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Label-free detection of canonical DNA bases, uracil and 5-methylcytosine in DNA oligonucleotides using linear sweep voltammetry at a pyrolytic graphite electrode

机译:在热解石墨电极下使用线性扫描伏安法在DNA寡核苷酸中无标记检测规范DNA碱基,尿嘧啶和5-甲基胞嘧啶

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摘要

An innovative approach to label-free voltammetric analysis of DNA at a pyrolytic graphite electrode (PGE) within a broad range of potentials (from -2.0 to + 1.6 V) in an acetate buffer (pH 5) is presented. Using specifically designed DNA nonamers, we demonstrate not only anodic oxidation, but for the first time also cathodic reduction of nucleobases at the PGE. In addition, products of irreversible oxidation/reduction of the parent bases are shown to yield analytically useful, base-specific cathodic/anodic signals, making it possible to distinguish between the canonical bases (adenine, cytosine, guanine and thymine), uracil (U) and 5-methylcytosine (mC) in DNA. Furthermore, selective electrochemical "switching off" of the redox signals specific to certain nucleobases is presented as a way to resolve overlapping signals. Similarly, newly reported signals corresponding to electrochemically transformed bases can be "switched on" under specific conditions. This approach can be utilized for fast and facile simultaneous label-free analysis of bases in DNA, including mC and U, and to uncover overlapping signals. This significantly extends the possible applications of PGE in DNA research and (bio) sensor development.
机译:提出了一种在乙酸盐缓冲液(pH5)的宽范围电位(从-2.0至+ 1.6V)内的热解石墨电极(PGE)中DNA的无标记的无标记伏安分析的创新方法。使用专门设计的DNA壬酯,我们不仅展示了阳极氧化,而且第一次也是在PGE处的核酶的阴极还原。此外,显示母体碱的不可逆氧化/减少的产物,以产生分析有用的基本特定的基本阴极/阳极信号,使得可以区分规范基础(腺嘌呤,胞嘧啶,鸟嘌呤和胸腺嘧啶)尿嘧啶(U. DNA中的5-甲基胞嘧啶(MC)。此外,将特定于某些核碱基酶特异的氧化还原信号的选择性电化学“切换”作为解析重叠信号的方法。类似地,在特定条件下,对应于电化学转换的碱基的新报告的信号可以“接通”。这种方法可用于在DNA中的基质的快速和体内同时标记分析,包括MC和U,并揭示重叠信号。这显着扩展了PGE在DNA研究和(BIO)传感器开发中的可能应用。

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