Long-term air pollution exposure and lung function in 15 year-old adolescents living in an urban and rural area in Germany: The GINIplus and LISAplus cohorts
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Supporting information
Author(s)
Type
Journal Article
Abstract
Introduction
The impact of outdoor air pollution exposure on long-term lung development and potential periods of increased lung susceptibility remain unknown. This study assessed associations between early-life and current residential exposure to air pollution and lung function at 15-years of age in two German birth cohorts.
Methods
Fifteen year-old participants living in an urban and rural area in Germany underwent spirometry before and after bronchodilation (N = 2266). Annual average (long-term) exposure to nitrogen dioxide (NO2), particles with aerodynamic diameters less than 2.5 μg/m3 (PM2.5) mass and less than 10 μg/m3 (PM10) mass, PM2.5 absorbance and ozone were estimated to each participant's birth-, 10- and 15-year home address using land-use regression and kriging (ozone only) modelling. Associations between lung function variables and long-term pollutant concentrations were assessed using linear regression models adjusted for host and environmental covariates and recent short-term air pollution exposures.
Results
Long-term air pollution concentrations assessed to the birth-, 10- and 15-year home addresses were not associated with lung function variables, before and after bronchodilation, in the complete or study area specific populations. However, several lung function variables were negatively associated with long-term NO2 concentrations among asthmatics. For example, NO2 estimated to the 15-year home address was associated with the ratio of forced expiratory volume in one second to forced vital capacity (FEV1/FVC) and the mean flow rate between 25% and 75% of FVC (−3.5%, 95% confidence interval [−6.0, −1.0] and −297.4 ml/s [−592.6, −2.1] per 5.9 μg/m3 increase in NO2, respectively). Nearly all effect estimates for the associations between the short-term PM2.5 mass, PM10 mass and ozone concentrations and the lung function variables were negative in the complete population.
Conclusions
Early-life and current long-term air pollution exposures and lung function at the age of 15 years were not associated in the complete study population. Asthmatics may represent a vulnerable group.
The impact of outdoor air pollution exposure on long-term lung development and potential periods of increased lung susceptibility remain unknown. This study assessed associations between early-life and current residential exposure to air pollution and lung function at 15-years of age in two German birth cohorts.
Methods
Fifteen year-old participants living in an urban and rural area in Germany underwent spirometry before and after bronchodilation (N = 2266). Annual average (long-term) exposure to nitrogen dioxide (NO2), particles with aerodynamic diameters less than 2.5 μg/m3 (PM2.5) mass and less than 10 μg/m3 (PM10) mass, PM2.5 absorbance and ozone were estimated to each participant's birth-, 10- and 15-year home address using land-use regression and kriging (ozone only) modelling. Associations between lung function variables and long-term pollutant concentrations were assessed using linear regression models adjusted for host and environmental covariates and recent short-term air pollution exposures.
Results
Long-term air pollution concentrations assessed to the birth-, 10- and 15-year home addresses were not associated with lung function variables, before and after bronchodilation, in the complete or study area specific populations. However, several lung function variables were negatively associated with long-term NO2 concentrations among asthmatics. For example, NO2 estimated to the 15-year home address was associated with the ratio of forced expiratory volume in one second to forced vital capacity (FEV1/FVC) and the mean flow rate between 25% and 75% of FVC (−3.5%, 95% confidence interval [−6.0, −1.0] and −297.4 ml/s [−592.6, −2.1] per 5.9 μg/m3 increase in NO2, respectively). Nearly all effect estimates for the associations between the short-term PM2.5 mass, PM10 mass and ozone concentrations and the lung function variables were negative in the complete population.
Conclusions
Early-life and current long-term air pollution exposures and lung function at the age of 15 years were not associated in the complete study population. Asthmatics may represent a vulnerable group.
Date Issued
2015-10-01
Date Acceptance
2015-07-12
Citation
INTERNATIONAL JOURNAL OF HYGIENE AND ENVIRONMENTAL HEALTH, 2015, 218 (7), pp.656-665
ISSN
1438-4639
Publisher
ELSEVIER GMBH, URBAN & FISCHER VERLAG
Start Page
656
End Page
665
Journal / Book Title
INTERNATIONAL JOURNAL OF HYGIENE AND ENVIRONMENTAL HEALTH
Volume
218
Issue
7
Copyright Statement
© 2015 Elsevier GmbH. All rights reserved. This manuscript is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International http://creativecommons.org/licenses/by-nc-nd/4.0/
Identifier
http://gateway.webofknowledge.com/gateway/Gateway.cgi?GWVersion=2&SrcApp=PARTNER_APP&SrcAuth=LinksAMR&KeyUT=WOS:000375731300008&DestLinkType=FullRecord&DestApp=ALL_WOS&UsrCustomerID=1ba7043ffcc86c417c072aa74d649202
Subjects
Science & Technology
Life Sciences & Biomedicine
Public, Environmental & Occupational Health
Infectious Diseases
Air pollution
Asthma
Birth cohort
FEV1
FVC
Lung function
USE REGRESSION-MODELS
BIRTH COHORT
ESCAPE PROJECT
CHILDREN
AGE
ASSOCIATION
ASTHMA
NO2
SPIROMETRY
STABILITY
Publication Status
Published
Date Publish Online
2015-07-17