Literature DB >> 20704596

Environmental impoverishment and aging alter object recognition, spatial learning, and dentate gyrus astrocytes.

Daniel G Diniz1, César A R Foro, Carla M D Rego, David A Gloria, Fabio R R de Oliveira, Juliana M P Paes, Aline A de Sousa, Tatyana P Tokuhashi, Lucas S Trindade, Maíra C P Turiel, Erick G R Vasconcelos, João B Torres, Colm Cunnigham, Victor H Perry, Pedro F da Costa Vasconcelos, Cristovam W P Diniz.   

Abstract

Environmental and age-related effects on learning and memory were analysed and compared with changes observed in astrocyte laminar distribution in the dentate gyrus. Aged (20 months) and young (6 months) adult female albino Swiss mice were housed from weaning either in impoverished conditions or in enriched conditions, and tested for episodic-like and water maze spatial memories. After these behavioral tests, brain hippocampal sections were immunolabeled for glial fibrillary acid protein to identify astrocytes. The effects of environmental enrichment on episodic-like memory were not dependent on age, and may protect water maze spatial learning and memory from declines induced by aging or impoverished environment. In the dentate gyrus, the number of astrocytes increased with both aging and enriched environment in the molecular layer, increased only with aging in the polymorphic layer, and was unchanged in the granular layer. We suggest that long-term experience-induced glial plasticity by enriched environment may represent at least part of the circuitry groundwork for improvements in behavioral performance in the aged mice brain.

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Year:  2010        PMID: 20704596     DOI: 10.1111/j.1460-9568.2010.07296.x

Source DB:  PubMed          Journal:  Eur J Neurosci        ISSN: 0953-816X            Impact factor:   3.386


  29 in total

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2.  Influence of late-life exposure to environmental enrichment or exercise on hippocampal function and CA1 senescent physiology.

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Journal:  Neurobiol Aging       Date:  2011-08-04       Impact factor: 4.673

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Review 5.  Aging of cerebral white matter.

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7.  Short-term environmental enrichment enhances synaptic plasticity in hippocampal slices from aged rats.

Authors:  Liana R Stein; Kazuko A O'Dell; Michiyo Funatsu; Charles F Zorumski; Yukitoshi Izumi
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Review 8.  Astroglial asthenia and loss of function, rather than reactivity, contribute to the ageing of the brain.

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Journal:  Pflugers Arch       Date:  2020-09-26       Impact factor: 3.657

9.  Unlike physical exercise, modified environment increases the lifespan of SOD1G93A mice however both conditions induce cellular changes.

Authors:  Yannick N Gerber; Jean-Charles Sabourin; Jean-Philippe Hugnot; Florence E Perrin
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Review 10.  Microglial Morphology Across Distantly Related Species: Phylogenetic, Environmental and Age Influences on Microglia Reactivity and Surveillance States.

Authors:  Dario Carvalho-Paulo; João Bento Torres Neto; Carlos Santos Filho; Thais Cristina Galdino de Oliveira; Aline Andrade de Sousa; Renata Rodrigues Dos Reis; Zaire Alves Dos Santos; Camila Mendes de Lima; Marcus Augusto de Oliveira; Nivin Mazen Said; Sinara Franco Freitas; Marcia Consentino Kronka Sosthenes; Giovanni Freitas Gomes; Ediely Pereira Henrique; Patrick Douglas Côrrea Pereira; Lucas Silva de Siqueira; Mauro André Damasceno de Melo; Cristovam Guerreiro Diniz; Nara Gyzely de Morais Magalhães; José Antonio Picanço Diniz; Pedro Fernando da Costa Vasconcelos; Daniel Guerreiro Diniz; Daniel Clive Anthony; David Francis Sherry; Dora Brites; Cristovam Wanderley Picanço Diniz
Journal:  Front Immunol       Date:  2021-06-18       Impact factor: 7.561

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