Yan X, Ni Z
Research Center for Analytical Sciences, College of Chemistry, Nankai University, 300071 Tianjin.
Guang Pu Xue Yu Guang Pu Fen Xi. 2001 Apr;21(2):129-38.
This paper introduces briefly the analytical methods recently published in the literature on the speciation of arsenic, selenium and cadmium in biological samples using hyphenated techniques, HPLC-ICP-MS, HPLC-ES-MS/MS, and CE-ES-MS/MS. The coupling SEC-ICP-MS is the most popular technique for the first screening of unknown sample in view of the presence of macro molecular species of element. But due to its insufficient resolution, complementary chromatographic separations have to be carried out in order to guarantee the purity of the signal. CZE-ICP-MS is a powerful tool in trace metal speciation. In case standards and reference materials are not available, ES-MS/MS is the best technique in the characterization of metal complexes. During analysis care should be taken to avoid contamination of the sample and break-up of the original metal-protein bond during the separation process. Due to lack of standards and reference materials, the application of hyphenated technique has been looking for new species rather than determining a known compound. The difficult problems are whether a signal produced by a detector belongs to a particular compound and the identification of this compound.
本文简要介绍了近期文献中发表的关于使用联用技术(HPLC-ICP-MS、HPLC-ES-MS/MS和CE-ES-MS/MS)分析生物样品中砷、硒和镉形态的方法。鉴于元素大分子形态的存在,耦合SEC-ICP-MS是对未知样品进行初次筛选的最常用技术。但由于其分辨率不足,必须进行互补色谱分离以确保信号的纯度。CZE-ICP-MS是痕量金属形态分析的有力工具。在没有标准品和参考物质的情况下,ES-MS/MS是表征金属配合物的最佳技术。分析过程中应注意避免样品污染以及在分离过程中破坏原始的金属-蛋白质键。由于缺乏标准品和参考物质,联用技术的应用一直在寻找新的形态,而不是确定已知化合物。难题在于检测器产生的信号是否属于特定化合物以及该化合物的鉴定。