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Tempol Moderately Extends Survival in a hSOD1(G93A) ALS Rat Model by Inhibiting Neuronal Cell Loss, Oxidative Damage and Levels of Non-Native hSOD1(G93A) Forms

Amyotrophic lateral sclerosis (ALS) is a fatal neurodegenerative disease characterized by the progressive dysfunction and death of motor neurons by mechanisms that remain unclear. Evidence indicates that oxidative mechanisms contribute to ALS pathology, but classical antioxidants have not performed...

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Autores principales: Linares, Edlaine, Seixas, Luciana V., dos Prazeres, Janaina N., Ladd, Fernando V. L., Ladd, Aliny A. B. L., Coppi, Antonio A., Augusto, Ohara
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3566093/
https://www.ncbi.nlm.nih.gov/pubmed/23405225
http://dx.doi.org/10.1371/journal.pone.0055868
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author Linares, Edlaine
Seixas, Luciana V.
dos Prazeres, Janaina N.
Ladd, Fernando V. L.
Ladd, Aliny A. B. L.
Coppi, Antonio A.
Augusto, Ohara
author_facet Linares, Edlaine
Seixas, Luciana V.
dos Prazeres, Janaina N.
Ladd, Fernando V. L.
Ladd, Aliny A. B. L.
Coppi, Antonio A.
Augusto, Ohara
author_sort Linares, Edlaine
collection PubMed
description Amyotrophic lateral sclerosis (ALS) is a fatal neurodegenerative disease characterized by the progressive dysfunction and death of motor neurons by mechanisms that remain unclear. Evidence indicates that oxidative mechanisms contribute to ALS pathology, but classical antioxidants have not performed well in clinical trials. Cyclic nitroxides are an alternative worth exploring because they are multifunctional antioxidants that display low toxicity in vivo. Here, we examine the effects of the cyclic nitroxide tempol (4-hydroxy-2,2,6,6-tetramethyl piperidine-1-oxyl) on ALS onset and progression in transgenic female rats over-expressing the mutant hSOD1(G93A) . Starting at 7 weeks of age, a high dose of tempol (155 mg/day/rat) in the rat´s drinking water had marginal effects on the disease onset but decelerated disease progression and extended survival by 9 days. In addition, tempol protected spinal cord tissues as monitored by the number of neuronal cells, and the reducing capability and levels of carbonylated proteins and non-native hSOD1 forms in spinal cord homogenates. Intraperitoneal tempol (26 mg/rat, 3 times/week) extended survival by 17 days. This group of rats, however, diverted to a decelerated disease progression. Therefore, it was inconclusive whether the higher protective effect of the lower i.p. dose was due to higher tempol bioavailability, decelerated disease development or both. Collectively, the results show that tempol moderately extends the survival of ALS rats while protecting their cellular and molecular structures against damage. Thus, the results provide proof that cyclic nitroxides are alternatives worth to be further tested in animal models of ALS.
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spelling pubmed-35660932013-02-12 Tempol Moderately Extends Survival in a hSOD1(G93A) ALS Rat Model by Inhibiting Neuronal Cell Loss, Oxidative Damage and Levels of Non-Native hSOD1(G93A) Forms Linares, Edlaine Seixas, Luciana V. dos Prazeres, Janaina N. Ladd, Fernando V. L. Ladd, Aliny A. B. L. Coppi, Antonio A. Augusto, Ohara PLoS One Research Article Amyotrophic lateral sclerosis (ALS) is a fatal neurodegenerative disease characterized by the progressive dysfunction and death of motor neurons by mechanisms that remain unclear. Evidence indicates that oxidative mechanisms contribute to ALS pathology, but classical antioxidants have not performed well in clinical trials. Cyclic nitroxides are an alternative worth exploring because they are multifunctional antioxidants that display low toxicity in vivo. Here, we examine the effects of the cyclic nitroxide tempol (4-hydroxy-2,2,6,6-tetramethyl piperidine-1-oxyl) on ALS onset and progression in transgenic female rats over-expressing the mutant hSOD1(G93A) . Starting at 7 weeks of age, a high dose of tempol (155 mg/day/rat) in the rat´s drinking water had marginal effects on the disease onset but decelerated disease progression and extended survival by 9 days. In addition, tempol protected spinal cord tissues as monitored by the number of neuronal cells, and the reducing capability and levels of carbonylated proteins and non-native hSOD1 forms in spinal cord homogenates. Intraperitoneal tempol (26 mg/rat, 3 times/week) extended survival by 17 days. This group of rats, however, diverted to a decelerated disease progression. Therefore, it was inconclusive whether the higher protective effect of the lower i.p. dose was due to higher tempol bioavailability, decelerated disease development or both. Collectively, the results show that tempol moderately extends the survival of ALS rats while protecting their cellular and molecular structures against damage. Thus, the results provide proof that cyclic nitroxides are alternatives worth to be further tested in animal models of ALS. Public Library of Science 2013-02-06 /pmc/articles/PMC3566093/ /pubmed/23405225 http://dx.doi.org/10.1371/journal.pone.0055868 Text en © 2013 Linares et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Linares, Edlaine
Seixas, Luciana V.
dos Prazeres, Janaina N.
Ladd, Fernando V. L.
Ladd, Aliny A. B. L.
Coppi, Antonio A.
Augusto, Ohara
Tempol Moderately Extends Survival in a hSOD1(G93A) ALS Rat Model by Inhibiting Neuronal Cell Loss, Oxidative Damage and Levels of Non-Native hSOD1(G93A) Forms
title Tempol Moderately Extends Survival in a hSOD1(G93A) ALS Rat Model by Inhibiting Neuronal Cell Loss, Oxidative Damage and Levels of Non-Native hSOD1(G93A) Forms
title_full Tempol Moderately Extends Survival in a hSOD1(G93A) ALS Rat Model by Inhibiting Neuronal Cell Loss, Oxidative Damage and Levels of Non-Native hSOD1(G93A) Forms
title_fullStr Tempol Moderately Extends Survival in a hSOD1(G93A) ALS Rat Model by Inhibiting Neuronal Cell Loss, Oxidative Damage and Levels of Non-Native hSOD1(G93A) Forms
title_full_unstemmed Tempol Moderately Extends Survival in a hSOD1(G93A) ALS Rat Model by Inhibiting Neuronal Cell Loss, Oxidative Damage and Levels of Non-Native hSOD1(G93A) Forms
title_short Tempol Moderately Extends Survival in a hSOD1(G93A) ALS Rat Model by Inhibiting Neuronal Cell Loss, Oxidative Damage and Levels of Non-Native hSOD1(G93A) Forms
title_sort tempol moderately extends survival in a hsod1(g93a) als rat model by inhibiting neuronal cell loss, oxidative damage and levels of non-native hsod1(g93a) forms
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3566093/
https://www.ncbi.nlm.nih.gov/pubmed/23405225
http://dx.doi.org/10.1371/journal.pone.0055868
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