Literature DB >> 21892662

Effects of physical exercise on spatial memory and astroglial alterations in the hippocampus of diabetic rats.

Priscylla Nunes de Senna1, Jocemar Ilha, Pedro Porto Alegre Baptista, Patrícia Severo do Nascimento, Marina Concli Leite, Mariana Fontoura Paim, Carlos Alberto Gonçalves, Matilde Achaval, Léder Leal Xavier.   

Abstract

Type 1 diabetes mellitus (T1DM) is associated with neurocognitive dysfunction and astrogliosis. Physical exercise prevents cognitive impairments and induces important brain modifications. The aim of our study was to investigate the effect of treadmill exercise on spatial memory and astrocytic function in the hippocampus of a T1DM model. Fifty-seven Wistar rats were divided into four groups: trained control (TC) (n = 15), non-trained control (NTC) (n = 13), trained diabetic (TD) (n = 14) and non-trained diabetic (NTD) (n = 15). One month after streptozotocin-induced diabetes, exercise groups were submitted to 5 weeks of physical training, and then, all groups were assessed in the novel object-placement recognition task. Locomotor activity was analyzed in the open field apparatus using Any-maze software. The expression of glial fibrillary acidic protein (GFAP) and S100B in hippocampus and cerebrospinal fluid were measured using ELISA assay, and hippocampal GFAP immunoreactivity was evaluated by means of immunohistochemistry and optical densitometry. The results showed that physical exercise prevents and/or reverts spatial memory impairments observed in NTD animals (P < 0.01). Decreased locomotor activity was observed in both the NTD and TD groups when compared with controls (P < 0.05). ELISA and immunohistochemistry analyzes showed there was a reduction in GFAP levels in the hippocampus of NTD animals, which was not found in TD group. ELISA also showed an increase in S100B levels in the cerebrospinal fluid from the NTD group (P < 0.01) and no such increase was found in the TD group. Our findings indicate that physical exercise prevents and/or reverts the cognitive deficits and astroglial alterations induced by T1DM.

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Year:  2011        PMID: 21892662     DOI: 10.1007/s11011-011-9262-x

Source DB:  PubMed          Journal:  Metab Brain Dis        ISSN: 0885-7490            Impact factor:   3.584


  61 in total

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Review 6.  Biological and methodological features of the measurement of S100B, a putative marker of brain injury.

Authors:  Carlos-Alberto Gonçalves; Marina Concli Leite; Patrícia Nardin
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  18 in total

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4.  Peripheral Levels of AGEs and Astrocyte Alterations in the Hippocampus of STZ-Diabetic Rats.

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5.  Enriched environment induces beneficial effects on memory deficits and microglial activation in the hippocampus of type 1 diabetic rats.

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Journal:  Metab Brain Dis       Date:  2013-12-10       Impact factor: 3.584

6.  Angiotensin-(1-7) via the mas receptor alleviates the diabetes-induced decrease in GFAP and GAP-43 immunoreactivity with concomitant reduction in the COX-2 in hippocampal formation: an immunohistochemical study.

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7.  Effect of exercise on diabetes-induced oxidative stress in the rat hippocampus.

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8.  Exercise Duration Differentially Effects Age-related Neuroinflammation and Hippocampal Neurogenesis.

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Review 9.  Diabetes and stem cell function.

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Journal:  Biomed Res Int       Date:  2015-05-17       Impact factor: 3.411

10.  Treadmill exercise induces hippocampal astroglial alterations in rats.

Authors:  Caren Bernardi; Ana Carolina Tramontina; Patrícia Nardin; Regina Biasibetti; Ana Paula Costa; Adriana Fernanda Vizueti; Cristiane Batassini; Lucas Silva Tortorelli; Krista Minéia Wartchow; Márcio Ferreira Dutra; Larissa Bobermin; Patrícia Sesterheim; André Quincozes-Santos; Jaqueline de Souza; Carlos Alberto Gonçalves
Journal:  Neural Plast       Date:  2013-01-17       Impact factor: 3.599

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