Institute of Analytical Chemistry, University of Vienna, Waehringer Strasse 38, 1090 Vienna, Austria.
Department of Chemistry, University of Natural Resources and Life Sciences, BOKU Vienna, Muthgasse 18, 1190 Vienna, Austria.
Analyst. 2019 Jul 22;144(15):4653-4660. doi: 10.1039/c9an00039a.
In this work, we introduce a high-throughput quantitative multi-element method for biological fluids enabled by omitting sample preparation and an analysis time of a few seconds per sample. For the first time, flow injection of an undiluted cerebrospinal fluid (CSF) was combined to state-of-the-art ICP-TOFMS detection for multi-element analysis. Owing to the low sample volume and trace element concentrations of the CSF, flow injection methods with only 5 μL sample intake were used in combination with an icpTOF 2R TOF-based ICP-MS instrument. Due to the lack of certified reference materials for CSF analysis, a validated method employing open vessel digestion of the CSF material in combination with ICP-sectorfield-MS analysis was carried out and used as a reference. Additionally, the performance of the flow injection ICP-TOFMS was cross-validated by flow injection quadrupole-based ICP-MS/MS analysis using both external calibration and isotope dilution strategies. In the latter case, the sample had to be injected several times because of the need for tailored gas conditions for different elements. Overall, flow injection of biological fluids delivered quantitative values, which were in excellent agreement with the gold standard established by ICP-SFMS demonstrating the capability of ICP-TOFMS analysis in terms of resolution and sensitivity for the accurate quantification of trace elements in biological samples.
在这项工作中,我们介绍了一种高通量定量多元素方法,用于生物流体,可以省略样品制备,每个样品的分析时间仅为几秒钟。我们首次将未经稀释的脑脊液(CSF)的流动注射与最先进的 ICP-TOFMS 检测相结合,用于多元素分析。由于 CSF 的样品体积小且微量元素浓度低,因此仅使用 5 μL 样品的流动注射方法与基于 icpTOF 2R 的 ICP-MS 仪器结合使用。由于 CSF 分析缺乏认证的参考物质,因此采用了一种经过验证的方法,即对 CSF 材料进行开放式容器消解,并结合 ICP-扇形场-MS 分析,作为参考。此外,还通过使用外部校准和同位素稀释策略的基于四极杆的流动注射 ICP-MS/MS 分析对流动注射 ICP-TOFMS 的性能进行了交叉验证。在后一种情况下,由于需要针对不同元素定制气体条件,因此必须多次注射样品。总体而言,生物流体的流动注射提供了定量值,这些值与 ICP-SFMS 建立的金标准非常吻合,证明了 ICP-TOFMS 分析在分辨率和灵敏度方面能够准确地定量生物样品中的微量元素。