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Associations between metal exposure and global DNA methylation in potentially affected people in E-Waste recycling sites in Taizhou City, China

机译:中国泰州市电子垃圾回收场中潜在受影响人群的金属暴露与全球DNA甲基化之间的关联

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摘要

Electronic waste (e-waste) has been an emerging environmental health issue, and it has already provoked all aspects of attention. Taizhou is one of the three largest e-waste recycling locations in China. At present, to prevent the environmental problems stem from e-waste dismantling, the local government has shut down all the industries in 2015. In this study, we collected blood samples of residents living near e-waste dismantling factories, and in matched reference areas in Taizhou, in December 2017, after the factories have been shut down for two years. Twenty-five metals were quantified in all blood samples. Among them, the concentrations of As, Ni, Ag, La, and Ce were statistically significant higher in individuals in e-waste recycling locations than those in reference location. Global DNA methylation was measured in blood as a marker of human health. Pearson correlation and multiple linear regression analysis between the changed metals and global DNA methylation in blood were performed. The result showed that only blood Ce was negatively correlated with global DNA methylation level significantly in pre-workers exposed e-waste workers (r = -0.51, p = 0.01). Our findings indicated that high concentrations of exposure to Ce in e-waste dismantling site could have sustained effects on the DNA methylation in blood although the e-waste industry had been closed for 2 years.
机译:电子废物(电子废物)已经成为一个新兴的环境健康问题,并且已经引起了各个方面的关注。台州是中国三大电子垃圾回收基地之一。目前,为防止因电子废物拆解而引起的环境问题,当地政府已于2015年关闭了所有行业。在本研究中,我们收集了生活在电子废物拆解厂附近以及相关参考地区的居民的血液样本。在工厂关闭两年后,2017年12月在台州。在所有血液样本中定量了25种金属。其中,在电子废物回收地点的个体中,As,Ni,Ag,La和Ce的浓度在统计学上显着高于参考地点。血液中的整体DNA甲基化被测量为人类健康的标志。进行了皮尔逊相关性和血液中金属和总体DNA甲基化之间的多元线性回归分析。结果表明,只有血液铈与暴露于电子废物工作前的工作人员中的总体DNA甲基化水平呈显着负相关(r = -0.51,p = 0.01)。我们的研究结果表明,尽管电子废物行业已经关闭了2年,但在电子废物分解场所中高浓度的Ce暴露可能会对血液中的DNA甲基化产生持续影响。

著录项

  • 来源
    《The Science of the Total Environment》 |2020年第1期|135100.1-135100.7|共7页
  • 作者

  • 作者单位

    State Key Laboratory of Environmental Criteria and Risk Assessment Chinese Research Academy of Environmental Sciences Beijing 100012 China;

    State Key Laboratory of Environmental Criteria and Risk Assessment Chinese Research Academy of Environmental Sciences Beijing 100012 China Center for Global Health School of Public Health Nanjing Medical University China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    E-waste; Metal; DNA methylation; Blood; Cerium;

    机译:电子垃圾金属;DNA甲基化;血液;铈;
  • 入库时间 2022-08-18 05:20:16

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