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Ultrasensitive Detection of Mitochondrial DNA Mutation by Graphene Oxide/DNA Hydrogel Electrode

机译:氧化石墨烯/ DNA水凝胶电极超灵敏检测线粒体DNA突变

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摘要

Ultrasensitive detection of nucleic acid has attracted considerable attention recently in academic research and clinic diagnostics. Current approaches for DNA analysis involve complicated or expensive processes for labeling and often yield a high detection limit. In this study, a hydrogel electrode prepared from graphene oxide and fish sperm DNA is used for label-free mitochondrial DNA detection by impedimetric approach. The hydrogel has a bionic structure containing rich water and natural biomolecule fish sperm DNA that would benefit the adsorption and hybridization of DNA. Graphene oxide is a semiconductor and its conductivity can be improved by doping negatively charged DNA molecules. The result shows that the conductivity and impedance change of hydrogel electrode could be tuned by its length and component. The linear range for DNA detection by the optimized hydrogel is from 1.0 × 10~(-9) to 1.0 × 10~(-20) M with a detection limit of 1.0 × 10~(-20) M. The result is ascribed to the bionic structure and tunable conductivity of hydrogel electrode. The hydrogel electrode has been used to detect the real DNA samples from patients of ovarian cancer with satisfactory results.
机译:核酸的超灵敏检测最近在学术研究和临床诊断中引起了相当大的关注。当前的DNA分析方法涉及复杂或昂贵的标记过程,通常会产生很高的检测限。在这项研究中,由氧化石墨烯和鱼精DNA制备的水凝胶电极用于通过阻抗法检测无标记线粒体DNA。水凝胶具有包含丰富水和天然生物分子鱼精DNA的仿生结构,有利于DNA的吸附和杂交。氧化石墨烯是一种半导体,可以通过掺杂带负电荷的DNA分子来提高其导电性。结果表明,水凝胶电极的电导率和阻抗变化可以通过其长度和成分来调节。优化水凝胶检测DNA的线性范围为1.0×10〜(-9)至1.0×10〜(-20)M,检测极限为1.0×10〜(-20)M。水凝胶电极的仿生结构和可调电导率水凝胶电极已用于检测卵巢癌患者的真实DNA样品,结果令人满意。

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  • 来源
    《Advanced Functional Materials》 |2014年第44期|6905-6913|共9页
  • 作者单位

    Department of Biomaterials College of Materials Xiamen University Xiamen, 361005, P.R. China;

    Department of Biomaterials College of Materials Xiamen University Xiamen, 361005, P.R. China;

    Department of Biomaterials College of Materials Xiamen University Xiamen, 361005, P.R. China;

    Zhongshan Hospital Xiamen University Xiamen, 361004, P.R.China;

    Department of Biomaterials College of Materials Xiamen University Xiamen, 361005, P.R. China, ShenZhen Research Institute of Xiamen University Shenzhen, 518057, P.R. China;

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