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开通道芯片固相萃取结合电感耦合等离子体质谱法在线测定体积有限的盐溶液样品中的微量元素。

Open-channel chip-based solid-phase extraction combined with inductively coupled plasma-mass spectrometry for online determination of trace elements in volume-limited saline samples.

机构信息

Department of Biomedical Engineering and Environmental Sciences, National Tsing-Hua University, 30013 Hisnchu, Taiwan.

出版信息

J Chromatogr A. 2011 Apr 22;1218(16):2342-8. doi: 10.1016/j.chroma.2011.02.037. Epub 2011 Feb 19.

Abstract

In this study, we used an automated online chip-based solid-phase extraction (SPE)-inductively coupled plasma-mass spectrometry (ICP-MS) system for analyzing trace elements in small-volume saline samples (∼15 μL). The proposed method involved the adsorption of trace metal ions in the interior of a functionalized poly(methyl methacrylate) (PMMA) channel in order to separate these ions from saline matrices. The adsorption of transition metal ions was presumably dominated by the surface complexation between the carboxylate moieties in the interior of the PMMA channel and the metal ions, which facilitated the formation of metal-carboxylate complexes. The components of the proposed online analytical system used for the simultaneous detection of multiple trace metals in saline samples involved microdialysis (MD) sampling, an established chip-based SPE procedure, and ICP-MS. The SPE-ICP-MS hyphenated system was optimized, and then, the analytical reliability of this system was further confirmed by using it to analyze the certified reference materials-SRM 2670 (human urine) and SRM 1643e (artificial saline water). The satisfactory analytical results indicated that the proposed on-chip SPE device could be readily used as an interface for coupling the MD probe with the ICP-MS system. The dramatically reduced consumption of chemicals and "hands-on" manipulations enabled the realization of a simplified and relatively clean procedure with extremely low detection limits in the range of 5.86-76.91 ng L(-1) for detecting Mn, Co, Ni, Cu, and Pb in 15-μL samples by ICP-MS. The effectiveness of an online MD-chip-based SPE-ICP-MS technique for continuous monitoring of trace elements in a simulated biological system was also demonstrated. To the best of our knowledge, this is the first paper to report the direct exploitation of a PMMA chip as an SPE adsorbent for online sample pretreatment and trace metal preconcentration prior to ICP-MS measurement.

摘要

在这项研究中,我们使用自动化在线芯片固相萃取(SPE)-电感耦合等离子体质谱(ICP-MS)系统分析小体积盐溶液样品(约 15 μL)中的痕量元素。该方法涉及在功能化聚甲基丙烯酸甲酯(PMMA)通道内部吸附痕量金属离子,以将这些离子从盐基质中分离出来。过渡金属离子的吸附可能主要是由于 PMMA 通道内部的羧基与金属离子之间的表面络合作用,这有利于金属-羧酸盐配合物的形成。用于同时检测盐溶液样品中多种痕量金属的在线分析系统的组成部分包括微透析(MD)采样、基于芯片的 SPE 程序和 ICP-MS。对 SPE-ICP-MS 联用系统进行了优化,然后通过使用该系统分析认证参考物质-SRM 2670(人尿)和 SRM 1643e(人工盐水)进一步确认了该系统的分析可靠性。令人满意的分析结果表明,所提出的芯片 SPE 装置可作为 MD 探头与 ICP-MS 系统耦合的接口。化学试剂的消耗量显著减少,“手工”操作减少,实现了简化且相对清洁的程序,通过 ICP-MS 对 15 μL 样品中 Mn、Co、Ni、Cu 和 Pb 的检测限低至 5.86-76.91 ng L(-1)。还证明了在线 MD-芯片 SPE-ICP-MS 技术在模拟生物系统中连续监测痕量元素的有效性。据我们所知,这是第一篇报道直接利用 PMMA 芯片作为 SPE 吸附剂进行在线样品预处理和痕量金属预浓缩,然后进行 ICP-MS 测量的论文。

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