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Oxidative stress in the hippocampus during experimental seizures can be ameliorated with the antioxidant ascorbic acid

Ascorbic acid has many nonenzymatic actions and is a powerful water-soluble antioxidant. It protects low density lipoproteins from oxidation and reduces harmful oxidants in the central nervous system. Pilocarpine-induced seizures have been suggested to be mediated by increases in oxidative stress. C...

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Autores principales: Santos, Ítala Mônica Sales, da Rocha Tomé, Adriana, Saldanha, Gláucio Barros, Ferreira, Paulo Michel Pinheiro, Militão, Gardenia Carmem Gadelha, de Freitas, Rivelilson Mendes
Formato: Texto
Lenguaje:English
Publicado: Landes Bioscience 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2763259/
https://www.ncbi.nlm.nih.gov/pubmed/20716907
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author Santos, Ítala Mônica Sales
da Rocha Tomé, Adriana
Saldanha, Gláucio Barros
Ferreira, Paulo Michel Pinheiro
Militão, Gardenia Carmem Gadelha
de Freitas, Rivelilson Mendes
author_facet Santos, Ítala Mônica Sales
da Rocha Tomé, Adriana
Saldanha, Gláucio Barros
Ferreira, Paulo Michel Pinheiro
Militão, Gardenia Carmem Gadelha
de Freitas, Rivelilson Mendes
author_sort Santos, Ítala Mônica Sales
collection PubMed
description Ascorbic acid has many nonenzymatic actions and is a powerful water-soluble antioxidant. It protects low density lipoproteins from oxidation and reduces harmful oxidants in the central nervous system. Pilocarpine-induced seizures have been suggested to be mediated by increases in oxidative stress. Current studies have suggested that antioxidant compounds may afford some level of neuroprotection against the neurotoxicity of seizures. The objective of the present study was to evaluate the neuroprotective effects of ascorbic acid (AA) in rats, against the observed oxidative stress during seizures induced by pilocarpine. Wistar rats were treated with 0.9% saline (i.p., control group), ascorbic acid (500 mg/kg, i.p., AA group), pilocarpine (400 mg/kg, i.p., pilocarpine group), and the association of ascorbic acid (500 mg/kg, i.p.) plus pilocarpine (400 mg/kg, i.p.), 30 min before of administration of ascorbic acid (AA plus pilocarpine group). After the treatments all groups were observed for 6 h. The enzyme activities as well as the lipid peroxidation and nitrite concentrations were measured using spectrophotometric methods and the results compared to values obtained from saline and pilocarpine-treated animals. Protective effects of ascorbic acid were also evaluated on the same parameters. In pilocarpine group there was a significant increase in lipid peroxidation and nitrite level. However, no alteration was observed in superoxide dismutase and catalase activities. Antioxidant treatment significantly reduced the lipid peroxidation level and nitrite content as well as increased the superoxide dismutase and catalase activities in hippocampus of adult rats after seizures induced by pilocarpine. Our findings strongly support the hypothesis that oxidative stress in hippocampus occurs during seizures induced by pilocarpine, proving that brain damage induced by the oxidative process plays a crucial role in seizures pathogenic consequences, and also imply that a strong protective effect could be achieved using ascorbic acid.
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spelling pubmed-27632592010-09-01 Oxidative stress in the hippocampus during experimental seizures can be ameliorated with the antioxidant ascorbic acid Santos, Ítala Mônica Sales da Rocha Tomé, Adriana Saldanha, Gláucio Barros Ferreira, Paulo Michel Pinheiro Militão, Gardenia Carmem Gadelha de Freitas, Rivelilson Mendes Oxid Med Cell Longev Research Papers Ascorbic acid has many nonenzymatic actions and is a powerful water-soluble antioxidant. It protects low density lipoproteins from oxidation and reduces harmful oxidants in the central nervous system. Pilocarpine-induced seizures have been suggested to be mediated by increases in oxidative stress. Current studies have suggested that antioxidant compounds may afford some level of neuroprotection against the neurotoxicity of seizures. The objective of the present study was to evaluate the neuroprotective effects of ascorbic acid (AA) in rats, against the observed oxidative stress during seizures induced by pilocarpine. Wistar rats were treated with 0.9% saline (i.p., control group), ascorbic acid (500 mg/kg, i.p., AA group), pilocarpine (400 mg/kg, i.p., pilocarpine group), and the association of ascorbic acid (500 mg/kg, i.p.) plus pilocarpine (400 mg/kg, i.p.), 30 min before of administration of ascorbic acid (AA plus pilocarpine group). After the treatments all groups were observed for 6 h. The enzyme activities as well as the lipid peroxidation and nitrite concentrations were measured using spectrophotometric methods and the results compared to values obtained from saline and pilocarpine-treated animals. Protective effects of ascorbic acid were also evaluated on the same parameters. In pilocarpine group there was a significant increase in lipid peroxidation and nitrite level. However, no alteration was observed in superoxide dismutase and catalase activities. Antioxidant treatment significantly reduced the lipid peroxidation level and nitrite content as well as increased the superoxide dismutase and catalase activities in hippocampus of adult rats after seizures induced by pilocarpine. Our findings strongly support the hypothesis that oxidative stress in hippocampus occurs during seizures induced by pilocarpine, proving that brain damage induced by the oxidative process plays a crucial role in seizures pathogenic consequences, and also imply that a strong protective effect could be achieved using ascorbic acid. Landes Bioscience 2009 /pmc/articles/PMC2763259/ /pubmed/20716907 Text en Copyright © 2009 Landes Bioscience
spellingShingle Research Papers
Santos, Ítala Mônica Sales
da Rocha Tomé, Adriana
Saldanha, Gláucio Barros
Ferreira, Paulo Michel Pinheiro
Militão, Gardenia Carmem Gadelha
de Freitas, Rivelilson Mendes
Oxidative stress in the hippocampus during experimental seizures can be ameliorated with the antioxidant ascorbic acid
title Oxidative stress in the hippocampus during experimental seizures can be ameliorated with the antioxidant ascorbic acid
title_full Oxidative stress in the hippocampus during experimental seizures can be ameliorated with the antioxidant ascorbic acid
title_fullStr Oxidative stress in the hippocampus during experimental seizures can be ameliorated with the antioxidant ascorbic acid
title_full_unstemmed Oxidative stress in the hippocampus during experimental seizures can be ameliorated with the antioxidant ascorbic acid
title_short Oxidative stress in the hippocampus during experimental seizures can be ameliorated with the antioxidant ascorbic acid
title_sort oxidative stress in the hippocampus during experimental seizures can be ameliorated with the antioxidant ascorbic acid
topic Research Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2763259/
https://www.ncbi.nlm.nih.gov/pubmed/20716907
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