Epigenome-wide association study of household air pollution exposure in an area with high lung cancer incidence

Publication date

2025-04-04

Authors

Rahman, Mohammad L
Portengen, LützenORCID 0000-0003-1537-1843ISNI 0000000393055002
Blechter, Batel
Breeze, Charles E
Wong, Jason Y Y
Hu, Wei
Downward, GeorgeISNI 0000000505992966
Zhang, YongliangORCID 0000-0002-9479-9911ISNI 0000000512671175
Cardenas, Andres
Ning, Bou

Editors

Advisors

Supervisors

Document Type

/dk/atira/pure/researchoutput/researchoutputtypes/workingpaper/preprint
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License

cc_public_domain

Abstract

BACKGROUND: Lung cancer incidence among never-smoking women in Xuanwei, China, ranks among the highest worldwide and is largely attributed to household air pollution (HAP) from smoky (bituminous) coal combustion, with early-life exposures possibly playing a critical role. We conducted an epigenome-wide DNA methylation (DNAm) analysis across multiple exposure windows to elucidate molecular mechanisms. METHODS: Leukocyte DNAm was measured in 106 never-smoking women (23 with repeated measurements). Fuel use was obtained through questionnaires, and extensive personal and environmental monitoring was conducted. Validated exposure models estimated 43 HAP constituents, primarily polycyclic aromatic hydrocarbons (PAHs), across childhood, current, and cumulative exposure windows. Hierarchical clustering derived exposure clusters. We used generalized estimating equations to identify CpG sites associated with HAP exposure and PAH clusters, including 5-methylchrysene, a methylated PAH previously linked to lung cancer. RESULTS: We identified several differentially methylated CpG sites, predominantly hypomethylated with HAP exposure. Although some DNAm signatures overlapping with smoking (cg05575921; AHRR ) were observed, most changes were distinct. A life-course assessment indicated persistent epigenetic variations across childhood and cumulative exposures, suggesting that early-life exposures may have lasting effects at certain sites ( SLC43A2 ). Within the PAH clusters, 5-methylchrysene appears to be a significant contributor to DNAm variations. Top CpG sites were linked to immune regulation, cell growth and proliferation, and molecular mechanisms of cancer, including lung cancer. CONCLUSIONS: Our findings provide novel insights into HAP-induced DNAm changes and their potential health effects. Future studies with larger sample sizes, and diverse coal use settings are needed to validate and extend these findings.

Keywords

SDG 3 - Good Health and Well-being

Citation

Rahman, M L, Portengen, L, Blechter, B, Breeze, C E, Wong, J Y Y, Hu, W, Downward, G S, Zhang, Y, Cardenas, A, Ning, B, Li, J, Yang, K, Hosgood, H D, Silverman, D T, Rothman, N, Huang, Y, Vermeulen, R & Lan, Q 2025 'Epigenome-wide association study of household air pollution exposure in an area with high lung cancer incidence' medRxiv : the preprint server for health sciences, medRxiv. https://doi.org/10.1101/2025.04.03.25325041