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Metal mixtures and DNA methylation measures of biological aging in American Indian populations

K. M. Boyer, Arce Domingo‐Relloso, Enoch Jiang, Karin Haack, Walter Goessler, Ying Zhang, Jason G. Umans, Daniel W. Belsky, Shelley A. Cole, Ana Navas‐Acién, Allison Kupsco

Environment International · 2023 · ▲ 40 citations

Abstract

INTRODUCTION: Native American communities suffer disproportionately from elevated metal exposures and increased risk for cardiovascular diseases and diabetes. DNA methylation is a sensitive biomarker of aging-related processes and novel epigenetic-based "clocks" can be used to estimate accelerated biological aging that may underlie increased risk. Metals alter DNA methylation, yet little is known about their individual and combined impact on epigenetic age acceleration. Our objective was to investigate the associations of metals on several DNA methylation-based aging measures in the Strong Heart Study (SHS) cohort. METHODS: Blood DNA methylation data from 2,301 SHS participants was used to calculate age acceleration of epigenetic clocks (PhenoAge, GrimAge, DunedinPACE, Hannum, Horvath). Urinary metals [arsenic (As), cadmium (Cd), tungsten (W), zinc (Zn), selenium (Se), molybdenum (Mo)] were creatinine-adjusted and categorized into quartiles. We examined associations of individual metals through linear regression models and used Bayesian Kernel Machine Regression (BKMR) for the impact of the total metal mixture on epigenetic age acceleration. RESULTS: The mixture of nonessential metals (W, As, Cd) was associated with greater GrimAge acceleration and DunedinPACE, while the essential metal mixture (Se, Zn, Mo) was associated with lower epigenetic age acceleration. Cd was associated with increased epigenetic age acceleration across all clocks and BKMR analysis suggested nonlinear associations between Se and DunedinPACE, GrimAge, and PhenoAge acceleration. No interactions between individual metals were observed. The associations between Cd, Zn, and epigenetic age acceleration were greater in never smokers in comparison to current/former smokers. CONCLUSION: Nonessential metals were positively associated with greater epigenetic age acceleration, with strongest associations observed between Cd and DunedinPACE and GrimAge acceleration. In contrast, essential metals were associated with lower epigenetic aging. Examining the influence of metal mixtures on epigenetic age acceleration can provide insight into metals and aging-related diseases.

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OpenAlex
DOI
10.1016/j.envint.2023.108064
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2026-07-22 MST

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APA
Boyer, K.M., Domingo‐Relloso, A., Jiang, E., Haack, K., Goessler, W., Zhang, Y., Umans, J.G., Belsky, D.W., Cole, S.A., Navas‐Acién, A., &amp; Kupsco, A. (2023). Metal mixtures and DNA methylation measures of biological aging in American Indian populations. <em>Environment International</em>. https://doi.org/10.1016/j.envint.2023.108064
Vancouver
Boyer KM, Domingo‐Relloso A, Jiang E, Haack K, Goessler W, Zhang Y, et al. Metal mixtures and DNA methylation measures of biological aging in American Indian populations. Environment International. 2023. doi:10.1016/j.envint.2023.108064.
BibTeX
@article{k2023Metalm, title = {Metal mixtures and DNA methylation measures of biological aging in American Indian populations}, author = {K. M. Boyer and Arce Domingo‐Relloso and Enoch Jiang and Karin Haack and Walter Goessler and Ying Zhang and Jason G. Umans and Daniel W. Belsky and Shelley A. Cole and Ana Navas‐Acién and Allison Kupsco}, journal = {Environment International}, year = {2023}, doi = {10.1016/j.envint.2023.108064}, }

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