4.8 Article

DNA hypomethylation and its mediation in the effects of fine particulate air pollution on cardiovascular biomarkers: A randomized crossover trial

期刊

ENVIRONMENT INTERNATIONAL
卷 94, 期 -, 页码 614-619

出版社

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.envint.2016.06.026

关键词

Air pollution; Fine particulate matter; DNA methylation; Cardiovascular biomarker; Randomized controlled trial; Mediation

资金

  1. National Health and Family Planning Commission of China [201502003, 201402022]
  2. National Natural Science Foundation of China [81502775]
  3. China Medical Board Collaborating Program [13-152]
  4. Shanghai 3-Year Public Health Action Plan [GWTD2015S04]

向作者/读者索取更多资源

Background: Short-term exposure to fine particulate matter (PM2.5) air pollution has been associated with altered DNA methylation in observational studies, but it remains uncleir whether this change mediates the effects on cardiovascular biomarkers. Objective: To examine the impact of ambient PM2.5 on gene-specific DNA methylation and its potential mediation in the acute effects of PM2.5 on cardiovascular biomarkers. Methods: We designed a randomized, double-blind crossover trial using true or sham air purifiers for 48 h among 35 healthy college students in Shanghai, China, in 2014. We measured blood global methylation estimated in long interspersed nucleotide element-1 (LINE 1) and Alu repetitive elements, methylation in ten specific genes, and ten cardiovascular biomarkers. We used linear mixed-effect models to examine the associations between PM2.5 and methylation. We also performed causal mediation analyses to evaluate the potential mediation of methylation in the associations between PM2.5 and biomarkers. Results: Air purification increased DNA methylation in repetitive elements and all candidate genes. An IQR increase (64 mu g/m(3)) in PM2.5 was significantly associated with reduction of methylation in LINE-1 (1.44%), one pro -inflammatory gene (CD40LG, 9.13%), two pro-coagulant genes (F3, 15.20%; SERPINEI, 3.69%), and two pro vasoconstriction genes (ACE, 4.64%; EDN1, 9.74%). There was a significant mediated effect (17.82%, P = 0.03) of PM2.5 on sCD40L protein through CD40LG hypomethylation. Hypomethylation in other candidate genes generally showed positive but non-significant mediation. Conclusions: This intervention study provided robust human evidence that ambient PM2.5 could induce rapid decreases in DNA methylation and consequently partly mediate its effects on cardiovascular biomarkers. (C) 2016 Elsevier Ltd. All rights reserved.

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