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首页> 外文期刊>Sensors >Quartz Crystal Microbalance Aptasensor for Sensitive Detection of Mercury(II) Based on Signal Amplification with Gold Nanoparticles
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Quartz Crystal Microbalance Aptasensor for Sensitive Detection of Mercury(II) Based on Signal Amplification with Gold Nanoparticles

机译:基于金纳米粒子信号放大的用于汞(II)灵敏检测的石英微天平适配传感器

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摘要

We show that a short mercury-specific aptamer (MSA) along with gold nanoparticles (Au-NPs) can be used to determine Hg(II) ion by a combination of a QCM-based sensor and a flow system. The MSA binds specifically to Hg(II), and the Au-NPs can amplify the signal to enhance sensitivity. Specifically, the short thiolated MSAs are immobilized on the surface of the QCM as the capture probe, and the MSAs are linked to the Au-NPs as the linking probe. The two components can form a sandwich structure of the T-Hg(II)-T type in the presence of Hg(II) ions. This leads to change in the mass on the QCM and a change in the resonance frequency. Hg(II) can be determined with a detection limit of 0.24 ± 0.06 nM which is better by three orders of magnitude than previous methods. The sensor can be regenerated by disrupting the T-Hg(II)-T base pairs with a solution of cysteine.
机译:我们表明,短的汞特异性适体(MSA)以及金纳米颗粒(Au-NPs)可以用于通过基于QCM的传感器和流量系统的组合来确定Hg(II)离子。 MSA与Hg(II)特异性结合,Au-NPs可以放大信号以增强灵敏度。具体而言,将短的巯基化的MSA作为捕获探针固定在QCM的表面上,并且将MSA与作为连接探针的Au-NP连接。在存在Hg(II)离子的情况下,这两个组分可以形成T-Hg(II)-T型夹心结构。这导致QCM上质量的变化和共振频率的变化。汞(II)的检出限为0.24±0.06 nM,比以前的方法要好三个数量级。可以通过用半胱氨酸溶液破坏T-Hg(II)-T碱基对来再生传感器。

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