Tese

Influências do tamanho da ninhada e da atividade física sobre a plasticidade glial na formação hipocampal em modelo murino

Previous studies have shown significant effects of perinatal stress on cognitive performance in adulthood and during aging. However remains to be studied in detail as exercise at different stages of life helps to reduce these deficits. This is particularly true if we consider previous descriptions o...

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Autor principal: VIANA, Lane Coelho
Grau: Tese
Idioma: por
Publicado em: Universidade Federal do Pará 2014
Assuntos:
Acesso em linha: http://repositorio.ufpa.br/jspui/handle/2011/5371
Resumo:
Previous studies have shown significant effects of perinatal stress on cognitive performance in adulthood and during aging. However remains to be studied in detail as exercise at different stages of life helps to reduce these deficits. This is particularly true if we consider previous descriptions of extracellular matrix and glial cell changes, largely ignored in these studies. Thus, the aim of the present report is to investigate possible influences of litter size and physical activity on object recognition memory at adulthood and whether or not these influences affect glial plasticity and extracellular matrix of the hippocampal formation. To that end, we changed the litter size of Wistar rats to accentuate the degree of competition among siblings by functional teats and decrease the amount of maternal care per individual. During the suckling period, we have quantified the maternal care in litters of different sizes. At various time windows we submitted selected subjects to physical exercise on a treadmill, for 5 weeks, adopting the same training protocol. After exercise, some groups of adults and senile animals were submitted to the hippocampal-dependent object recognition memory test, sacrificed, and processed for selective microglia immunolabeling. Other groups of adult animals not subjected to behavioral tests were also euthanized and had one hemisphere used to record diffusional parameters in the hippocampal parenchyma while the other was used for selective immunolabeling to detect astrocytes, NG2 cells and reelin.We found that an increase in litter size was related to the reduction of maternal care, cognitive decline, altered morphology and proliferation of microglia, astrocytes and NG2 cells, as well as to a change in diffusion patterns in the hippocampal stroma. We also demonstrated that these changes may be reversed, at least partially, by physical activity and the extent of these beneficial effects are more pronounced in younger subjects. Finally, we demonstrated that ageing exacerbates microglial morphological changes induced by increased litter size and reduces memory performance.The molecular mechanisms associated to these effects remain to be investigated.