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Diphenyl diselenide protects neuronal cells against oxidative stress and mitochondrial dysfunction: Involvement of the glutathione-dependent antioxidant system

Oxidative stress and mitochondrial dysfunction are critical events in neurodegenerative diseases; therefore, molecules that increase cellular antioxidant defenses represent a future pharmacologic strategy to counteract such conditions. The aim of this study was to investigate the potential protectiv...

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Autores principales: Quispe, Ruth Liliám, Jaramillo, Michael Lorenz, Galant, Leticia Selinger, Engel, Daiane, Dafre, Alcir Luiz, Teixeira da Rocha, João Batista, Radi, Rafael, Farina, Marcelo, de Bem, Andreza Fabro
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6176650/
https://www.ncbi.nlm.nih.gov/pubmed/30308475
http://dx.doi.org/10.1016/j.redox.2018.09.014
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author Quispe, Ruth Liliám
Jaramillo, Michael Lorenz
Galant, Leticia Selinger
Engel, Daiane
Dafre, Alcir Luiz
Teixeira da Rocha, João Batista
Radi, Rafael
Farina, Marcelo
de Bem, Andreza Fabro
author_facet Quispe, Ruth Liliám
Jaramillo, Michael Lorenz
Galant, Leticia Selinger
Engel, Daiane
Dafre, Alcir Luiz
Teixeira da Rocha, João Batista
Radi, Rafael
Farina, Marcelo
de Bem, Andreza Fabro
author_sort Quispe, Ruth Liliám
collection PubMed
description Oxidative stress and mitochondrial dysfunction are critical events in neurodegenerative diseases; therefore, molecules that increase cellular antioxidant defenses represent a future pharmacologic strategy to counteract such conditions. The aim of this study was to investigate the potential protective effect of (PhSe)(2) on mouse hippocampal cell line (HT22) exposed to tert-BuOOH (in vitro model of oxidative stress), as well as to elucidate potential mechanisms underlying this protection. Our results showed that tert-BuOOH caused time- and concentration-dependent cytotoxicity, which was preceded by increased oxidants production and mitochondrial dysfunction. (PhSe)(2) pre-incubation significantly prevented these cytotoxic events and the observed protective effects were paralleled by the upregulation of the cellular glutathione-dependent antioxidant system: (PhSe)(2) increased GSH levels (> 60%), GPx activity (6.9-fold) and the mRNA expression of antioxidant enzymes Gpx1 (3.9-fold) and Gclc (2.3-fold). Of note, the cytoprotective effect of (PhSe)(2) was significantly decreased when cells were treated with mercaptosuccinic acid, an inhibitor of GPx, indicating the involvement of GPx modulation in the observed protective effect. In summary, the present findings bring out a new action mechanism concerning the antioxidant properties of (PhSe)(2). The observed upregulation of the glutathione-dependent antioxidant system represents a future pharmacologic possibility that goes beyond the well-known thiol-peroxidase activity of this compound.
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spelling pubmed-61766502018-10-11 Diphenyl diselenide protects neuronal cells against oxidative stress and mitochondrial dysfunction: Involvement of the glutathione-dependent antioxidant system Quispe, Ruth Liliám Jaramillo, Michael Lorenz Galant, Leticia Selinger Engel, Daiane Dafre, Alcir Luiz Teixeira da Rocha, João Batista Radi, Rafael Farina, Marcelo de Bem, Andreza Fabro Redox Biol Research Paper Oxidative stress and mitochondrial dysfunction are critical events in neurodegenerative diseases; therefore, molecules that increase cellular antioxidant defenses represent a future pharmacologic strategy to counteract such conditions. The aim of this study was to investigate the potential protective effect of (PhSe)(2) on mouse hippocampal cell line (HT22) exposed to tert-BuOOH (in vitro model of oxidative stress), as well as to elucidate potential mechanisms underlying this protection. Our results showed that tert-BuOOH caused time- and concentration-dependent cytotoxicity, which was preceded by increased oxidants production and mitochondrial dysfunction. (PhSe)(2) pre-incubation significantly prevented these cytotoxic events and the observed protective effects were paralleled by the upregulation of the cellular glutathione-dependent antioxidant system: (PhSe)(2) increased GSH levels (> 60%), GPx activity (6.9-fold) and the mRNA expression of antioxidant enzymes Gpx1 (3.9-fold) and Gclc (2.3-fold). Of note, the cytoprotective effect of (PhSe)(2) was significantly decreased when cells were treated with mercaptosuccinic acid, an inhibitor of GPx, indicating the involvement of GPx modulation in the observed protective effect. In summary, the present findings bring out a new action mechanism concerning the antioxidant properties of (PhSe)(2). The observed upregulation of the glutathione-dependent antioxidant system represents a future pharmacologic possibility that goes beyond the well-known thiol-peroxidase activity of this compound. Elsevier 2018-09-25 /pmc/articles/PMC6176650/ /pubmed/30308475 http://dx.doi.org/10.1016/j.redox.2018.09.014 Text en © 2018 The Authors http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Paper
Quispe, Ruth Liliám
Jaramillo, Michael Lorenz
Galant, Leticia Selinger
Engel, Daiane
Dafre, Alcir Luiz
Teixeira da Rocha, João Batista
Radi, Rafael
Farina, Marcelo
de Bem, Andreza Fabro
Diphenyl diselenide protects neuronal cells against oxidative stress and mitochondrial dysfunction: Involvement of the glutathione-dependent antioxidant system
title Diphenyl diselenide protects neuronal cells against oxidative stress and mitochondrial dysfunction: Involvement of the glutathione-dependent antioxidant system
title_full Diphenyl diselenide protects neuronal cells against oxidative stress and mitochondrial dysfunction: Involvement of the glutathione-dependent antioxidant system
title_fullStr Diphenyl diselenide protects neuronal cells against oxidative stress and mitochondrial dysfunction: Involvement of the glutathione-dependent antioxidant system
title_full_unstemmed Diphenyl diselenide protects neuronal cells against oxidative stress and mitochondrial dysfunction: Involvement of the glutathione-dependent antioxidant system
title_short Diphenyl diselenide protects neuronal cells against oxidative stress and mitochondrial dysfunction: Involvement of the glutathione-dependent antioxidant system
title_sort diphenyl diselenide protects neuronal cells against oxidative stress and mitochondrial dysfunction: involvement of the glutathione-dependent antioxidant system
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6176650/
https://www.ncbi.nlm.nih.gov/pubmed/30308475
http://dx.doi.org/10.1016/j.redox.2018.09.014
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