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DNA hole transport on an electrode: Application to effective photoelectrochemical SNP typing

机译:电极上的DNA空穴传输:在有效的光电化学SNP分型中的应用

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摘要

A useful feature of DNA is that long-range hole transport through DNA is readily achieved. Photostimulated long-range hole transport through DNA has prospective use in the development of a conceptually new electrochemical single-nucleotide polymorphism (SNP) typing method for use as a versatile platform for gene diagnostics and pharmacogenetics. We have applied artificial DNAs designed for photostimulated long-range hole transport through DNA to SNP typing. By hybridizing photosensitizer-equipped DNA probes, immobilized on gold working electrodes, with a target DNA strand containing an SNP site, we observed a cathodic photocurrent, which markedly changed depending on the nature of the base at the specific site. The use of a combination of hole-transporting bases constitutes a very powerful method for a single-step electrochemical assay applicable to SNP typing of all types of sequences.
机译:DNA的一个有用特征是很容易实现通过DNA的远距离空穴传输。通过DNA进行光刺激的远程空穴传输在开发概念上新的电化学单核苷酸多态性(SNP)分型方法方面具有前瞻性用途,该方法可用作基因诊断和药物遗传学的多功能平台。我们已经应用了人工DNA,旨在通过DNA将光刺激的远程空穴传输到SNP分型。通过将固定在金工作电极上的装有光敏剂的DNA探针与含有SNP位点的目标DNA链杂交,我们观察到了阴极光电流,该光电流根据特定位点上碱基的性质发生了明显变化。空穴传输碱基的组合的使用构成了一种非常有效的方法,可用于单步电化学测定,适用于所有类型序列的SNP分型。

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