Abstract Novel ratiometric surface-enhanced raman spectroscopy aptasensor for sensitive and reproducible sensing of Hg<ce:sup loc='post'>2+</ce:sup>
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Novel ratiometric surface-enhanced raman spectroscopy aptasensor for sensitive and reproducible sensing of Hg2+

机译:用于HG 2 + 的敏感和可再现感测

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Abstract It is important to precisely monitor mercury (II) ions (Hg2+) for environment protection and human health monitoring. Although many strategies have been developed in the past decades, there still remains a challenge for developing an ultrasensitive, simple and reliable approach to detect Hg2+. Herein, we report a ratiometric surface-enhanced Raman scattering (SERS) aptasensor by employing aptamer-modified Au@Ag core-shell nanoparticles (Au@Ag NPs) as highly functional sensing probes, allowing for ultrasensitive detection of Hg2+. In principle, the thiolated 5′-Cy3 labeled aptamer probe (Cy3-aptamer) is firstly immobilized on the SERS substrate surface and then hybridizes with the 5′-Rox labeled complementary DNA (cDNA) to form a rigid double-stranded DNA (dsDNA), in which the Cy3 and Rox Raman labels are used to produce the ratiometric Raman signals. In the presence of Hg2+, the aptamer DNA turns into the thymine (T)-Hg2+-T mediated hairpin structure, leading to the dissociation of dsDNA. As a result, the Rox labels are away from the Au@Ag NP SERS substrate while Cy3 labels are close to it. Therefore, the intensity of SERS signal from Cy3 labels increases while that from Rox labels decreases. The ratio between the Raman intensities of Cy3 labels and Rox labels is linear with Hg2+ concentrations in the range from 0.001 to 1.0nM, and the limit of detection is estimated to be 0.4pM. The proposed strategy provides a new rapid, simple and reliable app
机译:<![cdata [ 抽象 精确监测汞(ii)离子(hg 2 + )用于环境保护和人体健康监测。虽然在过去的几十年中已经发展了许多策略,但仍然仍然是开发超细胞敏感,简单可靠的方法来检测HG 2 + 仍然存在挑战。在此,我们通过使用适体改性的Au @ Ag核 - 壳纳米粒子(Au @ Ag NPS)作为高官能传感探针来报告比率表面增强的拉曼散射(SERS)Aptasensor,允许HG 2 + 。原则上,首先将硫醇化5'-Cy3标记的适体探针(Cy3-适体)固定在Sers底物表面上,然后用标记的互补DNA(cDNA)与5'-ROX杂交以形成刚性双链DNA(DSDNA ),其中Cy3和Rox拉曼标签用于产生比例拉曼信号。在Hg 2 + 中,Aptamer DNA变成胸腺嘧啶(t)-hg 2 + -t介导的发夹结构,导致dsdna的解离。结果,ROX标签远离AU @ AG NP SERS基板,而CY3标签靠近它。因此,来自Cy3标签的SERS信号的强度随着ROX标记的增加而增加。 Cy3标签和ROX标记的拉曼强度之间的比率与Hg 2 + 浓度为0.001至1.0 nm,检测限估计为0.4 pm。拟议的策略提供了一种新的快速,简单可靠的应用程序

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