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Enzyme-Amplified Amperometric Detection of DNA Using Redox Mediating Films on Gold Microelectrodes

机译:在金微电极上使用氧化还原介导膜的酶放大的安培法检测DNA。

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摘要

Here we describe an amperometric assay for enzyme-labeled detection of DNA hybridization based on a redox polymer film, cross-linked and co-immobilized, with a 20-mer oligonucleotide, to pre-adsorbed cysteamine on gold microelectrode surfaces. Hybridization between the immobilized probe DNA and a biotin-modified target DNA (designed from the ssrA gene of Listeria monocytogenes), followed by addition of an enzyme (glucose oxidase)-avidin conjugate and glucose, results in bioelectrocatalytic oxidation of glucose mediated by the redox polymer, generating significant amplification. The use of gold microelectrodes (25 mu m, 40 mu m, 100 mu m diameter), coupled to careful preparation of surfaces, electronic shielding and background subtraction, results in improved analytical performance, compared to that at macroelectrodes, yielding a limit of quantification of ca. 0.6 pM, corresponding to the presence of ca. 2.5 million copies in the 7 mu L assay droplet.
机译:在这里,我们描述了一种基于酶氧化检测DNA杂交的安培测定法,该方法基于氧化还原聚合物膜,与20聚体寡核苷酸交联并共固定,以预吸附在金微电极表面上的半胱胺。固定的探针DNA与生物素修饰的靶DNA(根据单核细胞增多性李斯特菌的ssrA基因设计)之间的杂交,然后添加酶(葡萄糖氧化酶)-亲和素偶联物和葡萄糖,导致氧化还原介导的葡萄糖发生生物电催化氧化聚合物,产生明显的扩增。与大电极相比,金微电极(直径25μm,40μm,100μm)的使用,加上精心准备的表面,电子屏蔽和背景扣除,可提高分析性能,从而限制了定量约。 0.6 pM,对应于ca的存在。在7μL的测定液滴中有250万个拷贝

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