Exposure to per- and polyfluoroalkyl substances and alterations in plasma microRNA profiles in children

Per- and polyfluoroalkyl substances (PFAS) are synthetic chemicals that persist in the environment and can accumulate in humans, leading to adverse health effects. MicroRNAs (miRNAs) are emerging biomarkers that can advance the understanding of the mechanisms of PFAS effects on human health. However...

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Veröffentlicht in:Environmental research 2024-10, Vol.259, p.119496, Article 119496
Hauptverfasser: Li, Yijie, Baumert, Brittney O., Stratakis, Nikos, Goodrich, Jesse A., Wu, Haotian, Liu, Shelley H., Wang, Hongxu, Beglarian, Emily, Bartell, Scott M., Eckel, Sandrah Proctor, Walker, Douglas, Valvi, Damaskini, La Merrill, Michele Andrea, Inge, Thomas H., Jenkins, Todd, Ryder, Justin R., Sisley, Stephanie, Kohli, Rohit, Xanthakos, Stavra A., Vafeiadi, Marina, Margetaki, Aikaterini, Roumeliotaki, Theano, Aung, Max, McConnell, Rob, Baccarelli, Andrea, Conti, David, Chatzi, Lida
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Sprache:eng
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Zusammenfassung:Per- and polyfluoroalkyl substances (PFAS) are synthetic chemicals that persist in the environment and can accumulate in humans, leading to adverse health effects. MicroRNAs (miRNAs) are emerging biomarkers that can advance the understanding of the mechanisms of PFAS effects on human health. However, little is known about the associations between PFAS exposures and miRNA alterations in humans. To investigate associations between PFAS concentrations and miRNA levels in children. Data from two distinct cohorts were utilized: 176 participants (average age 17.1 years; 75.6% female) from the Teen-Longitudinal Assessment of Bariatric Surgery (Teen-LABS) cohort in the United States, and 64 participants (average age 6.5 years, 39.1% female) from the Rhea study, a mother-child cohort in Greece. PFAS concentrations and miRNA levels were assessed in plasma samples from both studies. Associations between individual PFAS and plasma miRNA levels were examined after adjusting for covariates. Additionally, the cumulative effects of PFAS mixtures were evaluated using an exposure burden score. Ingenuity Pathways Analysis was employed to identify potential disease functions of PFAS-associated miRNAs. Plasma PFAS concentrations were associated with alterations in 475 miRNAs in the Teen-LABs study and 5 miRNAs in the Rhea study (FDR p 
ISSN:0013-9351
1096-0953
1096-0953
DOI:10.1016/j.envres.2024.119496