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Nitrogen Dioxide Inhalation Exposures Induce Cardiac Mitochondrial Reactive Oxygen Species Production, Impair Mitochondrial Function and Promote Coronary Endothelial Dysfunction

Traffic air pollution is a major health problem and is recognized as an important risk factor for cardiovascular (CV) diseases. In a previous experimental study, we showed that diesel exhaust (DE) exposures induced cardiac mitochondrial and CV dysfunctions associated with the gaseous phase. Here, we...

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Autores principales: Karoui, Ahmed, Crochemore, Clément, Harouki, Najah, Corbière, Cécile, Preterre, David, Vendeville, Cathy, Richard, Vincent, Fardel, Olivier, Lecureur, Valérie, Vaugeois, Jean-Marie, Sichel, François, Mulder, Paul, Monteil, Christelle
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7432061/
https://www.ncbi.nlm.nih.gov/pubmed/32751709
http://dx.doi.org/10.3390/ijerph17155526
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author Karoui, Ahmed
Crochemore, Clément
Harouki, Najah
Corbière, Cécile
Preterre, David
Vendeville, Cathy
Richard, Vincent
Fardel, Olivier
Lecureur, Valérie
Vaugeois, Jean-Marie
Sichel, François
Mulder, Paul
Monteil, Christelle
author_facet Karoui, Ahmed
Crochemore, Clément
Harouki, Najah
Corbière, Cécile
Preterre, David
Vendeville, Cathy
Richard, Vincent
Fardel, Olivier
Lecureur, Valérie
Vaugeois, Jean-Marie
Sichel, François
Mulder, Paul
Monteil, Christelle
author_sort Karoui, Ahmed
collection PubMed
description Traffic air pollution is a major health problem and is recognized as an important risk factor for cardiovascular (CV) diseases. In a previous experimental study, we showed that diesel exhaust (DE) exposures induced cardiac mitochondrial and CV dysfunctions associated with the gaseous phase. Here, we hypothesized that NO(2) exposures to levels close to those found in DE induce a mitochondrial reactive oxygen species (ROS) production, which contribute to an endothelial dysfunction, an early indicator for numerous CV diseases. For this, we studied the effects of NO(2) on ROS production and its impacts on the mitochondrial, coronary endothelial and cardiac functions, after acute (one single exposure) and repeated (three h/day, five days/week for three weeks) exposures in Wistar rats. Acute NO(2) exposure induced an early but reversible mitochondrial ROS production. This event was isolated since neither mitochondrial function nor endothelial function were impaired, whereas cardiac function assessment showed a reversible left ventricular dysfunction. Conversely, after three weeks of exposure this alteration was accompanied by a cardiac mitochondrial dysfunction highlighted by an alteration of adenosine triphosphate (ATP) synthesis and oxidative phosphorylation and an increase in mitochondrial ROS production. Moreover, repeated NO(2) exposures promoted endothelial dysfunction of the coronary arteries, as shown by reduced acetylcholine-induced vasodilatation, which was due, at least partially, to a superoxide-dependent decrease of nitric oxide (NO) bioavailability. This study shows that NO(2) exposures impair cardiac mitochondrial function, which, in conjunction with coronary endothelial dysfunction, contributes to cardiac dysfunction. Together, these results clearly identify NO(2) as a probable risk factor in ischemic heart diseases.
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spelling pubmed-74320612020-08-24 Nitrogen Dioxide Inhalation Exposures Induce Cardiac Mitochondrial Reactive Oxygen Species Production, Impair Mitochondrial Function and Promote Coronary Endothelial Dysfunction Karoui, Ahmed Crochemore, Clément Harouki, Najah Corbière, Cécile Preterre, David Vendeville, Cathy Richard, Vincent Fardel, Olivier Lecureur, Valérie Vaugeois, Jean-Marie Sichel, François Mulder, Paul Monteil, Christelle Int J Environ Res Public Health Article Traffic air pollution is a major health problem and is recognized as an important risk factor for cardiovascular (CV) diseases. In a previous experimental study, we showed that diesel exhaust (DE) exposures induced cardiac mitochondrial and CV dysfunctions associated with the gaseous phase. Here, we hypothesized that NO(2) exposures to levels close to those found in DE induce a mitochondrial reactive oxygen species (ROS) production, which contribute to an endothelial dysfunction, an early indicator for numerous CV diseases. For this, we studied the effects of NO(2) on ROS production and its impacts on the mitochondrial, coronary endothelial and cardiac functions, after acute (one single exposure) and repeated (three h/day, five days/week for three weeks) exposures in Wistar rats. Acute NO(2) exposure induced an early but reversible mitochondrial ROS production. This event was isolated since neither mitochondrial function nor endothelial function were impaired, whereas cardiac function assessment showed a reversible left ventricular dysfunction. Conversely, after three weeks of exposure this alteration was accompanied by a cardiac mitochondrial dysfunction highlighted by an alteration of adenosine triphosphate (ATP) synthesis and oxidative phosphorylation and an increase in mitochondrial ROS production. Moreover, repeated NO(2) exposures promoted endothelial dysfunction of the coronary arteries, as shown by reduced acetylcholine-induced vasodilatation, which was due, at least partially, to a superoxide-dependent decrease of nitric oxide (NO) bioavailability. This study shows that NO(2) exposures impair cardiac mitochondrial function, which, in conjunction with coronary endothelial dysfunction, contributes to cardiac dysfunction. Together, these results clearly identify NO(2) as a probable risk factor in ischemic heart diseases. MDPI 2020-07-30 2020-08 /pmc/articles/PMC7432061/ /pubmed/32751709 http://dx.doi.org/10.3390/ijerph17155526 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Karoui, Ahmed
Crochemore, Clément
Harouki, Najah
Corbière, Cécile
Preterre, David
Vendeville, Cathy
Richard, Vincent
Fardel, Olivier
Lecureur, Valérie
Vaugeois, Jean-Marie
Sichel, François
Mulder, Paul
Monteil, Christelle
Nitrogen Dioxide Inhalation Exposures Induce Cardiac Mitochondrial Reactive Oxygen Species Production, Impair Mitochondrial Function and Promote Coronary Endothelial Dysfunction
title Nitrogen Dioxide Inhalation Exposures Induce Cardiac Mitochondrial Reactive Oxygen Species Production, Impair Mitochondrial Function and Promote Coronary Endothelial Dysfunction
title_full Nitrogen Dioxide Inhalation Exposures Induce Cardiac Mitochondrial Reactive Oxygen Species Production, Impair Mitochondrial Function and Promote Coronary Endothelial Dysfunction
title_fullStr Nitrogen Dioxide Inhalation Exposures Induce Cardiac Mitochondrial Reactive Oxygen Species Production, Impair Mitochondrial Function and Promote Coronary Endothelial Dysfunction
title_full_unstemmed Nitrogen Dioxide Inhalation Exposures Induce Cardiac Mitochondrial Reactive Oxygen Species Production, Impair Mitochondrial Function and Promote Coronary Endothelial Dysfunction
title_short Nitrogen Dioxide Inhalation Exposures Induce Cardiac Mitochondrial Reactive Oxygen Species Production, Impair Mitochondrial Function and Promote Coronary Endothelial Dysfunction
title_sort nitrogen dioxide inhalation exposures induce cardiac mitochondrial reactive oxygen species production, impair mitochondrial function and promote coronary endothelial dysfunction
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7432061/
https://www.ncbi.nlm.nih.gov/pubmed/32751709
http://dx.doi.org/10.3390/ijerph17155526
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