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Aging does not Enhance Experimental Cigarette Smoke-Induced COPD in the Mouse

It has been proposed that the development of COPD is driven by premature aging/premature senescence of lung parenchyma cells. There are data suggesting that old mice develop a greater inflammatory and lower anti-oxidant response after cigarette smoke compared to young mice, but whether these differe...

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Autores principales: Zhou, Steven, Wright, Joanne L., Liu, Joseph, Sin, Don D., Churg, Andrew
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3732225/
https://www.ncbi.nlm.nih.gov/pubmed/23936505
http://dx.doi.org/10.1371/journal.pone.0071410
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author Zhou, Steven
Wright, Joanne L.
Liu, Joseph
Sin, Don D.
Churg, Andrew
author_facet Zhou, Steven
Wright, Joanne L.
Liu, Joseph
Sin, Don D.
Churg, Andrew
author_sort Zhou, Steven
collection PubMed
description It has been proposed that the development of COPD is driven by premature aging/premature senescence of lung parenchyma cells. There are data suggesting that old mice develop a greater inflammatory and lower anti-oxidant response after cigarette smoke compared to young mice, but whether these differences actually translate into greater levels of disease is unknown. We exposed C57Bl/6 female mice to daily cigarette smoke for 6 months starting at age 3 months (Ayoung@) or age 12 months (Aold@), with air-exposed controls. There were no differences in measures of airspace size between the two control groups and cigarette smoke induced exactly the same amount of emphysema in young and old. The severity of smoke-induced small airway remodeling using various measures was identical in both groups. Smoke increased numbers of tissue macrophages and neutrophils and levels of 8-hydroxyguanosine, a marker of oxidant damage, but there were no differences between young and old. Gene expression studies using laser capture microdissected airways and parenchyma overall showed a trend to lower levels in older animals and a somewhat lesser response to cigarette smoke in both airways and parenchyma but the differences were usually not marked. Telomere length was greatest in young control mice and was decreased by both smoking and age. The senescence marker p21(Waf1) was equally upregulated by smoke in young and old, but p16(INK4a), another senescence marker, was not upregulated at all. We conclude, in this model, animal age does not affect the development of emphysema and small airway remodeling.
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spelling pubmed-37322252013-08-09 Aging does not Enhance Experimental Cigarette Smoke-Induced COPD in the Mouse Zhou, Steven Wright, Joanne L. Liu, Joseph Sin, Don D. Churg, Andrew PLoS One Research Article It has been proposed that the development of COPD is driven by premature aging/premature senescence of lung parenchyma cells. There are data suggesting that old mice develop a greater inflammatory and lower anti-oxidant response after cigarette smoke compared to young mice, but whether these differences actually translate into greater levels of disease is unknown. We exposed C57Bl/6 female mice to daily cigarette smoke for 6 months starting at age 3 months (Ayoung@) or age 12 months (Aold@), with air-exposed controls. There were no differences in measures of airspace size between the two control groups and cigarette smoke induced exactly the same amount of emphysema in young and old. The severity of smoke-induced small airway remodeling using various measures was identical in both groups. Smoke increased numbers of tissue macrophages and neutrophils and levels of 8-hydroxyguanosine, a marker of oxidant damage, but there were no differences between young and old. Gene expression studies using laser capture microdissected airways and parenchyma overall showed a trend to lower levels in older animals and a somewhat lesser response to cigarette smoke in both airways and parenchyma but the differences were usually not marked. Telomere length was greatest in young control mice and was decreased by both smoking and age. The senescence marker p21(Waf1) was equally upregulated by smoke in young and old, but p16(INK4a), another senescence marker, was not upregulated at all. We conclude, in this model, animal age does not affect the development of emphysema and small airway remodeling. Public Library of Science 2013-08-02 /pmc/articles/PMC3732225/ /pubmed/23936505 http://dx.doi.org/10.1371/journal.pone.0071410 Text en © 2013 Zhou et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Zhou, Steven
Wright, Joanne L.
Liu, Joseph
Sin, Don D.
Churg, Andrew
Aging does not Enhance Experimental Cigarette Smoke-Induced COPD in the Mouse
title Aging does not Enhance Experimental Cigarette Smoke-Induced COPD in the Mouse
title_full Aging does not Enhance Experimental Cigarette Smoke-Induced COPD in the Mouse
title_fullStr Aging does not Enhance Experimental Cigarette Smoke-Induced COPD in the Mouse
title_full_unstemmed Aging does not Enhance Experimental Cigarette Smoke-Induced COPD in the Mouse
title_short Aging does not Enhance Experimental Cigarette Smoke-Induced COPD in the Mouse
title_sort aging does not enhance experimental cigarette smoke-induced copd in the mouse
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3732225/
https://www.ncbi.nlm.nih.gov/pubmed/23936505
http://dx.doi.org/10.1371/journal.pone.0071410
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