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Development of an Electrochemical Paper-Based Analytical Device for Trace Detection of Virus Particles

机译:基于电化学纸的分析装置的追踪病毒粒子的追踪

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摘要

Viral pathogens are a serious health threat around the world, particularly in resource limited settings, where current sensing approaches are often insufficient and slow, compounding the spread and burden of these pathogens. Here, we describe a label-free, point-of-care approach toward detection of virus particles, based on a microfluidic paper-based analytical device with integrated microwire Au electrodes. The device is initially characterized through capturing of streptavidin modified nanoparticles by biotin-modified microwires. An order of magnitude improvement in detection limits is achieved through use of a microfluidic device over a classical static paper-based device, due to enhanced mass transport and capturing of particles on the modified electrodes. Electrochemical impedance spectroscopy detection of West Nile virus particles was carried out using antibody functionalized Au microwires, achieving a detection limit of 10.2 particles in 50 mu L of cell culture media. No increase in signal is found on addition of an excess of a nonspecific target (Sindbis). This detection motif is significantly cheaper (similar to$1 per test) and faster (similar to 30 min) than current methods, while achieving the desired selectivity and sensitivity. This sensing motif represents a general platform for trace detection of a wide range of biological pathogens.
机译:病毒病原体是世界各地的严重健康威胁,特别是在资源有限的环境中,当前感测方法通常不足,缓慢,复制这些病原体的蔓延和负担。在这里,我们描述了一种基于微流体纸的分析装置,用于检测病毒颗粒的无标签,护理点方法,其具有集成的微线AU电极。最初通过生物素改性的微线捕获链霉抗生物素蛋白改性纳米颗粒的装置表征。由于在经典的静态纸基装置上使用微流体装置,通过在经典的静态纸基装置上使用微流体装置来实现检测限的数量级提高,由于改进的电极上的颗粒捕获。使用抗体官能化Au微线进行西尼罗病毒颗粒的电化学阻抗光谱检测,在50μl细胞培养基中实现10.2颗粒的检出限。在添加过量的非特异性目标(SINDBIS)上没有发现信号增加。该检测图案明显更便宜(类似于每次测试1美元),比当前方法更快(类似于30分钟),同时实现所需的选择性和灵敏度。该感测基序代表了痕量探测各种生物病原体的一般平台。

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