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The Masticatory Activity Interference in Quantitative Estimation of CA1, CA3 and Dentate Gyrus Hippocampal Astrocytes of Aged Murine Models and under Environmental Stimulation

Studies indicating the influence of masticatory dysfunction, due to a soft diet or lack of molars, on impairing spatial memory and learning have led to research about neuronal connections between areas and cell populations possibly affected. In this sense, with scarce detailed data on the subfields...

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Autores principales: da Cunha Feio Leal, Marília, do Amaral Junior, Fabio Leite, da Silva Arruda, Bernardo Freire, Kurosawa, Juliana Ayumi Azevedo, Vieira, Amanda Almeida, Maia, Júlia Corrêa Campos, Scalfoni, Viviana Virgínia Bezerra, da Silveira Junior, Antonio Morais, Feijó, Matheus Oliveira, de Albuquerque, Fernanda Beatriz Araújo, Marta, Maria Helena Moutinho, Normando, Marina Paula Nobre, da Silva, Alana Gabriele Oliveira Cabeça, da Trindade, Fernanda Catharina Pires, de Siqueira Mendes, Fabíola de Carvalho Chaves, Sosthenes, Marcia Consentino Kronka
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10095286/
https://www.ncbi.nlm.nih.gov/pubmed/37047502
http://dx.doi.org/10.3390/ijms24076529
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author da Cunha Feio Leal, Marília
do Amaral Junior, Fabio Leite
da Silva Arruda, Bernardo Freire
Kurosawa, Juliana Ayumi Azevedo
Vieira, Amanda Almeida
Maia, Júlia Corrêa Campos
Scalfoni, Viviana Virgínia Bezerra
da Silveira Junior, Antonio Morais
Feijó, Matheus Oliveira
de Albuquerque, Fernanda Beatriz Araújo
Marta, Maria Helena Moutinho
Normando, Marina Paula Nobre
da Silva, Alana Gabriele Oliveira Cabeça
da Trindade, Fernanda Catharina Pires
de Siqueira Mendes, Fabíola de Carvalho Chaves
Sosthenes, Marcia Consentino Kronka
author_facet da Cunha Feio Leal, Marília
do Amaral Junior, Fabio Leite
da Silva Arruda, Bernardo Freire
Kurosawa, Juliana Ayumi Azevedo
Vieira, Amanda Almeida
Maia, Júlia Corrêa Campos
Scalfoni, Viviana Virgínia Bezerra
da Silveira Junior, Antonio Morais
Feijó, Matheus Oliveira
de Albuquerque, Fernanda Beatriz Araújo
Marta, Maria Helena Moutinho
Normando, Marina Paula Nobre
da Silva, Alana Gabriele Oliveira Cabeça
da Trindade, Fernanda Catharina Pires
de Siqueira Mendes, Fabíola de Carvalho Chaves
Sosthenes, Marcia Consentino Kronka
author_sort da Cunha Feio Leal, Marília
collection PubMed
description Studies indicating the influence of masticatory dysfunction, due to a soft diet or lack of molars, on impairing spatial memory and learning have led to research about neuronal connections between areas and cell populations possibly affected. In this sense, with scarce detailed data on the subfields of hippocampus in dementia neurodegeneration, there is no information about astrocytic responses in its different layers. Thus, considering this context, the present study evaluated the effects of deprivation and rehabilitation of masticatory activity, aging, and environmental enrichment on the stereological quantification of hippocampal astrocytes from layers CA1, CA3, and DG. For this purpose, we examined mature (6-month-old; 6M), and aged (18-month-old; 18M) mice, subjected to distinct masticatory regimens and environments. Three different regimens of masticatory activity were applied: continuous normal mastication with hard pellets (HD); normal mastication followed by deprived mastication with equal periods of pellets followed by soft powder (HD/SD); or rehabilitated masticatory activity with equal periods of HD, followed by powder, followed by pellets (HD/SD/HD). Under each specific regimen, half of the animals were raised in standard cages (impoverished environment (IE)) and the other half in enriched cages (enriched environment (EE)), mimicking sedentary or active lifestyles. Microscopic stereological, systematic, and random sampling approaches with an optical dissector of GFAP-immunolabeled astrocytes were done, allowing for an astrocyte numerical estimate. Stratum moleculare and hilus, from the dentate gyrus (DG) and Strata Lacunosum-Moleculare, Oriens, and Radiatum, similarly to the dentate gyrus, showed no significant change in any of the investigated variables (age, diet, or environment) in these layers. However, in Stratum radiatum, it was possible to observe significant differences associated with diet regimens and age. Therefore, diet-related differences were found when the HD 18M IE group was compared to the HD/SD/HD 18-month-old group in the same environment (IE) (p = 0.007). In the present study, we present modulatory factors (masticatory function, environmental enrichment, and aging) for the differentiated quantitative laminar response in the hippocampal regions, suggesting other studies to read the plasticity and responsiveness of astrocytes, including the molecular background.
