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Fabrication of Electrochemical Influenza Virus (H1N1) Biosensor Composed of Multifunctional DNA Four-Way Junction and Molybdenum Disulfide Hybrid Material

机译:电化学流感病毒(H1N1)生物传感器的制备组成由多功能DNA四路结和二硫化钼杂化材料组成

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摘要

The outbreak of the influenza virus (H1N1) has symptoms such as coughing, fever, and a sore throat, and due to its high contagious power, it is fatal to humans. To detect H1N1 precisely, the present study proposed an electrochemical biosensor composed of a multifunctional DNA four-way junction (4WJ) and carboxyl molybdenum disulfide (carboxyl-MoS2) hybrid material. The DNA 4WJ was constructed to have the hemagglutinin aptamer on the head group (recognition part); each of the two arms has four silver ions (signal amplification part), and the tail group has an amine group (anchor). This fabricated multifunctional DNA 4WJ can specifically and selectively bind to hemagglutinin. Moreover, the carboxyl-MoS2 provides an increase in the sensitivity of this biosensor. Carboxyl-MoS2 was immobilized using a linker on the electrode, followed by the immobilization of the multifunctional 4WJ on the electrode. The synthesis of carboxyl-MoS2 was confirmed by field emission scanning electron microscopy (FE-SEM), and the surface of the electrode was confirmed by atomic force microscopy. When H1N1 was placed in the immobilized electrode, the presence of H1N1 was confirmed by electrochemical analysis (cyclic voltammetry, electrochemical impedance spectroscopy). Through selectivity tests, it was also possible to determine whether this sensor responds specifically and selectively to H1N1. We confirmed that the biosensor showed a linear response to H1N1, and that H1N1 could be detected from 100 nM to 10 pM. Finally, clinical tests, in which hemagglutinin was diluted with human serum, showed a similar tendency to those diluted with water. This study showed that the multi-functional DNA 4WJ and carboxyl-MoS2 hybrid material can be applied to a electrochemical H1N1 biosensor.
机译:流感病毒(H1N1)的爆发具有咳嗽,发热和喉咙痛等症状,并且由于其高传染性,它对人类致命。为了精确地检测H1N1,本研究提出了由多功能DNA四路接线(4WJ)和羧基二硫化物(羧基-MOS2)杂化材料组成的电化学生物传感器。 DNA 4Wj被构造成具有头部组上的血凝素适体(识别部分);两个臂中的每一个具有四个银离子(信号放大部分),尾部组具有胺基(锚)。该制造的多功能DNA 4WJ可以特别且选择性地结合血凝素。此外,羧基-MOS2提供该生物传感器的敏感性的增加。使用电极上的接头固定羧基-MOS2,然后在电极上固定多功能4WJ。通过场发射扫描电子显微镜(Fe-SEM)确认羧基-MOS2的合成,通过原子力显微镜确认电极的表面。当将H1N1置于固定的电极中时,通过电化学分析(循环伏安法,电化学阻抗光谱)确认H1N1的存在。通过选择性测试,还可以确定该传感器是否具体并且选择性地响应H1N1。我们证实,生物传感器对H1N1显示了线性响应,并且可以从100nm到10μm检测H1N1。最后,用人血清稀释血凝素的临床试验显示出与水稀释的那些类似的趋势。该研究表明,多功能DNA 4WJ和羧基-MOS2杂化材料可以应用于电化学H1N1生物传感器。

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