Wang Han, Wu Zhekuan, Chen Beibei, He Man, Hu Bin
Key Laboratory of Analytical Chemistry for Biology and Medicine (Ministry of Education), Department of Chemistry, Wuhan University, Wuhan 430072, P. R. China.
Analyst. 2015 Aug 21;140(16):5619-26. doi: 10.1039/c5an00736d.
Determination of trace elements in cells is critical to metallomics research and still faces tremendous difficulties even with the help of highly sensitive inductively coupled plasma mass spectrometry (ICP-MS). Microfluidic chips offer a functional tool-set for cell analysis with features of miniaturization, integration and automation. In this work, we proposed a chip-based array magnetic solid phase microextraction (MSPME) system and on-line combined it with ICP-MS via microflow concentric nebulization for the determination of trace Cu, Zn, Cd, Hg, Pb and Bi in cells. Under the optimized conditions, the limits of detection of the developed on-line chip-based array MSPME-ICP-MS system are 49, 43, 4.2, 6.1, 13 and 18 ng L(-1) for Cu, Zn, Cd, Hg, Pb and Bi, respectively. The proposed method was applied to the analysis of target heavy metals in three kinds of cells (HepG2, Jurkat T and MCF7), and the recoveries for the spiked samples were in the range of 83.8%-117%. The extractable species of the target metals in cells were also studied and the results demonstrated a high selectivity of the developed methods towards free metal ions and/or their small molecular species.
细胞中微量元素的测定对于金属组学研究至关重要,即便借助高灵敏度的电感耦合等离子体质谱仪(ICP-MS),该测定仍面临巨大困难。微流控芯片为细胞分析提供了一套具备小型化、集成化和自动化特点的功能工具集。在本研究中,我们提出了一种基于芯片的阵列磁性固相微萃取(MSPME)系统,并通过微流同心雾化将其与ICP-MS在线联用,用于测定细胞中的痕量铜、锌、镉、汞、铅和铋。在优化条件下,所构建的基于芯片的阵列MSPME-ICP-MS在线系统对铜、锌、镉、汞、铅和铋的检测限分别为49、43、4.2、6.1、13和18 ng L⁻¹。所提方法应用于三种细胞(HepG2、Jurkat T和MCF7)中目标重金属的分析,加标样品的回收率在83.8% - 117%范围内。还对细胞中目标金属的可萃取形态进行了研究,结果表明所开发方法对游离金属离子和/或其小分子形态具有高选择性。