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首页> 外文期刊>ACS Omega >Multicolor Aptasensor Based on DNA-Induced Au–Ag Nanorods for Simultaneous and Visual Detection of Inorganic and Organic Mercury
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Multicolor Aptasensor Based on DNA-Induced Au–Ag Nanorods for Simultaneous and Visual Detection of Inorganic and Organic Mercury

机译:基于DNA诱导的Au-Ag纳米棒的多色自适应传感器同时可视化检测无机和有机汞

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Compared to inorganic mercury (Hg2+), methyl-mercury (CH3Hg+) and ethyl-mercury (C2H5Hg+) (organic mercury) not only have a much stronger toxicity but also are more easily accumulated by marine organisms to produce bioamplification. Therefore, the simultaneously onsite detection of Hg2+ and organic mercury is of great significance to ensure the safety of seafood, and it is also a hard challenge. We designed a T-rich aptamer, HT7, for specifically recognizing Hg2+ and organic mercury and developed a multicolor aptasensor for simultaneous discrimination and detection of Hg2+ and organic mercury with only bare-eye observation using HT7 as a recognition probe and gold nanorods (AuNRs) as a signal. In the presence of Hg2+ and Ag+, Hg2+ preferentially and specifically bind with HT7 immobilized on AuNRs surface and induce the formation of a monolayer Ag/Hg amalgam on the AuNRs surface after reduction, resulting in a change in color from orange to faint purple and a corresponding shift in the absorption peak from 820 to 730 nm in the solution. However, in the presence of CH3Hg+ or C2H5Hg+ and Ag+, CH3Hg+ or C2H5Hg+ preferentially bind with HT7 immobilized on the AuNRs surface and induce the formation of a monolayer Ag0 on the AuNRs surface after reduction, which results in the change in color from orange to atrovirens and the corresponding shift in the absorption peak shift from 820 to 670 nm in the solution. Thus, the inorganic and organic mercury (total of CH3Hg+ and C2H5Hg+) can be specifically discriminated and detected by only bare-eye observation. The method can be used to simultaneously detect inorganic and organic mercury in seawater by the bare-eye observation with a visual detection limit of 2.0 ppm for Hg2+ and 10.0 ppm for organic mercury. The success of this study is a useful enlightenment to develop an instrument-free method for an onsite detection of trace inorganic and organic mercury in environment by a bare-eye observation, although the sensitivity of the method is relatively low.
机译:与无机汞(Hg2 +)相比,甲基汞(CH3Hg +)和乙基汞(C2H5Hg +)(有机汞)不仅毒性更强,而且海洋生物更容易积聚以进行生物放大。因此,同时现场检测Hg2 +和有机汞对确保海产品安全具有重要意义,也是一项艰巨的挑战。我们设计了一种富含T的适体HT7,用于特异性识别Hg2 +和有机汞,并开发了一种多色适体传感器,只需使用HT7作为识别探针和金纳米棒(AuNRs)即可通过肉眼观察同时鉴别和检测Hg2 +和有机汞。作为一个信号。在存在Hg2 +和Ag +的情况下,Hg2 +优先与固定在AuNRs表面的HT7特异性结合,并诱导还原后在AuNRs表面形成单层Ag / Hg汞齐,导致颜色从橙色变为淡紫色,溶液中吸收峰从820 nm到730 nm的相应位移。但是,在存在CH3Hg +或C2H5Hg +和Ag +的情况下,CH3Hg +或C2H5Hg +优先与固定在AuNRs表面的HT7结合,并在还原后诱导在AuNRs表面形成单层Ag0,从而导致颜色从橙色变为黄绿色溶液中吸收峰的相应位移从820 nm转变为670 nm。因此,无机和有机汞(CH3Hg +和C2H5Hg +的总和)可以仅通过肉眼观察来专门区分和检测。该方法可用于通过肉眼观察同时检测海水中的无机和有机汞,Hg2 +的视觉检测极限为2 ppm,有机汞的视觉检测极限为10.0 ppm。这项研究的成功为开发一种无需仪器即可通过肉眼观察环境中痕量无机和有机汞的现场方法提供了有益的启示,尽管该方法的灵敏度相对较低。

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