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DNA engineered micromotors powered by metal nanoparticles for motion based cellphone diagnostics

机译:由金属纳米颗粒驱动的DNA工程微电机用于基于运动的手机诊断

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摘要

HIV-1 infection is a major health threat in both developed and developing countries. The integration of mobile health approaches and bioengineered catalytic motors can allow the development of sensitive and portable technologies for HIV-1 management. Here, we report a platform that integrates cellphone-based optical sensing, loop-mediated isothermal DNA amplification and micromotor motion for molecular detection of HIV-1. The presence of HIV-1 RNA in a sample results in the formation of large-sized amplicons that reduce the motion of motors. The change in the motors motion can be accurately measured using a cellphone system as the biomarker for target nucleic acid detection. The presented platform allows the qualitative detection of HIV-1 (n = 54) with 99.1% specificity and 94.6% sensitivity at a clinically relevant threshold value of 1000 virus particles/ml. The cellphone system has the potential to enable the development of rapid and low-cost diagnostics for viruses and other infectious diseases.
机译:在发达国家和发展中国家,HIV-1感染都是主要的健康威胁。移动健康方法和生物工程催化电动机的集成可以允许开发用于HIV-1管理的敏感和便携式技术。在这里,我们报告了一个平台,该平台集成了基于手机的光学传感,回路介导的等温DNA扩增和微电机运动,可用于HIV-1分子检测。样本中HIV-1 RNA的存在会导致形成大型扩增子,从而减少电机的运动。使用手机系统作为目标核酸检测的生物标记物,可以准确地测量电机运动的变化。在临床相关阈值为1000个病毒颗粒/ ml的情况下,该平台可对HIV-1(n = 54)进行99.1%的特异性和94.6%的灵敏度的定性检测。手机系统具有潜力,可以开发出针对病毒和其他传染病的快速且低成本的诊断程序。

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