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Role of accelerated aging in limb muscle wasting of patients with COPD

PURPOSE: Skeletal muscle wasting is an independent predictor of health-related quality of life and survival in patients with COPD, but the complexity of molecular mechanisms associated with this process has not been fully elucidated. We aimed to determine whether an impaired ability to repair DNA da...

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Autores principales: Lakhdar, Ramzi, McGuinness, Dagmara, Drost, Ellen M, Shiels, Paul G, Bastos, Ricardo, MacNee, William, Rabinovich, Roberto A
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Dove Medical Press 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6022820/
https://www.ncbi.nlm.nih.gov/pubmed/29970961
http://dx.doi.org/10.2147/COPD.S155952
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author Lakhdar, Ramzi
McGuinness, Dagmara
Drost, Ellen M
Shiels, Paul G
Bastos, Ricardo
MacNee, William
Rabinovich, Roberto A
author_facet Lakhdar, Ramzi
McGuinness, Dagmara
Drost, Ellen M
Shiels, Paul G
Bastos, Ricardo
MacNee, William
Rabinovich, Roberto A
author_sort Lakhdar, Ramzi
collection PubMed
description PURPOSE: Skeletal muscle wasting is an independent predictor of health-related quality of life and survival in patients with COPD, but the complexity of molecular mechanisms associated with this process has not been fully elucidated. We aimed to determine whether an impaired ability to repair DNA damage contributes to muscle wasting and the accelerated aging phenotype in patients with COPD. PATIENTS AND METHODS: The levels of phosphorylated H2AX (γH2AX), a molecule that promotes DNA repair, were assessed in vastus lateralis biopsies from 10 COPD patients with low fat-free mass index (FFMI; COPD(L)), 10 with preserved FFMI and 10 age- and gender-matched healthy controls. A panel of selected markers for cellular aging processes (CDKN2A/p16(ink4a), SIRT1, SIRT6, and telomere length) were also assessed. Markers of oxidative stress and cell damage and a panel of pro-inflammatory and anti-inflammatory cytokines were evaluated. Markers of muscle regeneration and apoptosis were also measured. RESULTS: We observed a decrease in γH2AX expression in COPD(L), which occurred in association with a tendency to increase in CDKN2A/p16(ink4a), and a significant decrease in SIRT1 and SIRT6 protein levels. Cellular damage and muscle inflammatory markers were also increased in COPD(L). CONCLUSION: These data are in keeping with an accelerated aging phenotype as a result of impaired DNA repair and dysregulation of cellular homeostasis in the muscle of COPD(L). These data indicate cellular degeneration via stress-induced premature senescence and associated inflammatory responses abetted by the senescence-associated secretory phenotype and reflect an increased expression of markers of oxidative stress and inflammation.
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spelling pubmed-60228202018-07-03 Role of accelerated aging in limb muscle wasting of patients with COPD Lakhdar, Ramzi McGuinness, Dagmara Drost, Ellen M Shiels, Paul G Bastos, Ricardo MacNee, William Rabinovich, Roberto A Int J Chron Obstruct Pulmon Dis Original Research PURPOSE: Skeletal muscle wasting is an independent predictor of health-related quality of life and survival in patients with COPD, but the complexity of molecular mechanisms associated with this process has not been fully elucidated. We aimed to determine whether an impaired ability to repair DNA damage contributes to muscle wasting and the accelerated aging phenotype in patients with COPD. PATIENTS AND METHODS: The levels of phosphorylated H2AX (γH2AX), a molecule that promotes DNA repair, were assessed in vastus lateralis biopsies from 10 COPD patients with low fat-free mass index (FFMI; COPD(L)), 10 with preserved FFMI and 10 age- and gender-matched healthy controls. A panel of selected markers for cellular aging processes (CDKN2A/p16(ink4a), SIRT1, SIRT6, and telomere length) were also assessed. Markers of oxidative stress and cell damage and a panel of pro-inflammatory and anti-inflammatory cytokines were evaluated. Markers of muscle regeneration and apoptosis were also measured. RESULTS: We observed a decrease in γH2AX expression in COPD(L), which occurred in association with a tendency to increase in CDKN2A/p16(ink4a), and a significant decrease in SIRT1 and SIRT6 protein levels. Cellular damage and muscle inflammatory markers were also increased in COPD(L). CONCLUSION: These data are in keeping with an accelerated aging phenotype as a result of impaired DNA repair and dysregulation of cellular homeostasis in the muscle of COPD(L). These data indicate cellular degeneration via stress-induced premature senescence and associated inflammatory responses abetted by the senescence-associated secretory phenotype and reflect an increased expression of markers of oxidative stress and inflammation. Dove Medical Press 2018-06-25 /pmc/articles/PMC6022820/ /pubmed/29970961 http://dx.doi.org/10.2147/COPD.S155952 Text en © 2018 Lakhdar et al. This work is published and licensed by Dove Medical Press Limited The full terms of this license are available at https://www.dovepress.com/terms.php and incorporate the Creative Commons Attribution – Non Commercial (unported, v3.0) License (http://creativecommons.org/licenses/by-nc/3.0/). By accessing the work you hereby accept the Terms. Non-commercial uses of the work are permitted without any further permission from Dove Medical Press Limited, provided the work is properly attributed.
spellingShingle Original Research
Lakhdar, Ramzi
McGuinness, Dagmara
Drost, Ellen M
Shiels, Paul G
Bastos, Ricardo
MacNee, William
Rabinovich, Roberto A
Role of accelerated aging in limb muscle wasting of patients with COPD
title Role of accelerated aging in limb muscle wasting of patients with COPD
title_full Role of accelerated aging in limb muscle wasting of patients with COPD
title_fullStr Role of accelerated aging in limb muscle wasting of patients with COPD
title_full_unstemmed Role of accelerated aging in limb muscle wasting of patients with COPD
title_short Role of accelerated aging in limb muscle wasting of patients with COPD
title_sort role of accelerated aging in limb muscle wasting of patients with copd
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6022820/
https://www.ncbi.nlm.nih.gov/pubmed/29970961
http://dx.doi.org/10.2147/COPD.S155952
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