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spelling pubmed-100952862023-04-13 The Masticatory Activity Interference in Quantitative Estimation of CA1, CA3 and Dentate Gyrus Hippocampal Astrocytes of Aged Murine Models and under Environmental Stimulation da Cunha Feio Leal, Marília do Amaral Junior, Fabio Leite da Silva Arruda, Bernardo Freire Kurosawa, Juliana Ayumi Azevedo Vieira, Amanda Almeida Maia, Júlia Corrêa Campos Scalfoni, Viviana Virgínia Bezerra da Silveira Junior, Antonio Morais Feijó, Matheus Oliveira de Albuquerque, Fernanda Beatriz Araújo Marta, Maria Helena Moutinho Normando, Marina Paula Nobre da Silva, Alana Gabriele Oliveira Cabeça da Trindade, Fernanda Catharina Pires de Siqueira Mendes, Fabíola de Carvalho Chaves Sosthenes, Marcia Consentino Kronka Int J Mol Sci Article Studies indicating the influence of masticatory dysfunction, due to a soft diet or lack of molars, on impairing spatial memory and learning have led to research about neuronal connections between areas and cell populations possibly affected. In this sense, with scarce detailed data on the subfields of hippocampus in dementia neurodegeneration, there is no information about astrocytic responses in its different layers. Thus, considering this context, the present study evaluated the effects of deprivation and rehabilitation of masticatory activity, aging, and environmental enrichment on the stereological quantification of hippocampal astrocytes from layers CA1, CA3, and DG. For this purpose, we examined mature (6-month-old; 6M), and aged (18-month-old; 18M) mice, subjected to distinct masticatory regimens and environments. Three different regimens of masticatory activity were applied: continuous normal mastication with hard pellets (HD); normal mastication followed by deprived mastication with equal periods of pellets followed by soft powder (HD/SD); or rehabilitated masticatory activity with equal periods of HD, followed by powder, followed by pellets (HD/SD/HD). Under each specific regimen, half of the animals were raised in standard cages (impoverished environment (IE)) and the other half in enriched cages (enriched environment (EE)), mimicking sedentary or active lifestyles. Microscopic stereological, systematic, and random sampling approaches with an optical dissector of GFAP-immunolabeled astrocytes were done, allowing for an astrocyte numerical estimate. Stratum moleculare and hilus, from the dentate gyrus (DG) and Strata Lacunosum-Moleculare, Oriens, and Radiatum, similarly to the dentate gyrus, showed no significant change in any of the investigated variables (age, diet, or environment) in these layers. However, in Stratum radiatum, it was possible to observe significant differences associated with diet regimens and age. Therefore, diet-related differences were found when the HD 18M IE group was compared to the HD/SD/HD 18-month-old group in the same environment (IE) (p = 0.007). In the present study, we present modulatory factors (masticatory function, environmental enrichment, and aging) for the differentiated quantitative laminar response in the hippocampal regions, suggesting other studies to read the plasticity and responsiveness of astrocytes, including the molecular background. MDPI 2023-03-31 /pmc/articles/PMC10095286/ /pubmed/37047502 http://dx.doi.org/10.3390/ijms24076529 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
da Cunha Feio Leal, Marília
do Amaral Junior, Fabio Leite
da Silva Arruda, Bernardo Freire
Kurosawa, Juliana Ayumi Azevedo
Vieira, Amanda Almeida
Maia, Júlia Corrêa Campos
Scalfoni, Viviana Virgínia Bezerra
da Silveira Junior, Antonio Morais
Feijó, Matheus Oliveira
de Albuquerque, Fernanda Beatriz Araújo
Marta, Maria Helena Moutinho
Normando, Marina Paula Nobre
da Silva, Alana Gabriele Oliveira Cabeça
da Trindade, Fernanda Catharina Pires
de Siqueira Mendes, Fabíola de Carvalho Chaves
Sosthenes, Marcia Consentino Kronka
The Masticatory Activity Interference in Quantitative Estimation of CA1, CA3 and Dentate Gyrus Hippocampal Astrocytes of Aged Murine Models and under Environmental Stimulation
title The Masticatory Activity Interference in Quantitative Estimation of CA1, CA3 and Dentate Gyrus Hippocampal Astrocytes of Aged Murine Models and under Environmental Stimulation
title_full The Masticatory Activity Interference in Quantitative Estimation of CA1, CA3 and Dentate Gyrus Hippocampal Astrocytes of Aged Murine Models and under Environmental Stimulation
title_fullStr The Masticatory Activity Interference in Quantitative Estimation of CA1, CA3 and Dentate Gyrus Hippocampal Astrocytes of Aged Murine Models and under Environmental Stimulation
title_full_unstemmed The Masticatory Activity Interference in Quantitative Estimation of CA1, CA3 and Dentate Gyrus Hippocampal Astrocytes of Aged Murine Models and under Environmental Stimulation
title_short The Masticatory Activity Interference in Quantitative Estimation of CA1, CA3 and Dentate Gyrus Hippocampal Astrocytes of Aged Murine Models and under Environmental Stimulation
title_sort masticatory activity interference in quantitative estimation of ca1, ca3 and dentate gyrus hippocampal astrocytes of aged murine models and under environmental stimulation
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10095286/
https://www.ncbi.nlm.nih.gov/pubmed/37047502
http://dx.doi.org/10.3390/ijms24076529
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