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A QCM Biosensor Based on Gold Nanoparticles Amplification for Real-time Bacteria DNA Detection

机译:基于金纳米粒子扩增的QCM生物传感器用于实时细菌DNA检测

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A DNA piezoelectric biosensing method for real-time detection of E.coli O157:H7 in a circulating-flow system was developed in this study. The thioled surface of the Au electrode could be immobilized by many inner Au nanoparticles, then more thiolated single-stranded DNA (ssDNA) probes which was specific to E. coli O157:H7 eaeA gene could be fixed through Au-SH bonding. The hybridization was induced by exposing the ssDNA probe to the complementary target DNA, then resulted in the mass change and corresponding frequency shifts ( 驴f ) of the QCM. The outer avidin-coated Au nanoparticles could combine with the target DNA to increase the mass. The inner and outer Au nanoparticles with different diameters would play the "signal amplifier" role at different layer for improving the detection limit and sensitivity. The electrochemical techniques, cyclic voltammetry (CV) and electrochemical impedance spectroscopy (EIS), are adopted to demonstrate and character each treatment. The target DNA corresponding to 2.0脳103 colony forming unit (CFU)/ml E. coli O157:H7 cells can be detected by this biosensor, so it is practical to develop a sensitive and effective QCM biosensor for pathogenic bacteria detection based on specific DNA analysis.
机译:本研究开发了一种用于实时检测E.COLI O157:H7的DNA压电生物腐蚀方法。可以通过许多内部Au纳米颗粒固定Au电极的硫醇表面,然后通过Au-Sh键合来固定对大肠杆菌O157的更硫化的单链DNA(SSDNA)探针。通过将SSDNA探针暴露于互补靶DNA来诱导杂交,然后导致QCM的质量变化和相应的频移(驴F)。外抗叶蛋白涂覆的Au纳米颗粒可以与靶DNA组合以增加质量。具有不同直径的内部和外部Au纳米颗粒将在不同层处发挥“信号放大器”作用,以改善检测极限和灵敏度。采用电化学技术,循环伏安法(CV)和电化学阻抗光谱(EIS)来证明和症状每种治疗。该生物传感器可以检测对应于2.0103菌落形成单元(CFU)/ mL大肠杆菌O157:H7细胞的靶DNA,因此可以利用基于特定DNA的致病细菌检测敏感和有效的QCM生物传感器实际分析。

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