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Motion-based DNA detection using catalytic nanomotors

机译:使用催化纳米马达进行基于运动的DNA检测

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摘要

Synthetic nanomotors, which convert chemical energy into autonomous motion, hold considerable promise for diverse applications. In this paper, we show the use of synthetic nanomotors for detecting DNA and bacterial ribosomal RNA in a fast, simple and sensitive manner. The new motion-driven DNA-sensing concept relies on measuring changes in the speed of unmodified catalytic nanomotors induced by the dissolution of silver nanoparticle tags captured in a sandwich DNA hybridization assay. The concentration-dependent distance signals are visualized using optical microscopy, particularly through straight-line traces by magnetically aligned 'racing' nanomotors. This nanomotor biodetection strategy could be extended to monitor a wide range of biomolecular interactions using different motion transduction schemes, thus providing a versatile and powerful tool for detecting biological targets.. ? 2010 Nature Publishing Group, a division of Macmillan Publishers Limited. All Rights Reserved.
机译:将化学能转化为自主运动的合成纳米电动机在各种应用中都具有广阔的前景。在本文中,我们展示了使用合成的纳米马达以快速,简单和灵敏的方式检测DNA和细菌核糖体RNA的方法。新的运动驱动DNA传感概念依赖于测量三明治式DNA杂交测定法中捕获的银纳米颗粒标签的溶解所引起的未修饰催化纳米马达的速度变化。浓度依赖的距离信号可以通过光学显微镜观察,尤其是通过磁对准的“赛车”纳米电机通过直线轨迹观察。可以将这种纳米马达生物检测策略扩展为使用不同的运动传导方案来监视广泛的生物分子相互作用,从而为检测生物靶标提供了一种多功能而强大的工具。 2010 Nature Publishing Group,Macmillan Publishers Limited的子公司。版权所有。

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