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Nitro-Oxidative Stress after Neuronal Ischemia Induces Protein Nitrotyrosination and Cell Death

Ischemic stroke is an acute vascular event that obstructs blood supply to the brain, producing irreversible damage that affects neurons but also glial and brain vessel cells. Immediately after the stroke, the ischemic tissue produces nitric oxide (NO) to recover blood perfusion but also produces sup...

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Autores principales: Tajes, Marta, ILL-Raga, Gerard, Palomer, Ernest, Ramos-Fernández, Eva, Guix, Francesc X., Bosch-Morató, Mònica, Guivernau, Biuse, Jiménez-Conde, Jordi, Ois, Angel, Pérez-Asensio, Fernando, Reyes-Navarro, Mario, Caballo, Carolina, Galán, Ana M., Alameda, Francesc, Escolar, Ginés, Opazo, Carlos, Planas, Anna, Roquer, Jaume, Valverde, Miguel A., Muñoz, Francisco J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi Publishing Corporation 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3747381/
https://www.ncbi.nlm.nih.gov/pubmed/23983901
http://dx.doi.org/10.1155/2013/826143
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author Tajes, Marta
ILL-Raga, Gerard
Palomer, Ernest
Ramos-Fernández, Eva
Guix, Francesc X.
Bosch-Morató, Mònica
Guivernau, Biuse
Jiménez-Conde, Jordi
Ois, Angel
Pérez-Asensio, Fernando
Reyes-Navarro, Mario
Caballo, Carolina
Galán, Ana M.
Alameda, Francesc
Escolar, Ginés
Opazo, Carlos
Planas, Anna
Roquer, Jaume
Valverde, Miguel A.
Muñoz, Francisco J.
author_facet Tajes, Marta
ILL-Raga, Gerard
Palomer, Ernest
Ramos-Fernández, Eva
Guix, Francesc X.
Bosch-Morató, Mònica
Guivernau, Biuse
Jiménez-Conde, Jordi
Ois, Angel
Pérez-Asensio, Fernando
Reyes-Navarro, Mario
Caballo, Carolina
Galán, Ana M.
Alameda, Francesc
Escolar, Ginés
Opazo, Carlos
Planas, Anna
Roquer, Jaume
Valverde, Miguel A.
Muñoz, Francisco J.
author_sort Tajes, Marta
collection PubMed
description Ischemic stroke is an acute vascular event that obstructs blood supply to the brain, producing irreversible damage that affects neurons but also glial and brain vessel cells. Immediately after the stroke, the ischemic tissue produces nitric oxide (NO) to recover blood perfusion but also produces superoxide anion. These compounds interact, producing peroxynitrite, which irreversibly nitrates protein tyrosines. The present study measured NO production in a human neuroblastoma (SH-SY5Y), a murine glial (BV2), a human endothelial cell line (HUVEC), and in primary cultures of human cerebral myocytes (HC-VSMCs) after experimental ischemia in vitro. Neuronal, endothelial, and inducible NO synthase (NOS) expression was also studied up to 24 h after ischemia, showing a different time course depending on the NOS type and the cells studied. Finally, we carried out cell viability experiments on SH-SY5Y cells with H(2)O(2), a prooxidant agent, and with a NO donor to mimic ischemic conditions. We found that both compounds were highly toxic when they interacted, producing peroxynitrite. We obtained similar results when all cells were challenged with peroxynitrite. Our data suggest that peroxynitrite induces cell death and is a very harmful agent in brain ischemia.
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spelling pubmed-37473812013-08-27 Nitro-Oxidative Stress after Neuronal Ischemia Induces Protein Nitrotyrosination and Cell Death Tajes, Marta ILL-Raga, Gerard Palomer, Ernest Ramos-Fernández, Eva Guix, Francesc X. Bosch-Morató, Mònica Guivernau, Biuse Jiménez-Conde, Jordi Ois, Angel Pérez-Asensio, Fernando Reyes-Navarro, Mario Caballo, Carolina Galán, Ana M. Alameda, Francesc Escolar, Ginés Opazo, Carlos Planas, Anna Roquer, Jaume Valverde, Miguel A. Muñoz, Francisco J. Oxid Med Cell Longev Research Article Ischemic stroke is an acute vascular event that obstructs blood supply to the brain, producing irreversible damage that affects neurons but also glial and brain vessel cells. Immediately after the stroke, the ischemic tissue produces nitric oxide (NO) to recover blood perfusion but also produces superoxide anion. These compounds interact, producing peroxynitrite, which irreversibly nitrates protein tyrosines. The present study measured NO production in a human neuroblastoma (SH-SY5Y), a murine glial (BV2), a human endothelial cell line (HUVEC), and in primary cultures of human cerebral myocytes (HC-VSMCs) after experimental ischemia in vitro. Neuronal, endothelial, and inducible NO synthase (NOS) expression was also studied up to 24 h after ischemia, showing a different time course depending on the NOS type and the cells studied. Finally, we carried out cell viability experiments on SH-SY5Y cells with H(2)O(2), a prooxidant agent, and with a NO donor to mimic ischemic conditions. We found that both compounds were highly toxic when they interacted, producing peroxynitrite. We obtained similar results when all cells were challenged with peroxynitrite. Our data suggest that peroxynitrite induces cell death and is a very harmful agent in brain ischemia. Hindawi Publishing Corporation 2013 2013-08-01 /pmc/articles/PMC3747381/ /pubmed/23983901 http://dx.doi.org/10.1155/2013/826143 Text en Copyright © 2013 Marta Tajes et al. https://creativecommons.org/licenses/by/3.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Tajes, Marta
ILL-Raga, Gerard
Palomer, Ernest
Ramos-Fernández, Eva
Guix, Francesc X.
Bosch-Morató, Mònica
Guivernau, Biuse
Jiménez-Conde, Jordi
Ois, Angel
Pérez-Asensio, Fernando
Reyes-Navarro, Mario
Caballo, Carolina
Galán, Ana M.
Alameda, Francesc
Escolar, Ginés
Opazo, Carlos
Planas, Anna
Roquer, Jaume
Valverde, Miguel A.
Muñoz, Francisco J.
Nitro-Oxidative Stress after Neuronal Ischemia Induces Protein Nitrotyrosination and Cell Death
title Nitro-Oxidative Stress after Neuronal Ischemia Induces Protein Nitrotyrosination and Cell Death
title_full Nitro-Oxidative Stress after Neuronal Ischemia Induces Protein Nitrotyrosination and Cell Death
title_fullStr Nitro-Oxidative Stress after Neuronal Ischemia Induces Protein Nitrotyrosination and Cell Death
title_full_unstemmed Nitro-Oxidative Stress after Neuronal Ischemia Induces Protein Nitrotyrosination and Cell Death
title_short Nitro-Oxidative Stress after Neuronal Ischemia Induces Protein Nitrotyrosination and Cell Death
title_sort nitro-oxidative stress after neuronal ischemia induces protein nitrotyrosination and cell death
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3747381/
https://www.ncbi.nlm.nih.gov/pubmed/23983901
http://dx.doi.org/10.1155/2013/826143
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