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Spatial memory decline after masticatory deprivation and aging is associated with altered laminar distribution of CA1 astrocytes

BACKGROUND: Chewing imbalances are associated with neurodegeneration and are risk factors for senile dementia in humans and memory deficits in experimental animals. We investigated the impact of long-term reduced mastication on spatial memory in young, mature and aged female albino Swiss mice by ste...

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Autores principales: Frota de Almeida, Marina Negrão, de Siqueira Mendes, Fabíola de Carvalho Chaves, Gurgel Felício, André Pinheiro, Falsoni, Manoela, Ferreira de Andrade, Márcia Lorena, Bento-Torres, João, da Costa Vasconcelos, Pedro Fernando, Perry, Victor Hugh, Picanço-Diniz, Cristovam Wanderley, Kronka Sosthenes, Marcia Consentino
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3355053/
https://www.ncbi.nlm.nih.gov/pubmed/22376223
http://dx.doi.org/10.1186/1471-2202-13-23
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author Frota de Almeida, Marina Negrão
de Siqueira Mendes, Fabíola de Carvalho Chaves
Gurgel Felício, André Pinheiro
Falsoni, Manoela
Ferreira de Andrade, Márcia Lorena
Bento-Torres, João
da Costa Vasconcelos, Pedro Fernando
Perry, Victor Hugh
Picanço-Diniz, Cristovam Wanderley
Kronka Sosthenes, Marcia Consentino
author_facet Frota de Almeida, Marina Negrão
de Siqueira Mendes, Fabíola de Carvalho Chaves
Gurgel Felício, André Pinheiro
Falsoni, Manoela
Ferreira de Andrade, Márcia Lorena
Bento-Torres, João
da Costa Vasconcelos, Pedro Fernando
Perry, Victor Hugh
Picanço-Diniz, Cristovam Wanderley
Kronka Sosthenes, Marcia Consentino
author_sort Frota de Almeida, Marina Negrão
collection PubMed
description BACKGROUND: Chewing imbalances are associated with neurodegeneration and are risk factors for senile dementia in humans and memory deficits in experimental animals. We investigated the impact of long-term reduced mastication on spatial memory in young, mature and aged female albino Swiss mice by stereological analysis of the laminar distribution of CA1 astrocytes. A soft diet (SD) was used to reduce mastication in the experimental group, whereas the control group was fed a hard diet (HD). Assays were performed in 3-, 6- and 18-month-old SD and HD mice. RESULTS: Eating a SD variably affected the number of astrocytes in the CA1 hippocampal field, and SD mice performed worse on water maze memory tests than HD mice. Three-month-old mice in both groups could remember/find a hidden platform in the water maze. However, 6-month-old SD mice, but not HD mice, exhibited significant spatial memory dysfunction. Both SD and HD 18-month-old mice showed spatial memory decline. Older SD mice had astrocyte hyperplasia in the strata pyramidale and oriens compared to 6-month-old mice. Aging induced astrocyte hypoplasia at 18 months in the lacunosum-moleculare layer of HD mice. CONCLUSIONS: Taken together, these results suggest that the impaired spatial learning and memory induced by masticatory deprivation and aging may be associated with altered astrocyte laminar distribution and number in the CA1 hippocampal field. The underlying molecular mechanisms are unknown and merit further investigation.
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spelling pubmed-33550532012-05-18 Spatial memory decline after masticatory deprivation and aging is associated with altered laminar distribution of CA1 astrocytes Frota de Almeida, Marina Negrão de Siqueira Mendes, Fabíola de Carvalho Chaves Gurgel Felício, André Pinheiro Falsoni, Manoela Ferreira de Andrade, Márcia Lorena Bento-Torres, João da Costa Vasconcelos, Pedro Fernando Perry, Victor Hugh Picanço-Diniz, Cristovam Wanderley Kronka Sosthenes, Marcia Consentino BMC Neurosci Research Article BACKGROUND: Chewing imbalances are associated with neurodegeneration and are risk factors for senile dementia in humans and memory deficits in experimental animals. We investigated the impact of long-term reduced mastication on spatial memory in young, mature and aged female albino Swiss mice by stereological analysis of the laminar distribution of CA1 astrocytes. A soft diet (SD) was used to reduce mastication in the experimental group, whereas the control group was fed a hard diet (HD). Assays were performed in 3-, 6- and 18-month-old SD and HD mice. RESULTS: Eating a SD variably affected the number of astrocytes in the CA1 hippocampal field, and SD mice performed worse on water maze memory tests than HD mice. Three-month-old mice in both groups could remember/find a hidden platform in the water maze. However, 6-month-old SD mice, but not HD mice, exhibited significant spatial memory dysfunction. Both SD and HD 18-month-old mice showed spatial memory decline. Older SD mice had astrocyte hyperplasia in the strata pyramidale and oriens compared to 6-month-old mice. Aging induced astrocyte hypoplasia at 18 months in the lacunosum-moleculare layer of HD mice. CONCLUSIONS: Taken together, these results suggest that the impaired spatial learning and memory induced by masticatory deprivation and aging may be associated with altered astrocyte laminar distribution and number in the CA1 hippocampal field. The underlying molecular mechanisms are unknown and merit further investigation. BioMed Central 2012-02-29 /pmc/articles/PMC3355053/ /pubmed/22376223 http://dx.doi.org/10.1186/1471-2202-13-23 Text en Copyright ©2012 Frota de Almeida et al; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Frota de Almeida, Marina Negrão
de Siqueira Mendes, Fabíola de Carvalho Chaves
Gurgel Felício, André Pinheiro
Falsoni, Manoela
Ferreira de Andrade, Márcia Lorena
Bento-Torres, João
da Costa Vasconcelos, Pedro Fernando
Perry, Victor Hugh
Picanço-Diniz, Cristovam Wanderley
Kronka Sosthenes, Marcia Consentino
Spatial memory decline after masticatory deprivation and aging is associated with altered laminar distribution of CA1 astrocytes
title Spatial memory decline after masticatory deprivation and aging is associated with altered laminar distribution of CA1 astrocytes
title_full Spatial memory decline after masticatory deprivation and aging is associated with altered laminar distribution of CA1 astrocytes
title_fullStr Spatial memory decline after masticatory deprivation and aging is associated with altered laminar distribution of CA1 astrocytes
title_full_unstemmed Spatial memory decline after masticatory deprivation and aging is associated with altered laminar distribution of CA1 astrocytes
title_short Spatial memory decline after masticatory deprivation and aging is associated with altered laminar distribution of CA1 astrocytes
title_sort spatial memory decline after masticatory deprivation and aging is associated with altered laminar distribution of ca1 astrocytes
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3355053/
https://www.ncbi.nlm.nih.gov/pubmed/22376223
http://dx.doi.org/10.1186/1471-2202-13-23
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