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Nonmuscle Myosin Light Chain Kinase: A Key Player in Intermittent Hypoxia‐Induced Vascular Alterations

BACKGROUND: Obstructive sleep apnea is characterized by repetitive pharyngeal collapses during sleep, leading to intermittent hypoxia (IH), the main contributor of obstructive sleep apnea–related cardiovascular morbidity. In patients and rodents with obstructive sleep apnea exposed to IH, vascular i...

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Autores principales: Arnaud, Claire, Bouyon, Sophie, Recoquillon, Sylvain, Brasseur, Sandrine, Lemarié, Emeline, Briançon‐Marjollet, Anne, Gonthier, Brigitte, Toral, Marta, Faury, Gilles, Martinez, M. Carmen, Andriantsitohaina, Ramaroson, Pepin, Jean‐Louis
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5850262/
https://www.ncbi.nlm.nih.gov/pubmed/29371201
http://dx.doi.org/10.1161/JAHA.117.007893
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author Arnaud, Claire
Bouyon, Sophie
Recoquillon, Sylvain
Brasseur, Sandrine
Lemarié, Emeline
Briançon‐Marjollet, Anne
Gonthier, Brigitte
Toral, Marta
Faury, Gilles
Martinez, M. Carmen
Andriantsitohaina, Ramaroson
Pepin, Jean‐Louis
author_facet Arnaud, Claire
Bouyon, Sophie
Recoquillon, Sylvain
Brasseur, Sandrine
Lemarié, Emeline
Briançon‐Marjollet, Anne
Gonthier, Brigitte
Toral, Marta
Faury, Gilles
Martinez, M. Carmen
Andriantsitohaina, Ramaroson
Pepin, Jean‐Louis
author_sort Arnaud, Claire
collection PubMed
description BACKGROUND: Obstructive sleep apnea is characterized by repetitive pharyngeal collapses during sleep, leading to intermittent hypoxia (IH), the main contributor of obstructive sleep apnea–related cardiovascular morbidity. In patients and rodents with obstructive sleep apnea exposed to IH, vascular inflammation and remodeling, endothelial dysfunction, and circulating inflammatory markers are linked with IH severity. The nonmuscle myosin light chain kinase (nmMLCK) isoform contributes to vascular inflammation and oxidative stress in different cardiovascular and inflammatory diseases. Thus, in the present study, we hypothesized that nmMLCK plays a key role in the IH‐induced vascular dysfunctions and inflammatory remodeling. METHODS AND RESULTS: Twelve‐week‐old nmMLCK (+/+) or nmMLCK (−/−) mice were exposed to 14‐day IH or normoxia. IH was associated with functional alterations characterized by an elevation of arterial blood pressure and stiffness and perturbations of NO signaling. IH caused endothelial barrier dysfunction (ie, reduced transendothelial resistance in vitro) and induced vascular oxidative stress associated with an inflammatory remodeling, characterized by an increased intima‐media thickness and an increased expression and activity of inflammatory markers, such as interferon‐γ and nuclear factor‐κB, in the vascular wall. Interestingly, nmMLCK deletion prevented all IH‐induced functional and structural alterations, including the restoration of NO signaling, correction of endothelial barrier integrity, and reduction of both oxidative stress and associated inflammatory response. CONCLUSIONS: nmMLCK is a key mechanism in IH‐induced vascular oxidative stress and inflammation and both functional and structural remodeling.
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spelling pubmed-58502622018-03-21 Nonmuscle Myosin Light Chain Kinase: A Key Player in Intermittent Hypoxia‐Induced Vascular Alterations Arnaud, Claire Bouyon, Sophie Recoquillon, Sylvain Brasseur, Sandrine Lemarié, Emeline Briançon‐Marjollet, Anne Gonthier, Brigitte Toral, Marta Faury, Gilles Martinez, M. Carmen Andriantsitohaina, Ramaroson Pepin, Jean‐Louis J Am Heart Assoc Original Research BACKGROUND: Obstructive sleep apnea is characterized by repetitive pharyngeal collapses during sleep, leading to intermittent hypoxia (IH), the main contributor of obstructive sleep apnea–related cardiovascular morbidity. In patients and rodents with obstructive sleep apnea exposed to IH, vascular inflammation and remodeling, endothelial dysfunction, and circulating inflammatory markers are linked with IH severity. The nonmuscle myosin light chain kinase (nmMLCK) isoform contributes to vascular inflammation and oxidative stress in different cardiovascular and inflammatory diseases. Thus, in the present study, we hypothesized that nmMLCK plays a key role in the IH‐induced vascular dysfunctions and inflammatory remodeling. METHODS AND RESULTS: Twelve‐week‐old nmMLCK (+/+) or nmMLCK (−/−) mice were exposed to 14‐day IH or normoxia. IH was associated with functional alterations characterized by an elevation of arterial blood pressure and stiffness and perturbations of NO signaling. IH caused endothelial barrier dysfunction (ie, reduced transendothelial resistance in vitro) and induced vascular oxidative stress associated with an inflammatory remodeling, characterized by an increased intima‐media thickness and an increased expression and activity of inflammatory markers, such as interferon‐γ and nuclear factor‐κB, in the vascular wall. Interestingly, nmMLCK deletion prevented all IH‐induced functional and structural alterations, including the restoration of NO signaling, correction of endothelial barrier integrity, and reduction of both oxidative stress and associated inflammatory response. CONCLUSIONS: nmMLCK is a key mechanism in IH‐induced vascular oxidative stress and inflammation and both functional and structural remodeling. John Wiley and Sons Inc. 2018-01-25 /pmc/articles/PMC5850262/ /pubmed/29371201 http://dx.doi.org/10.1161/JAHA.117.007893 Text en © 2018 The Authors. Published on behalf of the American Heart Association, Inc., by Wiley. This is an open access article under the terms of the Creative Commons Attribution‐NonCommercial (http://creativecommons.org/licenses/by-nc/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited and is not used for commercial purposes.
spellingShingle Original Research
Arnaud, Claire
Bouyon, Sophie
Recoquillon, Sylvain
Brasseur, Sandrine
Lemarié, Emeline
Briançon‐Marjollet, Anne
Gonthier, Brigitte
Toral, Marta
Faury, Gilles
Martinez, M. Carmen
Andriantsitohaina, Ramaroson
Pepin, Jean‐Louis
Nonmuscle Myosin Light Chain Kinase: A Key Player in Intermittent Hypoxia‐Induced Vascular Alterations
title Nonmuscle Myosin Light Chain Kinase: A Key Player in Intermittent Hypoxia‐Induced Vascular Alterations
title_full Nonmuscle Myosin Light Chain Kinase: A Key Player in Intermittent Hypoxia‐Induced Vascular Alterations
title_fullStr Nonmuscle Myosin Light Chain Kinase: A Key Player in Intermittent Hypoxia‐Induced Vascular Alterations
title_full_unstemmed Nonmuscle Myosin Light Chain Kinase: A Key Player in Intermittent Hypoxia‐Induced Vascular Alterations
title_short Nonmuscle Myosin Light Chain Kinase: A Key Player in Intermittent Hypoxia‐Induced Vascular Alterations
title_sort nonmuscle myosin light chain kinase: a key player in intermittent hypoxia‐induced vascular alterations
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5850262/
https://www.ncbi.nlm.nih.gov/pubmed/29371201
http://dx.doi.org/10.1161/JAHA.117.007893
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