Long-term exposure to ambient air pollution and asthma symptom score in the CONSTANCES cohort

医学 哮喘 队列 逻辑回归 优势比 人口学 队列研究 人口 内科学 环境卫生 社会学
作者
Marion Keirsbulck,Marine Savouré,Émeline Lequy,Jie Chen,Kees de Hoogh,Danielle Vienneau,Marcel Goldberg,Marie Zins,Nicolás Roche,Rachel Nadif,Bénédicte Jacquemin
出处
期刊:Thorax [BMJ]
卷期号:78 (1): 9-15 被引量:8
标识
DOI:10.1136/thoraxjnl-2021-218344
摘要

Background The asthma symptom score allows to consider asthma as a continuum and to investigate its risk factors. One previous study has investigated the association between asthma score and air pollution and only for nitrogen dioxide (NO 2 ). We aimed to study the associations between particulate matter with an aerodynamic diameter lower than 2.5 µm (PM 2.5 ), black carbon (BC) and NO 2 and the asthma symptom score in adults from CONSTANCES, a French population-based cohort. Methods Asthma symptom score (range: 0–5) was based on the number of five self-reported symptoms of asthma in the last 12 months. Annual individual exposure to PM 2.5 , BC and NO 2 was estimated at participants’ residential address using hybrid land-use regression models. Cross-sectional associations of each pollutant with asthma symptom score were estimated using negative binomial regressions adjusted for age, sex, smoking status and socioeconomic position. Associations with each symptom were estimated using logistic regression. The effect of BC independent of total PM 2.5 was investigated with a residual model. Results Analyses were conducted on 135 165 participants (mean age: 47.2 years, 53.3% women, 19.0% smokers, 13.5% ever asthma). The ratio of mean score was 1.12 (95% CI 1.10 to 1.14), 1.14 (95% CI 1.12 to 1.16) and 1.12 (95% CI 1.10 to 1.14) per one IQR increase of PM 2.5 (4.86 µg/m 3 ), BC (0.88 10 −5 m −1 ) and NO 2 (17.3 µg/m 3 ). Positive and significant associations were also found for each asthma symptom separately. BC effect persisted independently of total PM 2.5 . Conclusion Exposure to each pollutant was associated with increased asthma symptom score in adults. This study highlights that BC could be one of the most harmful particulate matter components.
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