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A novel electrochemical biosensor based on dynamic polymerase-extending hybridization for E. coli O157:H7 DNA detection

机译:基于动态聚合酶-延伸杂交技术的新型电化学生物传感器用于大肠杆菌O157:H7 DNA检测

摘要

A novel biosensor based on single-stranded DNA (ssDNA) probe functionalized aluminum anodized oxide (AAO) nanopore membranes was demonstrated for Escherichia coli O157:H7 DNA detection. An original and dynamic polymerase-extending (PE) DNA hybridization procedure is proposed, where hybridization happens in the existence of Taq DNA polymerase and dNTPs under controlled reaction temperature. The probe strand would be extended as long as the target DNA strand, then the capability to block the ionic flow in the pores has been prominently enhanced by the double strand complex. We have investigated the variation of ionic conductivity during the fabrication of the film and the hybridization using cyclic voltammetry and impedance spectroscopy. The present approach provides low detection limit for DNA (a few hundreds of pmol), rapid label-free and easy-to-use bacteria detection, which holds the potential for future use in various ss-DNA analyses by integrated into a self-contained biochip.
机译:一种新型的基于单链DNA(ssDNA)探针功能化铝阳极氧化(AAO)纳米孔膜的新型生物传感器用于大肠杆菌O157:H7 DNA检测。提出了一种原始的动态聚合酶延伸(PE)DNA杂交方法,该杂交过程是在控制反应温度的情况下,在存在Taq DNA聚合酶和dNTP的情况下发生杂交。探针链将延伸至目标DNA链,只要双链复合物显着增强了阻断孔中离子流的能力。我们已经研究了膜的制造过程中离子电导率的变化以及使用循环伏安法和阻抗谱进行杂交的过程。本方法为DNA(数百pmol)提供了低检测限,快速的无标记和易于使用的细菌检测,通过整合到一个独立的设备中,具有未来在各种ss-DNA分析中使用的潜力。生物芯片。

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