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Selective detections of single-viruses using solid-state nanopores

机译:使用固态纳米孔选择性检测单一病毒

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摘要

Rapid diagnosis of flu before symptom onsets can revolutionize our health through diminishing a risk for serious complication as well as preventing infectious disease outbreak. Sensor sensitivity and selectivity are key to accomplish this goal as the number of virus is quite small at the early stage of infection. Here we report on label-free electrical diagnostics of influenza based on nanopore analytics that distinguishes individual virions by their distinct physical features. We accomplish selective resistive-pulse sensing of single flu virus having negative surface charges in a physiological media by exploiting electroosmotic flow to filter contaminants at the Si3N4 pore orifice. We demonstrate identifications of allotypes with 68% accuracy at the single-virus level via pattern classifications of the ionic current signatures. We also show that this discriminability becomes >95% under a binomial distribution theorem by ensembling the pulse data of >20 virions. This simple mechanism is versatile for point-of-care tests of a wide range of flu types.
机译:在症状发作之前快速诊断流感,可以通过减少严重并发症的风险以及预防传染病的爆发,彻底改变我们的健康状况。传感器的灵敏度和选择性是实现此目标的关键,因为在感染的初期病毒数量很少。在这里,我们基于纳米孔分析报告了流感的无标签电气诊断,该分析通过其独特的物理特征来区分各个病毒体。我们通过利用电渗流过滤Si3N4孔口处的污染物,完成了对在生理介质中具有负表面电荷的单一流感病毒的选择性电阻脉冲感测。我们通过离子电流特征的模式分类,证明了在单病毒水平上具有68%准确性的同种异型的鉴定。我们还表明,通过组合> 20个病毒体的脉冲数据,在二项分布定理下,这种可分辨性变得> 95%。这种简单的机制可用于多种流感类型的即时检验。

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