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首页> 外文期刊>Electroanalysis >An electrochemical DNA sensor based on electrodepositing aluminum ion films on stearic acid-modified carbon paste electrode and its application for the detection of specific sequences related to bar gene and CP4 Epsps gene
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An electrochemical DNA sensor based on electrodepositing aluminum ion films on stearic acid-modified carbon paste electrode and its application for the detection of specific sequences related to bar gene and CP4 Epsps gene

机译:基于铝离子膜在硬脂酸修饰的碳糊电极上电沉积的电化学DNA传感器及其在检测与bar基因和CP4 Epsps基因相关的特定序列中的应用

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摘要

An electrochemical DNA biosensor was fabricated by immobilizing DNA probe on aluminum ion films that were electrodeposited on the surface of the stearic acid-modified carbon paste electrode (CPE). DNA immobilization and hybridization were characterized with cyclic voltammetry (CV) by using methylene blue (MB) as indicator. MB has a couple of well-defined voltammetric redox peaks at the CPE. The currents of redox peaks of MB decreased after depositing aluminum ion films on the CPE (Al(III)/CPE) and increased dramatically after immobilizing DNA probe (ssDNA/Al(III)/CPE). Hybridization of DNA probe led to a marked decrease of the peak currents of MB, which can be used to detect the target single-stranded DNA. The conditions for the preparation of Al(III)/CPE, and DNA immobilization and hybridization were optimized. The specific sequences related to bar transgene in the transgenic corn and the PCR amplification of CP4 epsps gene from the sample of transgenic roundup ready soybean were detected by differential pulse voltammetry (DPV) with this new electrochemical DNA biosensor. The difference between the peak currents of MB at ssDNA/Al(III)/CPE and that at hybridization DNA modified electrode (dsDNA/Al(III)/CPE) was applied to determine the Specific sequence related to the target bar gene with the dynamic range comprised between 1.0 X 10(-7) mol/L to 1.0 x 10(-4) mol/L. A detection limit of 2.25 x.10(-8) mol/L. of oligonucleotides can be estimated.
机译:通过将DNA探针固定在电沉积在硬脂酸修饰的碳糊电极(CPE)表面上的铝离子膜上,制造出电化学DNA生物传感器。以亚甲基蓝(MB)为指示剂,通过循环伏安法(CV)对DNA的固定和杂交进行了表征。 MB在CPE处有几个明确的伏安氧化还原峰。 MB的氧化还原峰电流在CPE(Al(III)/ CPE)上沉积铝离子膜后降低,而在固定DNA探针(ssDNA / Al(III)/ CPE)后急剧增加。 DNA探针的杂交导致MB的峰值电流显着降低,可用于检测目标单链DNA。优化了制备Al(III)/ CPE的条件,以及DNA固定和杂交的条件。使用新型电化学DNA生物传感器,通过差动脉冲伏安法(DPV)检测了转基因玉米中与bar转基因相关的特定序列,以及从转基因抗农达大豆样品中CP4 epsps基因的PCR扩增。应用ssDNA / Al(III)/ CPE和杂交DNA修饰电极(dsDNA / Al(III)/ CPE)的MB峰值电流之间的差异来确定与靶bar基因相关的特异性序列范围介于1.0 X 10(-7)mol / L至1.0 x 10(-4)mol / L。检出限为2.25 x.10(-8)mol / L。寡核苷酸的数目可以估计。

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