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结合激光烧蚀电感耦合等离子体质谱法的自分装微槽用于分析具有挑战性的液体:全血中铅的定量分析

Self-aliquoting micro-grooves in combination with laser ablation-ICP-mass spectrometry for the analysis of challenging liquids: quantification of lead in whole blood.

作者信息

Nischkauer Winfried, Vanhaecke Frank, Limbeck Andreas

机构信息

Institute of Chemical Technologies and Analytics, TU Wien, Getreidemarkt 9/164-IAC, 1060, Vienna, Austria.

Department of Analytical Chemistry, Ghent University, Krijgslaan 281-S12, 9000, Ghent, Belgium.

出版信息

Anal Bioanal Chem. 2016 Aug;408(21):5671-5676. doi: 10.1007/s00216-016-9717-3. Epub 2016 Jun 30.

Abstract

We present a technique for the fast screening of the lead concentration in whole blood samples using laser ablation-inductively coupled plasma-mass spectrometry (LA-ICP-MS). The whole blood sample is deposited on a polymeric surface and wiped across a set of micro-grooves previously engraved into the surface. The engraving of the micro-grooves was accomplished with the same laser system used for LA-ICP-MS analysis. In each groove, a part of the liquid blood is trapped, and thus, the sample is divided into sub-aliquots. These aliquots dry quasi instantly and are then investigated by means of LA-ICP-MS. For quantification, external calibration against aqueous standard solutions was relied on, with iron as an internal standard to account for varying volumes of the sample aliquots. The (208)Pb/(57)Fe nuclide ratio used for quantification was obtained via a data treatment protocol so far only used in the context of isotope ratio determination involving transient signals. The method presented here was shown to provide reliable results for Recipe ClinChek® Whole Blood Control levels I-III (nos. 8840-8842), with a repeatability of typically 3 % relative standard deviation (n = 6, for Pb at 442 μg L(-1)). Spiked and non-spiked real whole blood was analysed as well, and the results were compared with those obtained via dilution and sectorfield ICP-MS. A good agreement between both methods was observed. The detection limit (3 s) for lead in whole blood was established to be 10 μg L(-1) for the laser ablation method presented here. Graphical Abstract Micro-grooves are filled with whole blood, dried, and analyzed by laser ablation ICP-mass spectrometry. Notice that the laser moves in perpendicular direction with regard to the micro-grooves.

摘要

我们提出了一种使用激光烧蚀-电感耦合等离子体质谱法(LA-ICP-MS)快速筛查全血样本中铅浓度的技术。将全血样本沉积在聚合物表面,并在先前刻在该表面上的一组微槽上擦拭。微槽的刻蚀是使用与LA-ICP-MS分析相同的激光系统完成的。在每个凹槽中,一部分液态血液被捕获,因此,样本被分成多个子等分试样。这些等分试样几乎立即干燥,然后通过LA-ICP-MS进行研究。为了进行定量,依靠针对水溶液标准溶液的外部校准,以铁作为内标来考虑样本等分试样的不同体积。用于定量的(208)Pb/(57)Fe核素比是通过一种数据处理协议获得的,该协议迄今为止仅用于涉及瞬态信号的同位素比测定。此处介绍的方法对于Recipe ClinChek®全血对照水平I-III(编号8840-8842)显示出能提供可靠结果,其重复性通常为3%相对标准偏差(n = 6,对于442 μg L(-1)的铅)。还分析了加标和未加标的真实全血,并将结果与通过稀释和扇形场ICP-MS获得的结果进行比较。观察到两种方法之间有良好的一致性。此处介绍的激光烧蚀法测定全血中铅的检测限(3s)确定为10 μg L(-1)。图形摘要 微槽中充满全血,干燥后通过激光烧蚀ICP质谱法进行分析。请注意,激光相对于微槽沿垂直方向移动。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c3ae/4958394/b05ece27876f/216_2016_9717_Figa_HTML.jpg

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