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首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >Electrochemical DNA sensor by the assembly of graphene and DNA-conjugated gold nanoparticles with silver enhancement strategy
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Electrochemical DNA sensor by the assembly of graphene and DNA-conjugated gold nanoparticles with silver enhancement strategy

机译:电化学DNA传感器,通过石墨烯和DNA共轭的金纳米颗粒的组装并具有银增强策略

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摘要

Sensitive and selective detection of DNA is in urgent need due to its important role in human bodies. Many disorders, such as Alzheimer's disease and various cancers, are closely related with DNA damage. In this work, a novel electrochemical DNA biosensor was constructed on a DNA-assembling graphene platform which provided a robust, simple and biocompatible platform with large surface area for DNA immobilization. The as-designed DNA sensor was fabricated by directly assembling captured ssDNA on a graphene-modified electrode through the π-π stacking interaction between graphene and ssDNA bases. Then, the target DNA sequence and oligonucleotide probes-labeled AuNPs were able to hybridize in a sandwich assay format, following the AuNPs-catalyzed silver deposition. The deposited silver was further detected by differential pulse voltammetry. Owing to the high DNA loading ability of graphene and the distinct signal amplification by AuNPs-catalyzed silver staining, the resulting biosensor exhibited a good analytical performance with a wide detection linear range from 200 pM to 500 nM, and a low detection limit of 72 pM. Additionally, the biosensor was proved to be able to discriminate the complementary sequence from the single-base mismatch sequence. The simple biosensor is promising in developing electronic, on-chip assays in clinical diagnosis, environmental control, and drug discovery.
机译:由于DNA在人体中的重要作用,因此迫切需要对DNA进行灵敏和选择性的检测。许多疾病,例如阿尔茨海默氏病和各种癌症,都与DNA损伤密切相关。在这项工作中,在组装DNA的石墨烯平台上构建了一种新型的电化学DNA生物传感器,该平台为DNA固定提供了一个坚固,简单且具有大表面积的生物相容性平台。通过石墨烯和ssDNA碱基之间的π-π堆叠相互作用,将捕获的ssDNA直接组装在石墨烯修饰的电极上,从而设计出DNA传感器。然后,在AuNPs催化的银沉积之后,靶DNA序列和寡核苷酸探针标记的AuNPs能够以夹心测定形式杂交。通过差示脉冲伏安法进一步检测沉积的银。由于石墨烯的高DNA负载能力以及AuNPs催化的银染显着的信号放大,所得生物传感器显示出良好的分析性能,检测线性范围从200 pM到500 nM,检测限低至72 pM 。另外,已证明生物传感器能够区分互补序列与单碱基错配序列。这种简单的生物传感器有望在临床诊断,环境控制和药物开发中开发电子芯片检测方法。

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