Scholay

学术搜索 · AI 审稿 · LaTeX 协作

Epigenetic aging biomarkers and occupational exposure to benzene, trichloroethylene and formaldehyde

作者:Lars van der Laan, Andrés Cárdenas, Roel Vermeulen, Raj P. Fadadu, Alan Hubbard, Rachael V. Phillips, Luoping Zhang, Charles E. Breeze, Wei Hu, Cuiju Wen, Yongshun Huang, Xiaojiang Tang, Martyn T. Smith, Nathaniel Rothman, Qing Lan · 发表于:Environment International · 年份:2021 · DOI:10.1016/j.envint.2021.106871 · 被引用次数:58 · 研究领域:Epigenetics and DNA Methylation、Health, Environment, Cognitive Aging、Air Quality and Health Impacts

Epigenetic aging biomarkers are associated with increased morbidity and mortality. We evaluated if occupational exposure to three established chemical carcinogens is associated with acceleration of epigenetic aging. We studied workers in China occupationally exposed to benzene, trichloroethylene (TCE) or formaldehyde by measuring personal air exposures prior to blood collection. Unexposed controls matched by age and sex were selected from nearby factories. We measured leukocyte DNA methylation (DNAm) in peripheral white blood cells using the Infinium HumanMethylation450 BeadChip to calculate five epigenetic aging clocks and DNAmTL, a biomarker associated with leukocyte telomere length and cell replication. We tested associations between exposure intensity and epigenetic age acceleration (EAA), defined as the residuals of regressing the DNAm aging biomarker on chronological age, matching factors and potential confounders. Median differences in EAA between exposure groups were tested using a permutation test with exact p-values. Epigenetic clocks were strongly correlated with age (Spearman r > 0.8) in all three occupational studies. There was a positive exposure-response relationship between benzene and the Skin-Blood Clock EAA biomarker: median EAA was −0.91 years in controls (n = 44), 0.78 years in workers exposed to <10 ppm (n = 41; mean benzene = 1.35 ppm; p = 0.034 vs. controls), and 2.10 years in workers exposed to ≥10 ppm (n = 9; mean benzene = 27.3 ppm; p = 0.019 vs. co...