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碘普罗胺的厌氧转化、其需氧转化产物以及向其他碘造影剂的转移。

Anaerobic Transformation of the Iodinated X-ray Contrast Medium Iopromide, Its Aerobic Transformation Products, and Transfer to Further Iodinated X-ray Contrast Media.

机构信息

Federal Institute of Hydrology , Am Mainzer Tor 1 , D-56068 Koblenz , Germany.

出版信息

Environ Sci Technol. 2018 Aug 7;52(15):8309-8320. doi: 10.1021/acs.est.8b01140. Epub 2018 Jul 12.

DOI:10.1021/acs.est.8b01140
PMID:29998733
Abstract

The iodinated X-ray contrast medium (ICM) iopromide and its aerobic transformation products (TPs) are frequently detected in the effluents of wastewater treatment plants and in different compartments of the aquatic environment. In this study, the anaerobic transformation of iopromide and its aerobic TPs was investigated in water-sediment systems. Iopromide, its final aerobic TP didespropanediol iopromide (DDPI), and its primary aniline desmethoxyacetyl iopromide (DAMI) were used as model substances. Five biologically formed anaerobic TPs of iopromide and DAMI and six of DDPI, and the respective transformation pathways, were identified. The TPs were formed by successive deiodination and hydrolysis of amide moieties. Quantification of the iodinated TPs was achieved by further development of a complementary liquid chromatography (LC)-quadrupole time-of-flight mass spectrometry (Q-ToF-MS) and LC-inductively coupled plasma - mass spectrometry (ICP-MS) strategy without needing authentic standards, despite several TPs coeluting with others. A database with predicted anaerobic TPs of ICMs was derived by applying the transformation rules found for the anaerobic transformation pathways of iopromide and diatrizoate to further ICMs (iomeprol and iopamidol) and their aerobic TPs already reported in the literature. The environmental relevance of the identified transformation pathways was confirmed by identifying an experimental TP and two predicted TPs using suspect screening of water taken from anaerobic bank filtration zones.

摘要

含碘 X 射线造影剂(ICM)碘普罗胺及其需氧转化产物(TPs)经常在污水处理厂的废水中以及水生态环境的不同隔室中被检测到。在这项研究中,研究了水-沉积物系统中碘普罗胺及其需氧 TPs 的厌氧转化。碘普罗胺、其最终需氧 TP 二异丙醇碘普罗胺(DDPI)及其主要苯胺去甲氧基乙酰碘普罗胺(DAMI)被用作模型物质。鉴定出了碘普罗胺和 DAMI 的五种生物形成的厌氧 TPs 以及 DDPI 的六种,以及各自的转化途径。这些 TPs 是通过酰胺部分的连续脱碘和水解形成的。通过进一步开发互补的液相色谱(LC)-四极杆飞行时间质谱(Q-ToF-MS)和 LC-电感耦合等离子体质谱(ICP-MS)策略,对碘代 TPs 进行定量分析,该策略无需使用真实标准,尽管有几个 TPs 与其他 TPs 共洗脱。通过将碘普罗胺和泛影酸的厌氧转化途径的转化规则应用于进一步的 ICM(碘美普尔和碘帕醇)及其已在文献中报道的需氧 TPs,得出了包含 ICM 预测厌氧 TPs 的数据库。通过对从厌氧银行过滤区采集的水样进行可疑筛选,鉴定出了一个实验性 TP 和两个预测性 TPs,从而证实了所鉴定的转化途径的环境相关性。

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Anaerobic Transformation of the Iodinated X-ray Contrast Medium Iopromide, Its Aerobic Transformation Products, and Transfer to Further Iodinated X-ray Contrast Media.碘普罗胺的厌氧转化、其需氧转化产物以及向其他碘造影剂的转移。
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