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Biotransformation of Selected lodinated X-ray Contrast Media and Characterization of Microbial Transformation Pathways

机译:选定的X射线造影剂的生物转化和微生物转化途径的表征

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摘要

lodinated X-ray contrast media (ICM) are commonly detected in the aquatic environment at concentrations up to the low microgram per liter range. In this study, the biotransformation of selected ICM (diatrizoate, iohexol, lomeprol, and iopamidol) in aerobic soil-water and river sediment-water batch systems was investigated. In addition, microbial transformation pathways were proposed. Diatrizoate, an ionic ICM, was not biotransformed, while three nonionic ICM were transformed into several biotransformation products (TPs) at neutral pH. Iohexol and iomeprol were biotransformed to eleven TPs and fifteen TPs, respectively, while eight TPs were detected for iopamidol. Since seven of the TPs detected during biotransformation had not been previously identified, mass fragmentation experiments were completed to elucidate the chemical structures. Oxidation of primary alcoholic moieties, cleavage ofthe N-C bonds (i.e., deacetylation and removal of hydroxylated propanoic acids), and decarboxylation are potential reactions that can explain the formation of the identified TPs. Iohexol and iomeprol had similar biotransformation rates, while iopamidol was biotransformed slower and to a lesser extent. A LC tandem MS method confirmed the presence of ICM TPs in aqueous environmental samples. Fifteen of the ICM TPs were even detected in drinking water with concentrations up to 120 ng/L.
机译:通常在水生环境中检测到X射线造影剂(ICM)的浓度高达每升范围内的低微克。在这项研究中,调查了在需氧土壤-水和河流沉积物-水批处理系统中选择的ICM(泛影酸盐,碘海醇,洛美洛尔和碘帕醇)的生物转化。另外,提出了微生物转化途径。泛影酸盐(一种离子型ICM)未进行生物转化,而在中性pH值下将三种非离子型ICM转化为几种生物转化产物(TPs)。碘海醇和碘美普尔分别被生物转化为11个TP和15个TP,而碘帕醇的8个TP被检测到。由于先前尚未鉴定出在生物转化过程中检测到的7种TP,因此已完成质量裂解实验以阐明化学结构。伯醇部分的氧化,N-C键的裂解(即脱乙酰基和除去羟基化的丙酸)和脱羧化是潜在的反应,可以解释所鉴定的TP的形成。碘海醇和碘美洛尔具有相似的生物转化率,而碘帕醇的生物转化速度较慢,程度较小。 LC串联MS方法确认了水性环境样品中ICM TP的存在。甚至在浓度高达120 ng / L的饮用水中检测到15种ICM TP。

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  • 来源
    《Environmental Science & Technology》 |2010年第13期|P.4998-5007|共10页
  • 作者单位

    Federal Institute of Hydrology (BfG), Am Mainzer Tor 1, 56068 Koblenz, Germany;

    rnFederal Institute of Hydrology (BfG), Am Mainzer Tor 1, 56068 Koblenz, Germany;

    rnEawag, Swiss Federal Institute of Aquatic Science and Technology, UEberlandstrasse 133, P.O. Box 611, 8600 Duebendorf, Switzerland;

    rnFederal Institute of Hydrology (BfG), Am Mainzer Tor 1, 56068 Koblenz, Germany;

  • 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 2022-08-17 14:03:57

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