsumi
Suemitsu, Shunsuke
Murakami, Shinji
Kitamura, Naoya
Wani, Kenta
Takahashi, Yu
Matsumoto, Yosuke
Okamoto, Motoi
Ishihara, Takeshi
author_sort Ueno, Hiroshi
collection PubMed
description Understanding the molecular and cellular mechanisms involved during the onset of epilepsy is crucial for elucidating the overall mechanism of epileptogenesis and therapeutic strategies. Previous studies, using a pentylenetetrazole (PTZ)-induced kindling mouse model, showed that astrocyte activation and an increase in perineuronal nets (PNNs) and extracellular matrix (ECM) molecules occurred within the hippocampus. However, the mechanisms of initiation and suppression of these changes, remain unclear. Herein, we analyzed the attenuation of astrocyte activation caused by dizocilpine (MK-801) administration, as well as the anticonvulsant effect of α-pinene on seizures and production of ECM molecules. Our results showed that MK-801 significantly reduced kindling acquisition, while α-pinene treatment prevented an increase in seizures incidences. Both MK-801 and α-pinene administration attenuated astrocyte activation by PTZ and significantly attenuated the increase in ECM molecules. Our results indicate that astrocyte activation and an increase in ECM may contribute to epileptogenesis and suggest that MK-801 and α-pinene may prevent epileptic seizures by suppressing astrocyte activation and ECM molecule production.
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spelling pubmed-73908352020-08-04 Alpha-pinene and dizocilpine (MK-801) attenuate kindling development and astrocytosis in an experimental mouse model of epilepsy Ueno, Hiroshi Shimada, Atsumi Suemitsu, Shunsuke Murakami, Shinji Kitamura, Naoya Wani, Kenta Takahashi, Yu Matsumoto, Yosuke Okamoto, Motoi Ishihara, Takeshi IBRO Rep Article Understanding the molecular and cellular mechanisms involved during the onset of epilepsy is crucial for elucidating the overall mechanism of epileptogenesis and therapeutic strategies. Previous studies, using a pentylenetetrazole (PTZ)-induced kindling mouse model, showed that astrocyte activation and an increase in perineuronal nets (PNNs) and extracellular matrix (ECM) molecules occurred within the hippocampus. However, the mechanisms of initiation and suppression of these changes, remain unclear. Herein, we analyzed the attenuation of astrocyte activation caused by dizocilpine (MK-801) administration, as well as the anticonvulsant effect of α-pinene on seizures and production of ECM molecules. Our results showed that MK-801 significantly reduced kindling acquisition, while α-pinene treatment prevented an increase in seizures incidences. Both MK-801 and α-pinene administration attenuated astrocyte activation by PTZ and significantly attenuated the increase in ECM molecules. Our results indicate that astrocyte activation and an increase in ECM may contribute to epileptogenesis and suggest that MK-801 and α-pinene may prevent epileptic seizures by suppressing astrocyte activation and ECM molecule production. Elsevier 2020-07-17 /pmc/articles/PMC7390835/ /pubmed/32760846 http://dx.doi.org/10.1016/j.ibror.2020.07.007 Text en © 2020 The Author(s) http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Ueno, Hiroshi
Shimada, Atsumi
Suemitsu, Shunsuke
Murakami, Shinji
Kitamura, Naoya
Wani, Kenta
Takahashi, Yu
Matsumoto, Yosuke
Okamoto, Motoi
Ishihara, Takeshi
Alpha-pinene and dizocilpine (MK-801) attenuate kindling development and astrocytosis in an experimental mouse model of epilepsy
title Alpha-pinene and dizocilpine (MK-801) attenuate kindling development and astrocytosis in an experimental mouse model of epilepsy
title_full Alpha-pinene and dizocilpine (MK-801) attenuate kindling development and astrocytosis in an experimental mouse model of epilepsy
title_fullStr Alpha-pinene and dizocilpine (MK-801) attenuate kindling development and astrocytosis in an experimental mouse model of epilepsy
title_full_unstemmed Alpha-pinene and dizocilpine (MK-801) attenuate kindling development and astrocytosis in an experimental mouse model of epilepsy
title_short Alpha-pinene and dizocilpine (MK-801) attenuate kindling development and astrocytosis in an experimental mouse model of epilepsy
title_sort alpha-pinene and dizocilpine (mk-801) attenuate kindling development and astrocytosis in an experimental mouse model of epilepsy
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7390835/
https://www.ncbi.nlm.nih.gov/pubmed/32760846
http://dx.doi.org/10.1016/j.ibror.2020.07.007
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