Gestational Perfluoroalkyl Substance Exposure and DNA Methylation at Birth and 12 Years of Age: A Longitudinal Epigenome-Wide Association Study

妊娠期全氟烷基物质暴露与出生及 12 岁时 DNA 甲基化:一项纵向表观基因组关联研究

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作者:Yun Liu, Melissa N Eliot, George D Papandonatos, Karl T Kelsey, Ruby Fore, Scott Langevin, Jessie Buckley, Aimin Chen, Bruce P Lanphear, Kim M Cecil, Kimberly Yolton, Marie-France Hivert, Sharon K Sagiv, Andrea A Baccarelli, Emily Oken, Joseph M Braun

Background

DNA methylation alterations may underlie associations between gestational perfluoroalkyl substances (PFAS) exposure and later-life health outcomes. To the best of our knowledge, no longitudinal studies have examined the associations between gestational PFAS and DNA methylation. Objectives: We examined associations of gestational PFAS exposure with longitudinal DNA methylation measures at birth and in adolescence using the Health Outcomes and Measures of the Environment (HOME) Study (2003-2006; Cincinnati, Ohio).

Discussion

In these longitudinal data, PFAS biomarkers were associated with differences in several CpGs at birth and at 12 years of age in or near genes linked to some PFAS-associated health outcomes. Future studies should examine whether DNA methylation mediates associations between gestational PFAS exposure and health. https://doi.org/10.1289/EHP10118.

Methods

We quantified serum concentrations of perfluorooctanoate (PFOA), perfluorooctane sulfonate (PFOS), perfluorononanoate (PFNA), and perfluorohexane sulfonate (PFHxS) in mothers during pregnancy. We measured DNA methylation in cord blood (n=266<math><mrow><mi>n</mi><mo>=</mo><mn>266</mn></mrow></math>) and peripheral leukocytes at 12 years of age (n=160<math><mrow><mi>n</mi><mo>=</mo><mn>160</mn></mrow></math>) using the Illumina HumanMethylation EPIC BeadChip. We analyzed associations between log2-transformed<math><mrow><msub><mrow><mi>log</mi></mrow><mrow><mn>2</mn></mrow></msub><mtext>-transformed</mtext></mrow></math> PFAS concentrations and repeated DNA methylation measures using linear regression with generalized estimating equations. We included interaction terms between children's age and gestational PFAS. We performed Gene Ontology enrichment analysis to identify molecular pathways. We used Project Viva (1999-2002; Boston, Massachusetts) to replicate significant associations.

Results

After adjusting for covariates, 435 cytosine-guanine dinucleotide (CpG) sites were associated with PFAS (false discovery rate, q<0.05<math><mrow><mi>q</mi><mo><</mo><mn>0.05</mn></mrow></math>). Specifically, we identified 2 CpGs for PFOS, 12 for PFOA, 8 for PFHxS, and 413 for PFNA; none overlapped. Among these, 2 CpGs for PFOA and 4 for PFNA were replicated in Project Viva. Some of the PFAS-associated CpG sites annotated to gene regions related to cancers, cognitive health, cardiovascular disease, and kidney function. We found little evidence that the associations between PFAS and DNA methylation differed by children's age.

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