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首页> 外文期刊>Analytical Biochemistry: An International Journal of Analytical and Preparative Methods >Electrochemical label-free and sensitive nanobiosensing of DNA hybridization by graphene oxide modified pencil graphite electrode
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Electrochemical label-free and sensitive nanobiosensing of DNA hybridization by graphene oxide modified pencil graphite electrode

机译:通过石墨烯氧化物改性的铅笔石墨电极进行DNA杂交的电化学标记和敏感的纳米极细

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摘要

Based on the strong interaction between single-stranded DNA (ss-DNA) and graphene material, we have constructed a novel label-free electrochemical biosensor for rapid and facile detection of short sequences ss-DNA molecules related to hepatitis C virus 1a using graphene oxide modified pencil graphite electrode. The sensing mechanism is based on the superior adsorption of single-stranded DNA to GO over double stranded DNA (ds-DNA). The intrinsic guanine oxidation signal measured by differential pulse voltammetry (DPV) has been used for duplex DNA formation detection. The probe ss-DNA adsorbs onto the surface of GO via the pi-pi* stacking interactions leading to a strong background guanine oxidation signal. In the presence of complementary target, formation of helix which has weak binding ability to GO induced ds-DNA to release from the electrode surface and significant variation in differential pulse voltammetric response of guanine bases. The results indicated that the oxidation peak current was proportional to the concentration of complementary strand in the range of 0.1 nM-0.5 mu M with a detection limit of 4.3 x 10(-11) M. The simple fabricated electrochemical biosensor has high sensitivity, good selectivity, and could be applied as a new platform for a range of target molecules in future. (C) 2017 Elsevier Inc. All rights reserved.
机译:基于单链DNA(SS-DNA)和石墨烯材料之间的强相互作用,我们构建了一种新的无标记电化学生物传感器,用于使用石墨烯氧化物与丙型蛋白C病毒1a相关的短序列SS-DNA分子的快速和容易检测改性铅笔石墨电极。传感机制基于单链DNA的优异吸附,越过双链DNA(DS-DNA)。通过差分脉冲伏安法(DPV)测量的内在鸟嘌呤氧化信号已用于双相DNA形成检测。探针SS-DNA通过PI-PI *堆叠相互作用在PI-PI *堆叠相互作用上进行,导致强大的背景脱丝氧化信号。在存在互补靶的情况下,形成螺旋具有较弱的结合能力,使得从电极表面释放到诱导的DS-DNA以及鸟嘌呤碱基的差分脉冲伏安响应的显着变化。结果表明,氧化峰值电流与0.1nm-0.5μm的互补链浓度成比例,其检测限为4.3×10(-11)m。简单的制造电化学生物传感器具有高灵敏度,好选择性,并且可以将来作为一系列目标分子的新平台应用。 (c)2017年Elsevier Inc.保留所有权利。

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