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首页> 外文期刊>Journal of nanoscience and nanotechnology >A Novel Electrochemical Genosensor Based on Banana and Nano-Gold Modified Electrode Using Tyrosinase Enzyme as Indicator
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A Novel Electrochemical Genosensor Based on Banana and Nano-Gold Modified Electrode Using Tyrosinase Enzyme as Indicator

机译:基于酪氨酸酶作为指示剂的香蕉和纳米金修饰电极电化学电化学传感器

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The electrochemical behavior of the tyrosinase enzyme at the surface of two electrodes, carbon paste electrode (CPE) and nano-gold modified carbon paste electrode (NGCPE), has been studied by cyclic voltammetry. Tyrosinase showed one oxidation peak (around +0.85 V) and one reduction peak at +0.40 V versus Ag vertical bar AgCl vertical bar KCI (3 M). To calculate the values of alpha and k(s), the effect of potential scan rate on the electrochemical properties of tyrosinase was investigated. Cyclic voltammetry and UV-vis absorption techniques were used for the study of interaction between DNA and tyrosinase. The cyclic voltammogram of tyrosinase was obtained in the presence of different types of DNA bases for the study of tyrosinase-DNA binding. The results showed that the hydrogen binding and electrostatic interactions were important interaction mode. Moreover, a variation in tyrosinase signals intensity regarding the interaction to ssDNA and dsDNA was observed. The selectivity of the biosensor was studied using noncomplementary oligonucleotides. Finally, banana modified carbon paste electrode was also prepared to investigate the interaction of banana's tyrosinase with DNA. The limit of detection for DNA probe was calculated 0.33 pM by using the oxidation signal of accumulated tyrosinase in NGCPE.
机译:通过循环伏安法研究了酪氨酸酶在碳糊电极(CPE)和纳米金修饰碳糊电极(NGCPE)两个电极表面的电化学行为。酪氨酸酶相对于Ag垂直条AgCl垂直条KCI(3 M)在+0.40 V处显示一个氧化峰(+0.85 V附近)和一个还原峰。为了计算α和k值,研究了电位扫描速率对酪氨酸酶电化学性质的影响。循环伏安法和紫外可见吸收技术用于研究DNA和酪氨酸酶之间的相互作用。在存在不同类型的DNA碱基的情况下获得酪氨酸酶的循环伏安图,用于研究酪氨酸酶-DNA的结合。结果表明,氢键和静电相互作用是重要的相互作用方式。此外,观察到关于与ssDNA和dsDNA相互作用的酪氨酸酶信号强度的变化。使用非互补寡核苷酸研究了生物传感器的选择性。最后,还制备了香蕉修饰的碳糊电极,以研究香蕉酪氨酸酶与DNA的相互作用。利用NGCPE中积累的酪氨酸酶的氧化信号计算出DNA探针的检出限为0.33 pM。

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