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Aging and low-intensity exercise change oxidative biomarkers in brain regions and radiographic measures of femur of Wistar rats
Silveira, E M S; Santos, M C Q; da Silva, T C B; Silva, F B O; Machado, C V; Elias, L; Kolberg, A; Kroth, A; Partata, W A.
  • Silveira, E M S; Universidade Federal do Rio Grande do Sul. Departamento de Fisiologia. Laboratório de Neurobiologia Comparada. Porto Alegre. BR
  • Santos, M C Q; Universidade Federal do Rio Grande do Sul. Departamento de Fisiologia. Laboratório de Neurobiologia Comparada. Porto Alegre. BR
  • da Silva, T C B; Universidade Federal do Rio Grande do Sul. Departamento de Fisiologia. Laboratório de Neurobiologia Comparada. Porto Alegre. BR
  • Silva, F B O; Universidade Federal do Rio Grande do Sul. Departamento de Fisiologia. Laboratório de Neurobiologia Comparada. Porto Alegre. BR
  • Machado, C V; Universidade Federal do Rio Grande do Sul. Departamento de Fisiologia. Laboratório de Neurobiologia Comparada. Porto Alegre. BR
  • Elias, L; Fundação Educacional Dom André Arcoverde (UNIFAA). Graduada em Medicina Veterinária. Valença. BR
  • Kolberg, A; Universidade Federal do Rio Grande do Sul. Departamento de Fisiologia. Laboratório de Neurobiologia Comparada. Porto Alegre. BR
  • Kroth, A; Universidade do Oeste de Santa Catarina. Joaçaba. BR
  • Partata, W A; Universidade Federal do Rio Grande do Sul. Departamento de Fisiologia. Laboratório de Neurobiologia Comparada. Porto Alegre. BR
Braz. j. med. biol. res ; 53(6): e9237, 2020. tab, graf
Article in English | LILACS, ColecionaSUS | ID: biblio-1132520
ABSTRACT
We investigated changes in oxidative biomarkers in brain regions such as brainstem, cerebellum, and cerebral cortex of 3-, 6-, 18-, 24-, and 30-month-old rats. We also assessed the effects of low-intensity exercise on these biomarkers in these regions of 6-, 18-, and 24-month-old rats that started exercise on a treadmill at 3, 15, and 21 months of age, respectively. Radiographic images of the femur were taken for all rats. A total of 25 rats (age twelve 6-, ten 18-, ten 24-, and three 30-month-old rats) were used. Lipid hydroperoxide levels increased in cerebellum at 18 months. Total antioxidant activity exhibited lowest values in brainstem at 3 months. Superoxide dismutase activity did not exhibit significant changes during aging. Total thiol content exhibited lowest values in brain regions of 24- and 30-month-old rats. Exercise reduced total thiol content in brainstem at 6 months, but no change occurred in other regions and other ages. Femur increased its length and width and cortical thickness with advancing age. No change occurred in medullary width. Radiolucency increased and sclerosis was found in cortical and medullary bone with advancing age. Exercise reduced radiolucency and medullary sclerosis. Therefore, aging differentially changed oxidative biomarkers in different brain regions and radiographic measures of the femur. Low-intensity exercise only ameliorated some radiographic measurements of femur. Since the present study possessed limitations (small number of rats per group), a beneficial effect of regular low-intensity exercise on oxidative markers in brain cannot be ruled out.
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Full text: Available Index: LILACS (Americas) Main subject: Physical Conditioning, Animal / Brain / Aging / Oxidative Stress / Femur / Lipid Peroxides Limits: Animals Language: English Journal: Braz. j. med. biol. res Year: 2020 Type: Article Institution/Affiliation country: Fundação Educacional Dom André Arcoverde (UNIFAA)/BR / Universidade Federal do Rio Grande do Sul/BR / Universidade do Oeste de Santa Catarina/BR

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Full text: Available Index: LILACS (Americas) Main subject: Physical Conditioning, Animal / Brain / Aging / Oxidative Stress / Femur / Lipid Peroxides Limits: Animals Language: English Journal: Braz. j. med. biol. res Year: 2020 Type: Article Institution/Affiliation country: Fundação Educacional Dom André Arcoverde (UNIFAA)/BR / Universidade Federal do Rio Grande do Sul/BR / Universidade do Oeste de Santa Catarina/BR