Department of Marine Environmental Science, Chungnam National University, Daejeon 34134, Republic of Korea.
School of Earth and Environmental Sciences, Research Institute of Oceanography, Seoul National University, Seoul 08826, Republic of Korea.
Sci Total Environ. 2022 Jan 10;803:149969. doi: 10.1016/j.scitotenv.2021.149969. Epub 2021 Aug 28.
In this study, we identified major aryl hydrocarbon receptor (AhR) agonists in the sediments from Yeongil Bay (n = 6) using effect-directed analysis. Using the H4IIE-luc bioassays, great AhR-mediated potencies were found in aromatic fractions (F2) of sediment organic extracts from silica gel column chromatography and sub-fractions (F2.6-F2.8) from reverse phase-HPLC. Full-scan mass spectrometric analysis using GC-QTOFMS was conducted to identify novel AhR agonists in highly potent fractions, such as F2.6-F2.8 of S1 (Gumu Creek). Selection criteria for AhR-active compounds consisted of three steps, including matching factor of NIST library (≥70), aromatic structures, and the number of aromatic rings (≥4). Fifty-nine compounds were selected as tentative AhR agonist candidates, with the AhR-mediated activity being assessed for six compounds for which standard materials were available commercially. Of these compounds, 20-methylcholanthrene, 7-methylbenz[a]anthracene, 10-methylbenz[a]pyrene, and 7,12-dimethylbenz[a]anthracene exhibited significant AhR-mediated potency. Relative potency values of these compounds were determined relative to benzo[a]pyrene to be 3.2, 1.4, 1.2, and 0.2, respectively. EPA positive matrix factorization modeling indicated that the sedimentary AhR-active aromatic compounds primarily originated from coal combustion and vehicle emissions. Potency balance analysis indicated that four novel AhR agonists explained 0.007% to 1.7% of bioassay-derived AhR-mediated potencies in samples.
在这项研究中,我们使用定向效应分析鉴定了 Yeongil 湾(n=6)沉积物中的主要芳基烃受体(AhR)激动剂。使用 H4IIE-luc 生物测定法,在硅胶柱层析和反相-HPLC 的亚馏分(F2.6-F2.8)中发现了芳香馏分(F2)中存在的巨大 AhR 介导的效力。使用 GC-QTOFMS 进行全扫描质谱分析,以鉴定高活性分数(如 S1(Gumu Creek)中的 F2.6-F2.8)中的新型 AhR 激动剂。AhR 活性化合物的选择标准包括三步,包括 NIST 库的匹配因子(≥70)、芳香结构和芳香环数(≥4)。选择了 59 种化合物作为暂定 AhR 激动剂候选物,对于其中六种有商业标准材料的化合物,评估了它们的 AhR 介导活性。在这些化合物中,20-甲基胆蒽、7-甲基苯并[a]蒽、10-甲基苯并[a]芘和 7,12-二甲基苯并[a]蒽表现出显著的 AhR 介导效力。这些化合物的相对效力值相对于苯并[a]芘分别为 3.2、1.4、1.2 和 0.2。EPA 阳性矩阵因子化模型表明,沉积物中 AhR 活性芳香族化合物主要源自煤燃烧和车辆排放。效力平衡分析表明,四种新型 AhR 激动剂解释了样本中生物测定法衍生的 AhR 介导效力的 0.007%至 1.7%。