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Mutant DNA Detection on Graphene Oxide with SYBR Green I

机译:SYBR Green I在氧化石墨烯上的突变DNA检测

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Graphene oxide (GO) has a large surface-to-volume ratio and contains hydrophobic hexagonal rings that can interact with biomolecules. Single-stranded DNA (ssDNA) adsorbs more strongly to the surface of GO than double stranded DNA (dsDNA) via hydrophobic interaction between nucleobases of DNA and the hydrophobic surface of GO. This study was designed to detect samples containing various mismatched DNAs under different pH and salt conditions by sequential use of GO and SYBR Green I. Our results demonstrated that a GO-based fluorescence assay showed little difference in fluorescence intensity between perfectly matched DNA (pmDNA) and mutant DNAs. However, an SYBR Green I-assisted assay elicited large difference in fluorescence intensity between the pmDNA and mismatched DNAs. This enhances the detection sensitivity and efficiency between pmDNA and mutant DNA.
机译:氧化石墨烯(GO)的表面积与体积之比大,并且含有可以与生物分子相互作用的疏水六边形环。单链DNA(ssDNA)通过双链DNA(dsDNA)通过DNA的核碱基与GO的疏水表面之间的疏水相互作用更强地吸附到GO的表面。这项研究旨在通过顺序使用GO和SYBR Green I来检测在不同pH和盐条件下包含各种错配DNA的样品。我们的结果表明,基于GO的荧光分析显示,完美匹配的DNA(pmDNA)之间的荧光强度差异很小和突变DNA。但是,SYBR Green I辅助测定在pmDNA和错配的DNA之间引起了荧光强度的巨大差异。这提高了pmDNA和突变DNA之间的检测灵敏度和效率。

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