Background Few studies have explored the glial response to a standard environment and how the response may be associated with age‑related cognitive decline in learning and memory. Here we investigated aging and environmental influences on hippocampal‑dependent tasks and on the morphology of an unbiased selected population of astrocytes from the molecular layer of dentate gyrus, which is the main target of perforant pathway. Results Six and twenty‑month‑old female, albino Swiss mice were housed, from weaning, in a standard or enriched environment, including running wheels for exercise and tested for object recognition and contextual memories. Young adult and aged subjects, independent of environment, were able to distinguish familiar from no...
Glial cells are sensitive to aging, but the real extent of age-related quantitative and qualitative ...
Alzheimer's disease (AD) is a neurodegenerative disease that affects neurons and glial cells and lea...
Advancing age causes reduced hippocampal neurogenesis, associated with age-related cognitive decline...
Background Few studies have explored the glial response to a standard environment and how the respon...
During aging, alterations in astrocyte phenotype occur in areas associated with age-related cognitiv...
During aging, alterations in astrocyte phenotype occur in areas associated with age-related cognitiv...
Environmental and age-related effects on learning and memory were analysed and compared with changes...
During our previous study (Diniz et al., 2010), mice (Mus musculus) maintained in an impoverished en...
Astrocytes, the most numerous brain glia, play crucial roles in maintaining brain homeostasis, suppl...
BACKGROUND: Besides their neuronal support functions, astrocytes are active partners in neuronal inf...
The decline of cognitive function occurs with aging, but the mechanisms responsible are unknown. Ast...
Besides their neuronal support functions, astrocytes are active partners in neuronal information pro...
Because enriched environment (EE) and exercise increase and aging decreases immune response, we hypo...
Currently, little is known about the impact of aging on astrocytes in substantia nigra pars compacta...
A few studies investigated in detail possible relationships between aging cognitive decline and hipp...
Glial cells are sensitive to aging, but the real extent of age-related quantitative and qualitative ...
Alzheimer's disease (AD) is a neurodegenerative disease that affects neurons and glial cells and lea...
Advancing age causes reduced hippocampal neurogenesis, associated with age-related cognitive decline...
Background Few studies have explored the glial response to a standard environment and how the respon...
During aging, alterations in astrocyte phenotype occur in areas associated with age-related cognitiv...
During aging, alterations in astrocyte phenotype occur in areas associated with age-related cognitiv...
Environmental and age-related effects on learning and memory were analysed and compared with changes...
During our previous study (Diniz et al., 2010), mice (Mus musculus) maintained in an impoverished en...
Astrocytes, the most numerous brain glia, play crucial roles in maintaining brain homeostasis, suppl...
BACKGROUND: Besides their neuronal support functions, astrocytes are active partners in neuronal inf...
The decline of cognitive function occurs with aging, but the mechanisms responsible are unknown. Ast...
Besides their neuronal support functions, astrocytes are active partners in neuronal information pro...
Because enriched environment (EE) and exercise increase and aging decreases immune response, we hypo...
Currently, little is known about the impact of aging on astrocytes in substantia nigra pars compacta...
A few studies investigated in detail possible relationships between aging cognitive decline and hipp...
Glial cells are sensitive to aging, but the real extent of age-related quantitative and qualitative ...
Alzheimer's disease (AD) is a neurodegenerative disease that affects neurons and glial cells and lea...
Advancing age causes reduced hippocampal neurogenesis, associated with age-related cognitive decline...