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A sensitive electrochemical DNA biosensor for Microcystis spp. sequence detection based on an Ag@Au NP composite film

机译:用于微囊藻属的灵敏的电化学DNA生物传感器。 Ag @ Au NP复合膜的序列检测

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An electrochemical DNA biosensor was developed for detecting a gene sequence related to blooming genera of Cyanobacteria, Microcystis spp. In this sensor, gold nanoparticles (Au NPs) were electrodeposited on a gold electrode (GE) surface to enhance the amount of DNA immobilization. Silver was anchored on Au NPs to increase the electrochemical signal of hybridization because metallic films deposited as a continuous layer on a solid electrode can greatly enhance the rate of electron transfer. In the differential peak voltammograms, the peak current of the methylene blue (MB) hybridization indicator was about 10 times that of direct detection. Therefore, lower detection limits and a wider linear range for the biosensor were obtained. Based on silver enhancement, the change in the reduction peak current before and after hybridization (?”ip) of MB was linearly related to the concentration of the target DNA sequence in the range of 3.0 ?— 10a?’12 to 1.2 ?— 10a?’10 mol La?’1 with a detection limit of 1.6 ?— 10a?’12 mol La?’1. In addition, the biosensor had good selectivity, and the base mismatch sequences from specific species could be distinguished.
机译:开发了一种电化学DNA生物传感器,用于检测与蓝藻微囊藻属的开花属相关的基因序列。在该传感器中,金纳米颗粒(Au NPs)电沉积在金电极(GE)表面上,以增强DNA固定量。银被固定在Au NPs上以增加杂交的电化学信号,因为在固体电极上沉积为连续层的金属膜可以大大提高电子转移的速度。在差分峰伏安图中,亚甲基蓝(MB)杂交指示剂的峰值电流约为直接检测的峰值电流的10倍。因此,获得了生物传感器的较低的检测限和较宽的线性范围。基于银的增强,MB杂交前后还原峰电流的变化(Δip)与目标DNA序列的浓度在3.0?-10a?'12至1.2?-10a范围内线性相关。检出限为1.6≤10molLa -1,10 -10a≤12molLa -1。另外,该生物传感器具有良好的选择性,并且可以区分来自特定物种的碱基错配序列。

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