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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Sensitive quantification of gadolinium-based magnetic resonance imaging contrast agents in surface waters using hydrophilic interaction liquid chromatography and inductively coupled plasma sector field mass spectrometry
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Sensitive quantification of gadolinium-based magnetic resonance imaging contrast agents in surface waters using hydrophilic interaction liquid chromatography and inductively coupled plasma sector field mass spectrometry

机译:使用亲水相互作用液相色谱和电感耦合等离子体扇区质谱法对地表水中of基磁共振成像造影剂进行灵敏定量

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The application of gadolinium(Gd)-based contrast agents to support medical examinations by magnetic resonance imaging (MRI) results in a large input of Gd into the environment. The long-term effects of the anthropogenic Gd anomaly, especially on aqueous ecosystems, are mostly unknown. The identification and quantification of Gd-based contrast agents in the aquatic environment requires the use of powerful methods of speciation analysis. Therefore, a method employing the hyphenation of hydrophilic interaction liquid chromatography (HILIC) and inductively coupled plasma sector field mass spectrometry (ICP-SFMS) with sample introduction as dry aerosol generated by desolvation was developed. The desolvation resulted in improved limits of detection for the predominantly used contrast agents well below 0.10. nmol/L. This method was subsequently used for the analysis of Gd species in surface waters. Samples from a nature reserve in the city of Münster (Germany), into which the effluent from the city's main wastewater treatment plant enters the environment, were examined. The contrast agents Gd-DTPA, Gd-DOTA and Gd-BT-DO3A were identified and quantified in constant ratios in those samples. The concentrations were found in a range from 0.59. nmol/L for Gd-DOTA up to 3.55. nmol/L for Gd-BT-DO3A. As a result of mass balancing, the contrast agent concentration was found to account for 74-89% of total Gd concentrations, possibly indicating the presence of further Gd species. Nevertheless, there was no direct indication of species transformation by transmetallation reactions resulting in such Gd species. The determination of REE patterns by means of ICP-MS confirmed the results of speciation analysis showing significant Gd anomalies.
机译:基于g(Gd)的造影剂通过磁共振成像(MRI)支持医学检查的应用导致大量d向环境的输入。人为的Gd异常的长期影响,特别是对水生生态系统的长期影响,大多数是未知的。在水生环境中对基于Gd的造影剂的鉴定和定量要求使用功能强大的物种分析方法。因此,开发了一种方法,该方法采用亲水相互作用液相色谱(HILIC)和电感耦合等离子体扇形场质谱(ICP-SFMS)的联用技术,并将样品引入作为通过去溶剂化作用生成的干燥气溶胶。去溶剂化作用使主要使用的造影剂的检出限大大改善,远低于0.10。 nmol /升。该方法随后用于分析地表水中的Gd物种。考察了来自德国明斯特市自然保护区的样本,该市主要废水处理厂的废水进入了环境。在这些样品中,造影剂Gd-DTPA,Gd-DOTA和Gd-BT-DO3A均已确定并以恒定比例定量。发现浓度为0.59。 Gd-DOTA的nmol / L高达3.55。对于Gd-BT-DO3A,nmol / L。作为质量平衡的结果,发现造影剂浓度占总Gd浓度的74-89%,这可能表明存在其他Gd物质。然而,没有直接迹象表明通过重金属化反应产生这种Gd物种的物种转化。通过ICP-MS对REE模式的确定证实了形态分析的结果,显示出明显的Gd异常。

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