College of Geology and Environment, Xi'an University of Science and Technology, Xi'an, 710054, Shaanxi, China.
Shaanxi Provincial Key Laboratory of Geological Support for Coal Green Exploitation, Xi'an, 710054, Shaanxi, China.
Anal Bioanal Chem. 2020 Jan;412(2):439-448. doi: 10.1007/s00216-019-02253-8. Epub 2019 Nov 26.
Due to heavy metals' magnified pollution from their accumulation in the ecosystem, practical detection of ultra-low concentration of heavy metals in environmental sample is of great significance for environmental supervision and maintenance of people's health. Herein, a practical and sensitive assay of heavy metal mercury was developed by visually observing (or spectrum detecting) the change of cationic gold nanoparticles (AuNPs), which is directly caused by mercury ion induced hybridization between non-canonical base pairs. In this assay, signal probe's response was direct rather than the indirect salt induction, thus avoiding the defect of salt-induced indirect response. It makes the analysis more sensitive. The results showed that the response of 8.2 × 10 M Hg could be observed with naked eye and the detection limit of Hg in spectrometric determination was 4.9 × 10 M, which is more than one order of magnitude lower than that from indirect response pattern of signal probe. In addition, high specificity of the affinity chemistry for T-Hg-T renders the assay to be highly selective. Compared with the results of cold vapor atom adsorption spectroscopy (CVAAS), this analysis has good reliability for the detection of mercury. The results fully indicate that the developed assay is an ideal alternative for online detection of heavy metal mercury in environmental pollution samples.
由于重金属在生态系统中积累而导致的污染放大,实际检测环境样品中超低浓度的重金属对于环境监测和维护人们的健康具有重要意义。在此,通过观察阳离子金纳米粒子(AuNPs)的变化(或光谱检测),开发了一种实用且灵敏的汞重金属检测方法,这是由汞离子诱导非规范碱基对之间的杂交直接引起的。在该测定中,信号探针的响应是直接的,而不是盐诱导的间接响应,从而避免了盐诱导间接响应的缺陷。这使得分析更加灵敏。结果表明,8.2×10^-7 M Hg 的响应可以用肉眼观察到,在光谱测定中 Hg 的检测限为 4.9×10^-7 M,比信号探针的间接响应模式低一个数量级以上。此外,T-Hg-T 的亲和化学的高特异性使得该测定具有高度选择性。与冷蒸气原子吸附光谱法(CVAAS)的结果相比,该分析方法对于检测环境污染样品中的汞具有良好的可靠性。结果充分表明,所开发的测定方法是在线检测环境中重金属汞的理想替代方法。