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采用亲水作用色谱-电感耦合等离子体质谱联用技术对地表水和植物中钆的形态进行分析。

Speciation of gadolinium in surface water samples and plants by hydrophilic interaction chromatography hyphenated with inductively coupled plasma mass spectrometry.

机构信息

BAM Federal Institute for Materials Research and Testing, Richard-Willstaetter-Str. 11, 12489 Berlin, Germany.

出版信息

Anal Bioanal Chem. 2013 Feb;405(6):1865-73. doi: 10.1007/s00216-012-6643-x. Epub 2013 Jan 9.

Abstract

Hydrophilic interaction chromatography (HILIC) coupled with inductively coupled plasma mass spectrometry (ICP-MS) was optimized for speciation analysis of gadolinium-based contrast agents in environmental samples, in particular surface river waters and plants. Surface water samples from the Teltow channel, near Berlin, were investigated over a distance of 5 km downstream from the influx of a wastewater treatment plant. The total concentration of gadolinium increased significantly from 50 to 990 ng L(-1) due to the influx of the contrast agents. After complete mixing with the river water, the concentration remained constant over a distance of at least 4 km. Two main substances [Dotarem(®) (Gd-DOTA) and Gadovist(®) (Gd-BT-DO3A)] have been identified in the river water using standards. A gadolinium-based contrast agent, possibly Gd-DOTA (Dotarem(®)), was also detected in water plant samples taken from the Teltow channel. Therefore, uptake of contrast agents [Gadovist(®) (Gd-BTDO3A), Magnevist(®) (Gd-DTPA), Omniscan(®) (Gd-DTPA-BMA), Dotarem(®) (Gd-DOTA), and Multihance(®) (Gd-BOPTA)] by plants was investigated in a model experiment using Lepidium sativum (cress plants). HILIC-ICP-MS was used for identification of different contrast agents, and a first approach for quantification using aqueous standard solutions was tested. For speciation analysis, all investigated contrast agents could be extracted from the plant tissues with a recovery of about 54 % for Multihance(®) (Gd-BOPTA) up to 106 % for Gadovist(®) (Gd-BT-DO3A). These experiments demonstrate that all contrast agents investigated are transported from the roots to the leaves where the highest content was measured.

摘要

亲水作用色谱(HILIC)与电感耦合等离子体质谱(ICP-MS)联用,优化了环境样品中基于钆的造影剂的形态分析,特别是地表水和植物。研究了来自柏林附近特洛托运河的地表水样本,该运河在污水处理厂的废水流入处下游 5 公里处。由于造影剂的流入,总镝浓度从 50 增加到 990 ng/L。在与河水完全混合后,在至少 4 公里的距离内,浓度保持恒定。使用标准品,在河水中鉴定出两种主要物质[Dotarem®(Gd-DOTA)和 Gadovist®(Gd-BT-DO3A)]。在取自特洛托运河的水培植物样本中,也检测到一种基于镝的造影剂,可能是 Gd-DOTA(Dotarem®)。因此,在使用蕚菜(水芹)进行的模型实验中,研究了植物对造影剂[Gadovist®(Gd-BTDO3A)、Magnevist®(Gd-DTPA)、Omniscan®(Gd-DTPA-BMA)、Dotarem®(Gd-DOTA)和 Multihance®(Gd-BOPTA)]的摄取。HILIC-ICP-MS 用于鉴定不同的造影剂,并测试了使用水溶液标准溶液进行定量的初步方法。对于形态分析,可以从植物组织中提取所有研究的造影剂,Multihance®(Gd-BOPTA)的回收率约为 54%,Gadovist®(Gd-BT-DO3A)的回收率高达 106%。这些实验表明,所有研究的造影剂都从根部运输到叶片,在叶片中测量到最高含量。

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