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Label-free Detection of Influenza Viruses using a Reduced Graphene Oxide-based Electrochemical Immunosensor Integrated with a Microfluidic Platform

机译:使用减少的基于氧化石墨烯的电化学免疫传感器与微流控平台集成,无标签检测流感病毒。

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摘要

Reduced graphene oxide (RGO) has recently gained considerable attention for use in electrochemical biosensing applications due to its outstanding conducting properties and large surface area. This report presents a novel microfluidic chip integrated with an RGO-based electrochemical immunosensor for label-free detection of an influenza virus, H1N1. Three microelectrodes were fabricated on a glass substrate using the photolithographic technique, and the working electrode was functionalized using RGO and monoclonal antibodies specific to the virus. These chips were integrated with polydimethylsiloxane microchannels. Structural and morphological characterizations were performed using X-ray photoelectron spectroscopy and scanning electron microscopy. Electrochemical studies revealed good selectivity and an enhanced detection limit of 0.5 PFU mL−1, where the chronoamperometric current increased linearly with H1N1 virus concentration within the range of 1 to 104 PFU mL−1 (R2 = 0.99). This microfluidic immunosensor can provide a promising platform for effective detection of biomolecules using minute samples.
机译:还原氧化石墨烯(RGO)由于其出色的导电性能和较大的表面积,最近在电化学生物传感应用中得到了广泛的关注。该报告提出了一种新型的微流控芯片,该芯片与基于RGO的电化学免疫传感器集成在一起,可无标记地检测流感病毒H1N1。使用光刻技术在玻璃基板上制造了三个微电极,并使用RGO和对该病毒具有特异性的单克隆抗体对工作电极进行了功能化。这些芯片与聚二甲基硅氧烷微通道集成在一起。使用X射线光电子能谱和扫描电子显微镜进行结构和形态表征。电化学研究显示出良好的选择性和增强的检测限0.5 PFU mL-1,其中计时电流随着H1N1病毒浓度在1至104 PFU mL-1范围内线性增加(R2 = 0.99)。这种微流体免疫传感器可以为使用微小样品有效检测生物分子提供有希望的平台。

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