SERPINA1 PiZ and PiS heterozygotes and lung function decline in the SAPALDIA cohort.

<h4>Background</h4>Severe alpha1-antitrypsin (AAT) deficiency is a strong risk factor for COPD. But the impact of gene variants resulting in mild or intermediate AAT deficiency on the longitudinal course of respiratory health remains controversial. There is indication from experimental s...

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Main Authors: Gian-Andri Thun, Ilaria Ferrarotti, Medea Imboden, Thierry Rochat, Margaret Gerbase, Florian Kronenberg, Pierre-Olivier Bridevaux, Elisabeth Zemp, Michele Zorzetto, Stefania Ottaviani, Erich W Russi, Maurizio Luisetti, Nicole M Probst-Hensch
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2012-01-01
Series:PLoS ONE
Online Access:https://www.ncbi.nlm.nih.gov/pmc/articles/pmid/22912729/pdf/?tool=EBI
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spelling doaj-8a8db7f7e3fa49bfa3d0094019fde0c52021-03-04T00:26:11ZengPublic Library of Science (PLoS)PLoS ONE1932-62032012-01-0178e4272810.1371/journal.pone.0042728SERPINA1 PiZ and PiS heterozygotes and lung function decline in the SAPALDIA cohort.Gian-Andri ThunIlaria FerrarottiMedea ImbodenThierry RochatMargaret GerbaseFlorian KronenbergPierre-Olivier BridevauxElisabeth ZempMichele ZorzettoStefania OttavianiErich W RussiMaurizio LuisettiNicole M Probst-Hensch<h4>Background</h4>Severe alpha1-antitrypsin (AAT) deficiency is a strong risk factor for COPD. But the impact of gene variants resulting in mild or intermediate AAT deficiency on the longitudinal course of respiratory health remains controversial. There is indication from experimental studies that pro-inflammatory agents like cigarette smoke can interact with these variants and thus increase the risk of adverse respiratory health effects. Therefore, we tested the effect of the presence of a protease inhibitor (Pi) S or Z allele (PiMS and PiMZ) on the change in lung function in different inflammation-exposed subgroups of a large, population-based cohort study.<h4>Methodology and principal findings</h4>The SAPALDIA population includes over 4600 subjects from whom SERPINA1 genotypes for S and Z alleles, spirometry and respiratory symptoms at baseline and after 11 years follow-up, as well as proxies for inflammatory conditions, such as detailed smoking history, obesity and high sensitivity C-reactive protein (hs-CRP), were available. All analyses were performed by applying multivariate regression models. There was no overall unfavourable effect of PiMS or PiMZ genotype on lung function change. We found indication that PiZ heterozygosity interacted with inflammatory stimuli leading to an accelerated decline in measures in use as indices for assessing mild airway obstruction. Obese individuals with genotype PiMM had an average annual decline in the forced mid expiratory flow (ΔFEF25-75%) of 58.4 ml whereas in obese individuals with PiMZ it amounted to 92.2 ml (p = 0.03). Corresponding numbers for persistent smokers differed even more strongly (66.8 ml (PiMM) vs. 108.2 ml (PiMZ), p = 0.005). Equivalent, but less strong associations were observed for the change in the FEV1/FVC ratio.<h4>Conclusions</h4>We suggest that, in addition to the well established impact of the rare PiZZ genotype, one Z allele may be sufficient to accelerate lung function decline in population subgroups characterized by elevated levels of low grade inflammation.https://www.ncbi.nlm.nih.gov/pmc/articles/pmid/22912729/pdf/?tool=EBI
collection DOAJ
language English
format Article
sources DOAJ
author Gian-Andri Thun
Ilaria Ferrarotti
Medea Imboden
Thierry Rochat
Margaret Gerbase
Florian Kronenberg
Pierre-Olivier Bridevaux
Elisabeth Zemp
Michele Zorzetto
Stefania Ottaviani
Erich W Russi
Maurizio Luisetti
Nicole M Probst-Hensch
spellingShingle Gian-Andri Thun
Ilaria Ferrarotti
Medea Imboden
Thierry Rochat
Margaret Gerbase
Florian Kronenberg
Pierre-Olivier Bridevaux
Elisabeth Zemp
Michele Zorzetto
Stefania Ottaviani
Erich W Russi
Maurizio Luisetti
Nicole M Probst-Hensch
SERPINA1 PiZ and PiS heterozygotes and lung function decline in the SAPALDIA cohort.
PLoS ONE
author_facet Gian-Andri Thun
Ilaria Ferrarotti
Medea Imboden
Thierry Rochat
Margaret Gerbase
Florian Kronenberg
Pierre-Olivier Bridevaux
Elisabeth Zemp
Michele Zorzetto
Stefania Ottaviani
Erich W Russi
Maurizio Luisetti
Nicole M Probst-Hensch
author_sort Gian-Andri Thun
title SERPINA1 PiZ and PiS heterozygotes and lung function decline in the SAPALDIA cohort.
title_short SERPINA1 PiZ and PiS heterozygotes and lung function decline in the SAPALDIA cohort.
title_full SERPINA1 PiZ and PiS heterozygotes and lung function decline in the SAPALDIA cohort.
title_fullStr SERPINA1 PiZ and PiS heterozygotes and lung function decline in the SAPALDIA cohort.
title_full_unstemmed SERPINA1 PiZ and PiS heterozygotes and lung function decline in the SAPALDIA cohort.
title_sort serpina1 piz and pis heterozygotes and lung function decline in the sapaldia cohort.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2012-01-01
description <h4>Background</h4>Severe alpha1-antitrypsin (AAT) deficiency is a strong risk factor for COPD. But the impact of gene variants resulting in mild or intermediate AAT deficiency on the longitudinal course of respiratory health remains controversial. There is indication from experimental studies that pro-inflammatory agents like cigarette smoke can interact with these variants and thus increase the risk of adverse respiratory health effects. Therefore, we tested the effect of the presence of a protease inhibitor (Pi) S or Z allele (PiMS and PiMZ) on the change in lung function in different inflammation-exposed subgroups of a large, population-based cohort study.<h4>Methodology and principal findings</h4>The SAPALDIA population includes over 4600 subjects from whom SERPINA1 genotypes for S and Z alleles, spirometry and respiratory symptoms at baseline and after 11 years follow-up, as well as proxies for inflammatory conditions, such as detailed smoking history, obesity and high sensitivity C-reactive protein (hs-CRP), were available. All analyses were performed by applying multivariate regression models. There was no overall unfavourable effect of PiMS or PiMZ genotype on lung function change. We found indication that PiZ heterozygosity interacted with inflammatory stimuli leading to an accelerated decline in measures in use as indices for assessing mild airway obstruction. Obese individuals with genotype PiMM had an average annual decline in the forced mid expiratory flow (ΔFEF25-75%) of 58.4 ml whereas in obese individuals with PiMZ it amounted to 92.2 ml (p = 0.03). Corresponding numbers for persistent smokers differed even more strongly (66.8 ml (PiMM) vs. 108.2 ml (PiMZ), p = 0.005). Equivalent, but less strong associations were observed for the change in the FEV1/FVC ratio.<h4>Conclusions</h4>We suggest that, in addition to the well established impact of the rare PiZZ genotype, one Z allele may be sufficient to accelerate lung function decline in population subgroups characterized by elevated levels of low grade inflammation.
url https://www.ncbi.nlm.nih.gov/pmc/articles/pmid/22912729/pdf/?tool=EBI
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