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Multiple Bioassays and Targeted and Nontargeted Analyses to Characterize Potential Toxicological Effects Associated with Sediments of Masan Bay: Focusing on AhR-Mediated Potency

机译:多种生物测定以及针对性和非针对性的分析来表征与马山湾沉积物相关的潜在毒理学效应:专注于AhR介导的效能

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摘要

An enhanced, multiple lines of evidence approach was applied to assess potential toxicological effects associated with polluted sediments. Two in vitro bioassays (H4I1E-luc and Vibrio fischeri) and three in vivo bioassays (microalgae: Isochrysis galbana and Phaeodactylum tricornutum; zebrafish embryo: Danio rerio) were applied. To identify causative chemicals in samples, targeted analyses (polycyclic aromatic hydrocarbons (PAHs), styrene oligomers (SOs), and alkylphenols) and nontargeted full-scan screening analyses (FSA; GC- and LC-QTOFMS) were performed. First, great AhR-mediated potencies were observed in midpolar and polar fractions of sediment extracts, but known and previously characterized AhR agonists, including PAHs and SOs could not fully explain the total potencies of samples. Enoxolone was identified as a novel AhR agonist in a highly potent sediment fraction by use of FSA. Enoxolone has a relative potency of 0.13 compared to benzo[a]pyrene (1.0) in the H4IIE-luc bioassay. Nonylphenols associated with membrane damage that influenced the viability of the microalgae were also observed. Finally, inhibitions of bioluminescence of V. fischeri and lethality of D. rerio embryos were strongly related to nonpolar compounds. Overall, the present work addressed assay- and end point-specific variations and sensitivities for potential toxicities of mixture samples, warranting a significant utility of the "multiple lines of evidence" approach in ecological risk assessment.
机译:应用了增强的多证据方法来评估与受污染沉积物相关的潜在毒理作用。应用了两种体外生物测定法(H4I1E-luc和费氏弧菌)和三种体内生物测定法(微藻类:等鞭金藻(Isochrysis galbana)和Phaeodyylumlum tricornutum;斑马鱼胚胎:Danio rerio)。为了鉴定样品中的致病化学物质,进行了目标分析(多环芳烃(PAH),苯乙烯低聚物(SO)和烷基酚)和非目标全扫描筛查分析(FSA; GC-和LC-QTOFMS)。首先,在沉积物提取物的中极性和极性级分中观察到了很大的AhR介导的电势,但是已知的和先前表征的AhR激动剂,包括PAH和SOs不能完全解释样品的总电势。通过使用FSA,在高效沉淀物中,依诺洛酮被鉴定为新型AhR激动剂。在H4IIE-luc生物测定中,与苯并[a] py(1.0)相比,依诺洛酮的相对效价为0.13。还观察到与膜破坏相关的壬基酚影响了微藻的生存能力。最后,抑制费氏弧菌的生物发光和雷氏梭状芽孢杆菌的致死性与非极性化合物密切相关。总的来说,目前的工作针对混合物样品潜在毒性的测定和终点特定变化和敏感性,保证了“多证据”方法在生态风险评估中的重要效用。

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  • 来源
    《Environmental Science & Technology》 |2020年第7期|4443-4454|共12页
  • 作者单位

    School of Earth and Environmental Sciences & Research Institute of Oceanography Seoul National University Seoul 08826 Republic of Korea;

    Department of Ocean Environmental Sciences Chungnam National University Daejeon 34134 Republic of Korea;

    Department of Marine Biotechnology Kunsan National University Kunsan 54150 Republic of Korea;

    Department of Marine Science and Convergence Engineering Hanyang University Ansan 15588 Republic of Korea;

    Department of Marine Science and Convergence Engineering Hanyang University Ansan 15588 Republic of Korea;

    Department of Veterinary Biomedical Sciences & Toxicology Centre University of Saskatchewan Saskatoon Saskatchewan S7N 5B4 Canada Department of Environmental Sciences Baylor University Waco Texas 76706 United States Department of Zoology and Center for Integrative Toxicology Michigan State University East Lansing Michigan 48824 United States;

  • 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);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-18 05:27:33

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