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Outdoor air pollution exposure and cognitive performance: findings from the enrolment phase of the CONSTANCES cohort

口语流利性测试 认知 队列 四分位间距 人口 睡眠剥夺对认知功能的影响 环境卫生 多级模型 认知测验 心理学 人口学 医学 统计 神经心理学 精神科 数学 内科学 社会学
作者
Mohammad Javad Zare Sakhvidi,Jun Yang,Émeline Lequy,Jie Chen,Kees de Hoogh,Noémie Letellier,Marion Mortamais,Anna Ozguler,Danielle Vienneau,Marie Zins,Marcel Goldberg,Claudine Berr,Bénédicte Jacquemin
出处
期刊:The Lancet Planetary Health [Elsevier]
卷期号:6 (3): e219-e229 被引量:36
标识
DOI:10.1016/s2542-5196(22)00001-8
摘要

BackgroundAir pollution exposure is one of the modifiable risk factors of cognitive decline. We aimed to test the association between exposure to several outdoor air pollutants and domain-specific cognitive performance.MethodsIn this cross-sectional study, we used data from the enrolment phase of the French CONSTANCES cohort. From the 220 000 people (aged 18–69 years) randomly recruited in the French CONSTANCES cohort, participants aged 45 years old or older (104 733 people) underwent a comprehensive cognitive assessment (verbal episodic memory, language skills, and executive functions). After exclusion of those who were not suitable for our analysis, 61 462 participants with available data were included in the analyses. We used annual mean concentrations at residential addresses, derived from land-use regression models, to assign exposure to particulate matter with aerodynamic diameters less than 2·5 μm (PM2·5), nitrogen dioxide (NO2), and black carbon. We used multiple linear regression models with different covariate adjustments to test the associations between each pollutant and cognitive outcomes. We did several sensitivity analyses, including multilevel modelling, meta-analysis by centre of recruitment, and exclusion of specific population groups.FindingsWe found significantly poorer cognitive function, especially on semantic fluency and domains of executive functions, with an increase in exposure to black carbon and NO2. Exposure to PM2·5 was mainly significant for the semantic fluency test. We found that decrease in cognitive performance with an increase of one interquartile range of exposure ranged from 1% to nearly 5%. The largest effect size (percentage decrease) for both PM2.5 and NO2 was found for the semantic fluency test (PM2.5 4·6%, 95% CI 2·1–6·9 and NO2 3·8%, 1·9–5·7), whereas for black carbon, the largest effect size was found for the digit symbol substitution test of the domains of executive functions (4·5%, 2·7–6·3). Monotonic and linear exposure–response associations were found between air pollution exposure and cognitive performance, starting from a low level of exposures.InterpretationSignificantly poorer cognitive performance was associated with exposure to outdoor air pollution even at low levels of exposure. This highlights the importance of further efforts to reduce exposure to air pollution.FundingThe Caisse Nationale d’Assurance Maladie, and partly funded by Merck Sharp & Dohme and L’Oréal, the French National Research Agency, and Fondation de France.TranslationFor the French translation of the abstract see Supplementary Materials section.
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