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Highly Sensitive and Practical Detection of Plant Viruses via Electrical Impedance of Droplets on Textured Silicon-Based Devices

机译:通过液滴在基于硅的纹理化设备上的电阻抗,可高度灵敏,实用地检测植物病毒

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摘要

Early diagnosis of plant virus infections before the disease symptoms appearance may represent a significant benefit in limiting disease spread by a prompt application of appropriate containment steps. We propose a label-free procedure applied on a device structure where the electrical signal transduction is evaluated via impedance spectroscopy techniques. The device consists of a droplet suspension embedding two representative purified plant viruses i.e., Tomato mosaic virus and Turnip yellow mosaic virus, put in contact with a highly hydrophobic plasma textured silicon surface. Results show a high sensitivity of the system towards the virus particles with an interestingly low detection limit, from tens to hundreds of attomolar corresponding to pg/mL of sap, which refers, in the infection time-scale, to a concentration of virus particles in still-symptomless plants. Such a threshold limit, together with an envisaged engineering of an easily manageable device, compared to more sophisticated apparatuses, may contribute in simplifying the in-field plant virus diagnostics.
机译:在疾病症状出现之前对植物病毒感染进行早期诊断,可以通过立即采取适当的围堵措施来限制病害传播,这可能是一项重大益处。我们提出了一种应用于设备结构的无标签程序,其中通过阻抗谱技术评估了电信号传导。该装置由液滴悬液组成,液滴悬液中嵌入了两种代表性的纯化植物病毒,即番茄花叶病毒和芜菁黄花叶病毒,并与高度疏水的等离子织构化的硅表面接触。结果表明,该系统对病毒颗粒具有很高的灵敏度,且检测限极低,从几十到数百大摩尔,相当于pg / mL的汁液,在感染时间范围内,指的是病毒颗粒中的浓度。仍然没有症状的植物。与更复杂的设备相比,这种阈值限制以及易于管理的设备的预期工程设计可有助于简化现场植物病毒诊断。

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