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首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >Au nanoparticles/hollow molybdenum disulfide microcubes based biosensor for microRNA-21 detection coupled with duplex-specific nuclease and enzyme signal amplification
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Au nanoparticles/hollow molybdenum disulfide microcubes based biosensor for microRNA-21 detection coupled with duplex-specific nuclease and enzyme signal amplification

机译:在nanoparticles /空心钼disulfide基于microcubes microRNA-21生物传感器检测加上duplex-specific核酸酶和酶信号放大

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摘要

An ultrasensitive electrochemical biosensor for detecting microRNAs is fabricated based on hollow molybdenum disulfide (MoS2) microcubes. Duplex-specific nuclease, enzyme and electrochemical chemical chemical redox cycling are used for signal amplification. Hollow MoS2 microcubes constructed by ultrathin nanosheets are synthesized by a facile template-assisted strategy and used as supporting substrate. For biosensor assembling, biotinylated s5DNA capture probes are first immobilized on Au nanoparticles (AuNPs)/MoS2 modified electrode in order to combine with streptavidin-conjugated alkaline phosphatase (SA-ALP). When capture probes hybridize with miRNAs, duplex-specific nuclease cleaves the formative duplexes. At the moment, the biotin group strips from the electrode surface and SA-ALP is incapacitated to attach onto electrode. Then, ascorbic acids induce the electrochemical chemical chemical redox cycling to produce electrochemical response in the presence of ferrocene methanol and tris (2-carboxyethyl) phosphine. Under optimum conditions, the proposed biosensor shows a good linear relationship between the current variation and logarithm of the microRNAs concentration ranging from 0.1 fM to 0.1 pM with a detection limit of 0.086 fM (S/ N=3). Furthermore, the biosensor is successfully applied to detect target miRNA-21 in human serum samples.
机译:一种超灵敏的电化学生物传感器检测小分子核糖核酸是基于空心制作的二硫化钼microcubes(监理)。Duplex-specific核酸酶,酶和电化学化学化学氧化还原循环用于信号放大。超薄nanosheets microcubes构造由简单template-assisted合成战略和用作支撑衬底。生物传感器组装、生物素化的s5DNA捕捉Au纳米粒子探测器首先固定化(AuNPs) /二硫化钼电极,以便修改结合streptavidin-conjugated碱性磷酸酶(SA-ALP)。杂交和microrna duplex-specific核酸酶劈开成型工器。生物素组从电极条表面和SA-ALP附加丧失能力到电极上。电化学化学化学氧化还原循环产生电化学反应二茂铁甲醇和三的存在磷化氢(2-carboxyethyl)。条件下,该生物传感器显示良好电流变体之间的线性关系和小分子核糖核酸浓度的对数从调频0.1到0.1点,检测限制0.086 fM (S / N = 3)。成功应用于生物传感器检测到目标miRNA-21人类血清样本。

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