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Selective Detection of 8-Oxo-2'-deoxyguanosine in Single-Stranded DNA via Nanopore Sensing Approach

机译:纳米孔传感方法选择性检测单链DNA中的8-Oxo-2'-脱氧鸟苷

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摘要

We have developed a nanopore sensing approach for the selective detection of 8-oxo-2'-deoxyguanosine (8-oxoG) in single-stranded DNA. First, 1,12-dodecanediamine is coupled with 8-oxoG-containing DNA molecules in high yield which leaves a free amine group for subsequent attaching of an adamantane moiety. After incubation with cucurbit[7]uril, the host-guest complex-modified DNA hybrid is translocated through an alpha-hemolysin nanopore. Highly characteristic events can be recorded and used to quantify the 8-oxoG-DNA content in a DNA mixture. Compared with the existing methods, this study provides a reliable, quick, and low-cost approach for the detection of 8-oxoG site in single-stranded DNA at the single-molecule level, particularly suitable for high-throughput screening of a massive number of samples.
机译:我们已经开发出一种纳米孔传感方法,用于选择性检测单链DNA中的8-oxo-2'-deoxyguanosine(8-oxoG)。首先,以高产率将1,12-十二烷二胺与含8-oxoG的DNA分子偶联,留下游离的胺基,用于随后的金刚烷部分的连接。与葫芦[7]尿嘧啶孵育后,宿主-客体复合物修饰的DNA杂种通过α-溶血素纳米孔易位。可以记录高度特征的事件,并将其用于定量DNA混合物中的8-oxoG-DNA含量。与现有方法相比,本研究提供了一种可靠,快速且低成本的方法,能够以单分子水平检测单链DNA中的8-oxoG位点,特别适用于大量的高通量筛选样本。

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