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Impact of Mixture Effects between Emerging Organic Contaminants on Cytotoxicity: A Systems Biological Understanding of Synergism between Tris(1,3-dichloro-2-propyl)phosphate and Triphenyl Phosphate

机译:新兴有机污染物对细胞毒性的影响:一种系统生物学理解TRIS(1,3-二氯-2-丙基)磷酸盐和三苯基磷酸盐之间的协同作用

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摘要

Humans are exposed to many xenobiotics simultaneously, but little is known about the toxic effects based on chemical-chemical interactions. This study aims at evaluating the binary interactions between 13 common environmental organic compounds (resulting in 78 pairs) by observing their cytotoxicity on HepG2 cells. Among all of the tested pairs, the combination of flame-retardant triphenyl phosphate (TPP) and tris(1,3-dichloro-2-propyl)phosphate (TDCPP) exhibited one of the most significant synergistic effects. We further characterized the transcriptome and metabolome after combined exposure to TPP and TDCPP and individual exposure. The results suggested that the coexposure caused many more changes in gene expressions and cellular activities. The transcriptome data showed that the coexposure triggered significant pathway changes including "cholesterol biosynthesis" and "ATF6-Alpha activated chaperone genes", together with distinct gene ontology (GO) terms such as the "negative regulation of the ERK1 and ERK2 cascade". Additionally, coexposure enhanced the biological activity of liver X receptors and nuclear factor erythroid 2-related factor 2 (Nrf2). The metabolome data showed that coexposure significantly elevated oxidative stress and affected the purine and pyrimidine metabolism. Overall, this study showed that interactions, which may enhance or suppress the biological processes, are common among environmental chemicals, although their environmental relevance should be studied in the future.
机译:人类同时暴露于许多仇食,但对基于化学化学相互作用的毒性效应很少。本研究旨在通过在HepG2细胞上观察它们的细胞毒性来评估13种常见环境有机化合物(导致78对)之间的二元相互作用。在所有测试对中,阻燃三苯基磷酸(TPP)和Tris(1,3-二氯-2-丙基)磷酸盐(TDCPP)的组合表现出最显着的协同效应之一。我们进一步表征了在接触TPP和TDCPP和单独接触后的转录组和代谢物。结果表明,椰子掩盖引起基因表达和细胞活性的更多变化。转录组数据显示群胶质触发的显着途径变化,包括“胆固醇生物合成”和“ATF6-α活化的伴侣基因”,以及不同的基因本体(GO)术语,例如“ERK1和ERK2级联的负调节”。另外,群胶质增强了肝X受体的生物活性和核因子红外2相关因子2(NRF2)。代谢物数据显示,群胶质显着升高氧化应激并影响嘌呤和嘧啶代谢。总体而言,该研究表明,相互作用,可增强或抑制生物过程,虽然应在未来研究其环境相关性。

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  • 来源
    《Environmental Science & Technology》 |2020年第17期|10722-10734|共13页
  • 作者单位

    School of Civil and Environmental Engineering and Nanvang Environment & Water Research Institute Nanyang Technological University Singapore 639798;

    School of Civil and Environmental Engineering and Nanyang Environment & Water Research Institute Nanyang Technological University Singapore 639798;

    School of Civil and Environmental Engineering and Nanyang Environment & Water Research Institute Nanyang Technological University Singapore 639798;

    School of Civil and Environmental Engineering and Nanyang Environment & Water Research Institute Nanyang Technological University Singapore 639798;

    Nanyang Environment & Water Research Institute Nanyang Technological University Singapore 63714;

    Nanyang Environment & Water Research Institute Nanyang Technological University Singapore 63714;

    School of Biological Sciences Nanyang Technological University Singapore 637551;

    School of Biological Sciences and Lee Kong Chian School of Medicine Nanyang Technological University Singapore 63 7551;

    Faculty of Chemistry Department of Food Chemistry and Toxicology University of Vienna 1090 Vienna Austria;

    School of Environment Jinan University Guangzhou Guangdong 51144 P. R. China;

    School of Civil and Environmental Engineering Nanyang Environment & Water Research Institute and Lee Kong Chian School of Medicine Nanyang Technological University Singapore 639798;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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