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Voluntary running exercise modifies astrocytic population and features in the peri-infarct cortex

Rehabilitative exercise following a brain stroke has beneficial effects on the morphological plasticity of neurons. Particularly, voluntary running exercise after focal cerebral ischemia promotes functional recovery and ameliorates ischemia-induced dendritic spine loss in the peri-infarct motor cort...

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Autores principales: Yamaguchi, Natsumi, Sawano, Toshinori, Nakatani, Jin, Nakano-Doi, Akiko, Nakagomi, Takayuki, Matsuyama, Tomohiro, Tanaka, Hidekazu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9984846/
https://www.ncbi.nlm.nih.gov/pubmed/36880055
http://dx.doi.org/10.1016/j.ibneur.2023.02.004
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author Yamaguchi, Natsumi
Sawano, Toshinori
Nakatani, Jin
Nakano-Doi, Akiko
Nakagomi, Takayuki
Matsuyama, Tomohiro
Tanaka, Hidekazu
author_facet Yamaguchi, Natsumi
Sawano, Toshinori
Nakatani, Jin
Nakano-Doi, Akiko
Nakagomi, Takayuki
Matsuyama, Tomohiro
Tanaka, Hidekazu
author_sort Yamaguchi, Natsumi
collection PubMed
description Rehabilitative exercise following a brain stroke has beneficial effects on the morphological plasticity of neurons. Particularly, voluntary running exercise after focal cerebral ischemia promotes functional recovery and ameliorates ischemia-induced dendritic spine loss in the peri-infarct motor cortex layer 5. Moreover, neuronal morphology is affected by changes in the perineuronal environment. Glial cells, whose phenotypes may be altered by exercise, are known to play a pivotal role in the formation of this perineuronal environment. Herein, we investigated the effects of voluntary running exercise on glial cells after middle cerebral artery occlusion. Voluntary running exercise increased the population of glial fibrillary acidic protein-positive astrocytes born between post-operative days (POD) 0 and 3 on POD15 in the peri-infarct cortex. After exercise, transcriptomic analysis of post-ischemic astrocytes revealed 10 upregulated and 70 downregulated genes. Furthermore, gene ontology analysis showed that the 70 downregulated genes were significantly associated with neuronal morphology. In addition, exercise reduced the number of astrocytes expressing lipocalin 2, a regulator of dendritic spine density, on POD15. Our results suggest that exercise modifies the composition of astrocytic population and their phenotype.
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spelling pubmed-99848462023-03-05 Voluntary running exercise modifies astrocytic population and features in the peri-infarct cortex Yamaguchi, Natsumi Sawano, Toshinori Nakatani, Jin Nakano-Doi, Akiko Nakagomi, Takayuki Matsuyama, Tomohiro Tanaka, Hidekazu IBRO Neurosci Rep Research Paper Rehabilitative exercise following a brain stroke has beneficial effects on the morphological plasticity of neurons. Particularly, voluntary running exercise after focal cerebral ischemia promotes functional recovery and ameliorates ischemia-induced dendritic spine loss in the peri-infarct motor cortex layer 5. Moreover, neuronal morphology is affected by changes in the perineuronal environment. Glial cells, whose phenotypes may be altered by exercise, are known to play a pivotal role in the formation of this perineuronal environment. Herein, we investigated the effects of voluntary running exercise on glial cells after middle cerebral artery occlusion. Voluntary running exercise increased the population of glial fibrillary acidic protein-positive astrocytes born between post-operative days (POD) 0 and 3 on POD15 in the peri-infarct cortex. After exercise, transcriptomic analysis of post-ischemic astrocytes revealed 10 upregulated and 70 downregulated genes. Furthermore, gene ontology analysis showed that the 70 downregulated genes were significantly associated with neuronal morphology. In addition, exercise reduced the number of astrocytes expressing lipocalin 2, a regulator of dendritic spine density, on POD15. Our results suggest that exercise modifies the composition of astrocytic population and their phenotype. Elsevier 2023-02-22 /pmc/articles/PMC9984846/ /pubmed/36880055 http://dx.doi.org/10.1016/j.ibneur.2023.02.004 Text en © 2023 The Authors https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Paper
Yamaguchi, Natsumi
Sawano, Toshinori
Nakatani, Jin
Nakano-Doi, Akiko
Nakagomi, Takayuki
Matsuyama, Tomohiro
Tanaka, Hidekazu
Voluntary running exercise modifies astrocytic population and features in the peri-infarct cortex
title Voluntary running exercise modifies astrocytic population and features in the peri-infarct cortex
title_full Voluntary running exercise modifies astrocytic population and features in the peri-infarct cortex
title_fullStr Voluntary running exercise modifies astrocytic population and features in the peri-infarct cortex
title_full_unstemmed Voluntary running exercise modifies astrocytic population and features in the peri-infarct cortex
title_short Voluntary running exercise modifies astrocytic population and features in the peri-infarct cortex
title_sort voluntary running exercise modifies astrocytic population and features in the peri-infarct cortex
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9984846/
https://www.ncbi.nlm.nih.gov/pubmed/36880055
http://dx.doi.org/10.1016/j.ibneur.2023.02.004
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