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Colorimetric multiplexed analysis of mercury and silver ions by using a unimolecular DNA probe and unmodified gold nanoparticles

机译:使用单分子DNA探针和未修饰的金纳米粒子对汞和银离子进行比色多重分析

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In this paper, a colorimetric assay for multiplexed analysis of mercury and silver ions was demonstrated by using a rationally designed unimolecular multifunctional DNA probe (UMDP) as sensing element, and unmodified gold nanoparticles (AuNPs) as color-reporting probes. The UMDP had a random coil structure that changed into two different hairpin-like structures with a T-Hg~(2+)-T or C-Ag~+-C basepairing built-in the stem upon binding Hg~(2+) or Ag~+ ions, respectively. As a result, the conformation changes facilitated the salt-induced AuNPs aggregation, leading red-to-blue color change with a red shift of the plasmon band in the UV-visible absorption spectrum. Thus, the change in absorption intensity allowed the multiplexed detection of Hg~(2+) and Ag~+ ions. The sensing system could detect as low as 2.5 x 10~(-7) M Hg~(2+) ions and 5 x 10~(-7) M Ag~+ ions. Both the color and absorption changes of the system were selective for Hg~(2+) and Ag~+ ions, which met the selective requirements for biomedical and environmental application. Moreover, the two target ions were simply distinguished by using EDTA, Hg~(2+) ions could not cause AuNPs aggregation while Ag~+ ions still could in the presence of EDTA. Then, the colorimetric response of the two target ions in spiked lake water and tap water were tested, respectively. We expect this simple and cost-effective method to have wide-ranging applications for monitoring water quality in the developing region.
机译:在本文中,通过合理设计的单分子多功能DNA探针(UMDP)作为传感元件,以及未修饰的金纳米颗粒(AuNPs)作为颜色报告探针,证明了用于汞和银离子多重分析的比色测定法。 UMDP具有随机的卷曲结构,在结合Hg〜(2+)后,茎中内置了T-Hg〜(2 +)-T或C-Ag〜+ -C碱基对,变成了两个不同的发夹状结构。或Ag〜+离子。结果,构象变化促进了盐诱导的AuNPs聚集,导致红色到蓝色的变化,以及在紫外线可见吸收光谱中等离激元带的红移。因此,吸收强度的变化允许对Hg〜(2+)和Ag〜+离子进行多重检测。传感系统可检测到低至2.5 x 10〜(-7)M Hg〜(2+)离子和5 x 10〜(-7)M Ag〜+离子。该系统的颜色和吸收变化对Hg〜(2+)和Ag〜+离子均具有选择性,满足了生物医学和环境应用的选择性要求。此外,通过使用EDTA可以轻松区分两个目标离子,Hg〜(2+)离子不会引起AuNPs聚集,而Ag〜+离子在EDTA存在下仍能引起AuNPs聚集。然后,分别测试了加标的湖水和自来水中两种目标离子的比色响应。我们希望这种简单且经济高效的方法在监控发展中地区的水质方面具有广泛的应用。

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