Long-term exposure to ultrafine particles and natural and cause-specific mortality

Publication date

2023-05

Authors

Bouma, FemkeISNI 0000000512509661
Janssen, Nicole A. H.
Wesseling, Joost
van Ratingen, Sjoerd
Strak, MaciejISNI 0000000396217476
Kerckhoffs, JulesORCID 0000-0001-9065-6916ISNI 0000000492497930
Gehring, UlrikeORCID 0000-0003-3612-5780ISNI 0000000097926870
Hendricx, Wouter
de Hoogh, Kees
Vermeulen, RoelORCID 0000-0003-4082-8163ISNI 0000000396780074

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Document Type

Article
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cc_by

Abstract

BACKGROUND: Health implications of long-term exposure to ubiquitously present ultrafine particles (UFP) are uncertain. The aim of this study was to investigate the associations between long-term UFP exposure and natural and cause-specific mortality (including cardiovascular disease (CVD), respiratory disease, and lung cancer) in the Netherlands. METHODS: A Dutch national cohort of 10.8 million adults aged ≥ 30 years was followed from 2013 until 2019. Annual average UFP concentrations were estimated at the home address at baseline, using land-use regression models based on a nationwide mobile monitoring campaign performed at the midpoint of the follow-up period. Cox proportional hazard models were applied, adjusting for individual and area-level socio-economic status covariates. Two-pollutant models with the major regulated pollutants nitrogen dioxide (NO 2) and fine particles (PM 2 . 5 and PM 10), and the health relevant combustion aerosol pollutant (elemental carbon (EC)) were assessed based on dispersion modelling. RESULTS: A total of 945,615 natural deaths occurred during 71,008,209 person-years of follow-up. The correlation of UFP concentration with other pollutants ranged from moderate (0.59 (PM 2 . 5)) to high (0.81 (NO 2)). We found a significant association between annual average UFP exposure and natural mortality [HR 1.012 (95 % CI 1.010-1.015), per interquartile range (IQR) (2723 particles/cm 3) increment]. Associations were stronger for respiratory disease mortality [HR 1.022 (1.013-1.032)] and lung cancer mortality [HR 1.038 (1.028-1.048)] and weaker for CVD mortality [HR 1.005 (1.000-1.011)]. The associations of UFP with natural and lung cancer mortality attenuated but remained significant in all two-pollutant models, whereas the associations with CVD and respiratory mortality attenuated to the null. CONCLUSION: Long-term UFP exposure was associated with natural and lung cancer mortality among adults independently from other regulated air pollutants.

Keywords

Ultrafine particles, Mortality, National cohort, Air pollution, Two-pollutant models, SDG 3 - Good Health and Well-being, SDG 15 - Life on Land

Citation

Bouma, F, Janssen, N A, Wesseling, J, van Ratingen, S, Strak, M, Kerckhoffs, J, Gehring, U, Hendricx, W, de Hoogh, K, Vermeulen, R & Hoek, G 2023, 'Long-term exposure to ultrafine particles and natural and cause-specific mortality', Environment international, vol. 175, 107960. https://doi.org/10.1016/j.envint.2023.107960