Epigenome-wide association studies of occupational exposure to benzene and formaldehyde.

Epigenetics(2022)

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摘要
Sufficient evidence supports a relationship between certain myeloid neoplasms and exposure to benzene or formaldehyde. DNA methylation could underlie benzene- and formaldehyde-induced health outcomes, but data in exposed human populations are limited. We conducted two cross-sectional epigenome-wide association studies (EWAS), one in workers exposed to benzene and another in workers exposed to formaldehyde. Using HumanMethylation450 BeadChips, we investigated differences in blood cell DNA methylation among 50 benzene-exposed subjects and 48 controls, and among 31 formaldehyde-exposed subjects and 40 controls. We performed CpG-level and regional-level analyses. In the benzene EWAS, we found genome-wide significant alterations, i.e., FWER-controlled -values <0.05, in the mean and variance of methylation at 22 and 318 CpG sites, respectively, and in mean methylation of a large genomic region. Pathway analysis of genes corresponding to benzene-associated differential methylation sites revealed an impact on the AMPK signalling pathway. In formaldehyde-exposed subjects compared to controls, 9 CpGs in the gene promoter had genome-wide significant decreased methylation variability and a large region of the promoter with 44 CpGs was hypomethylated. Our findings suggest that DNA methylation may contribute to the pathogenesis of diseases related to benzene and formaldehyde exposure. Aberrant expression and methylation of previously has been shown to be clinically significant in myeloid leukaemias. The tumour suppressor gene is a potential biomarker of exposure to formaldehyde, and irregularities have been associated with multiple exposures and diseases.
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关键词
Benzene,DNA methylation,epigenetics,epigenome-wide association study (EWAS),formaldehyde,human,leukaemia,occupational exposure
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