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Detection of femtomolar level osteosarcoma-related gene via a chronocoulometric DNA biosensor based on nanostructure gold electrode

机译:基于纳米金电极的计时基因DNA生物传感器检测飞沫水平的骨肉瘤相关基因

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摘要

In this paper, a sensitive chronocoulometric deoxyribonucleic acid (DNA) biosensor based on a nanostructure gold electrode was fabricated for detection of the femtomolar level survivin gene which was correlated with osteosarcoma by using hexaamine-ruthenium III complexes, [Ru(NH3)6]3+, as the electrochemical indicator. The effect of different frequencies on the real surface area of the nanostructure gold electrode obtained by repetitive square-wave oxidation reduction cycle was investigated. At the optimal frequency of 8000 Hz, the real surface of the developed nanostructure gold electrode was about 42.5 times compared with that of the bare planar gold electrode. The capture probe DNA was immobilized on the nanostructure gold electrode and hybridized with target DNA. Electrochemical signals of hexaamine-ruthenium III bound to the anionic phosphate of DNA strands via electrostatic interactions were measured by chronocoulometry before and after hybridization. The increase of the charges of hexaamine-ruthenium III was observed upon hybridization of the probe with target DNA. Results indicate that this DNA biosensor could detect the femtomole (fM) concentration of the DNA target quantitatively in the range of 50 fM to 250 fM; the detection limit of this DNA biosensor was 5.6 fM (signal to noise = 3). This new biosensor exhibits excellent sensitivity and selectivity and has been used for an assay of polymerase chain reaction (PCR) with a satisfactory result.
机译:本文使用六胺-钌III络合物[Ru(NH3)6] 3制备了基于纳米结构金电极的灵敏计时生物脱氧核糖核酸(DNA)生物传感器,用于检测与骨肉瘤相关的飞沫水平survivin基因。 +,作为电化学指示剂。研究了不同频率对通过重复方波氧化还原循环获得的纳米结构金电极的实际表面积的影响。在8000 Hz的最佳频率下,与裸露的平面金电极相比,已开发的纳米结构金电极的实际表面约为42.5倍。将捕获探针DNA固定在纳米结构金电极上,并与靶DNA杂交。在杂交之前和之后,通过计时库仑法测量经由静电相互作用结合到DNA链的阴离子磷酸酯上的六胺-钌III的电化学信号。在探针与靶DNA杂交后观察到六胺-钌III的电荷增加。结果表明,这种DNA生物传感器可以定量检测50 fM至250 fM范围内的DNA靶标的飞摩尔(fM)浓度。该DNA生物传感器的检出限为5.6 fM(信噪比= 3)。这种新型生物传感器具有出色的灵敏度和选择性,已用于测定聚合酶链反应(PCR)并获得令人满意的结果。

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