Long-term exposure to primary traffic pollutants and lung function in children: cross-sectional study and meta-analysis
Author(s)
Type
Journal Article
Abstract
Background
There is widespread concern about the possible health effects of traffic-related air pollution. Nitrogen dioxide (NO2) is a convenient marker of primary pollution. We investigated the associations between lung function and current residential exposure to a range of air pollutants (particularly NO2, NO, NOx and particulate matter) in London children. Moreover, we placed the results for NO2 in context with a meta-analysis of published estimates of the association.
Methods and Findings
Associations between primary traffic pollutants and lung function were investigated in 4884 children aged 9–10 years who participated in the Child Heart and Health Study in England (CHASE). A systematic literature search identified 13 studies eligible for inclusion in a meta-analysis. We combined results from the meta-analysis with the distribution of the values of FEV1 in CHASE to estimate the prevalence of children with abnormal lung function (FEV1<80% of predicted value) expected under different scenarios of NO2 exposure. In CHASE, there were non-significant inverse associations between all pollutants except ozone and both FEV1 and FVC. In the meta-analysis, a 10 μg/m3 increase in NO2 was associated with an 8 ml lower FEV1 (95% CI: -14 to -1 ml; p: 0.016). The observed effect was not modified by a reported asthma diagnosis. On the basis of these results, a 10 μg/m3 increase in NO2 level would translate into a 7% (95% CI: 4% to 12%) increase of the prevalence of children with abnormal lung function.
Conclusions
Exposure to traffic pollution may cause a small overall reduction in lung function and increase the prevalence of children with clinically relevant declines in lung function.
There is widespread concern about the possible health effects of traffic-related air pollution. Nitrogen dioxide (NO2) is a convenient marker of primary pollution. We investigated the associations between lung function and current residential exposure to a range of air pollutants (particularly NO2, NO, NOx and particulate matter) in London children. Moreover, we placed the results for NO2 in context with a meta-analysis of published estimates of the association.
Methods and Findings
Associations between primary traffic pollutants and lung function were investigated in 4884 children aged 9–10 years who participated in the Child Heart and Health Study in England (CHASE). A systematic literature search identified 13 studies eligible for inclusion in a meta-analysis. We combined results from the meta-analysis with the distribution of the values of FEV1 in CHASE to estimate the prevalence of children with abnormal lung function (FEV1<80% of predicted value) expected under different scenarios of NO2 exposure. In CHASE, there were non-significant inverse associations between all pollutants except ozone and both FEV1 and FVC. In the meta-analysis, a 10 μg/m3 increase in NO2 was associated with an 8 ml lower FEV1 (95% CI: -14 to -1 ml; p: 0.016). The observed effect was not modified by a reported asthma diagnosis. On the basis of these results, a 10 μg/m3 increase in NO2 level would translate into a 7% (95% CI: 4% to 12%) increase of the prevalence of children with abnormal lung function.
Conclusions
Exposure to traffic pollution may cause a small overall reduction in lung function and increase the prevalence of children with clinically relevant declines in lung function.
Date Issued
2015-11-30
Date Acceptance
2015-10-25
Citation
PLoS One, 2015, 10 (11), pp.1-16
ISSN
1932-6203
Publisher
Public Library of Science (PLoS)
Start Page
1
End Page
16
Journal / Book Title
PLoS One
Volume
10
Issue
11
Copyright Statement
© 2015 Barone-Adesi et al. 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 credited
License URL
Sponsor
Medical Research Council (MRC)
Identifier
https://www.ncbi.nlm.nih.gov/pubmed/26619227
Grant Number
MR/L01341X/1
Subjects
Air Pollution Asthma/*epidemiology Child Female Humans Inhalation Exposure/*adverse effects/statistics & numerical data Male Nitrogen Dioxide/toxicity Particulate Matter/toxicity *Pulmonary Ventilation Vehicle Emissions/*toxicity "N1 - Barone-Adesi, Francesco" "Dent, Jennifer E" "Dajnak, David" "Beevers, Sean" "Anderson, H Ross" "Kelly, Frank J" "Cook, Derek G" "Whincup, Peter H" eng MR/L01341X/1/Medical Research Council/United Kingdom 068362/Z/02/Z/Wellcome Trust/United Kingdom Department of Health/United Kingdom Meta-Analysis "Research Support, Non-U.S. Gov't" PLoS One. 2015 Nov 30;10(11):e0142565. doi: 10.1371/journal.pone.0142565. eCollection 2015.
Publication Status
Published
Date Publish Online
2015-11-30