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首页> 外文期刊>Sensors >Proposition of a Silica Nanoparticle-Enhanced Hybrid Spin-Microcantilever Sensor Using Nonlinear Optics for Detection of DNA in Liquid
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Proposition of a Silica Nanoparticle-Enhanced Hybrid Spin-Microcantilever Sensor Using Nonlinear Optics for Detection of DNA in Liquid

机译:利用非线性光学技术检测液体中DNA的纳米二氧化硅增强混合自旋微悬臂梁传感器的建议。

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摘要

We theoretically propose a method based on the combination of a nonlinear optical mass sensor using a hybrid spin-microcantilever and the nanoparticle-enhanced technique, to detect and monitor DNA mutations. The technique theoretically allows the mass of external particles (ssDNA) landing on the surface of a hybrid spin-microcantilever to be detected directly and accurately at 300 K with a mass responsivity 0.137 Hz/ag in situ in liquid. Moreover, combined with the nanoparticle-enhanced technique, even only one base pair mutation in the target DNA sequence can be identified in real time accurately, and the DNA hybridization reactions can be monitored quantitatively. Furthermore, in situ detection in liquid and measurement of the proposed nonlinear optical spin resonance spectra will minimize the experimental errors.
机译:我们从理论上提出了一种方法,该方法基于使用混合自旋微悬臂梁和纳米粒子增强技术的非线性光学质量传感器的组合,以检测和监控DNA突变。从理论上讲,该技术可以在液体中原位质量敏感度为0.137 Hz / ag的情况下,以300 K直接准确地检测到落在混合自旋微悬臂梁表面上的外部颗粒(ssDNA)的质量。此外,结合纳米粒子增强技术,即使在目标DNA序列中甚至只有一个碱基对突变也可以被实时准确地识别,并且DNA杂交反应也可以被定量监测。此外,在液体中的原位检测和所提出的非线性光学自旋共振谱的测量将使实验误差最小。

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