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基于链置换级联放大和 DNA walker 的自主 DNA 纳米机器用于检测多种 DNA。

Autonomous DNA nanomachine based on cascade amplification of strand displacement and DNA walker for detection of multiple DNAs.

机构信息

Department of Chemistry, College of Sciences, Northeastern University, Box 332, Shenyang 110819, China.

Department of Chemistry, College of Sciences, Northeastern University, Box 332, Shenyang 110819, China.

出版信息

Biosens Bioelectron. 2018 May 15;105:159-165. doi: 10.1016/j.bios.2018.01.044. Epub 2018 Jan 31.

Abstract

DNA can be modified to function as a scaffold for the construction of a DNA nanomachine, which can then be used in analytical applications if the DNA nanomachine can be triggered by the presence of a diagnostic DNA or some other analyte. We herein propose a novel and powerful DNA nanomachine that can detect DNA via combining the tandem strand displacement reactions and a DNA walker. Three different DNA sensing platforms are described, where the whole DNA machine was constructed on a gold electrode (GE). This cascade multiple amplification strategy exhibited an excellent sensitivity. Under optimal conditions, the electrochemical sensor could achieve a detection limit of 36 fM with a linear range from 50 to 500 fM. In particular, the electrochemical sensor could easily distinguish the base mutations. More interestingly, the DNA nanomachine could be used to construct analog AND and OR logic gates. We demonstrate that electrochemical signals generated from the different input combinations can be used to distinguish multiple target DNAs. The practical applicability of the present biosensor is demonstrated by the detection of target DNA in human serum with satisfactory results, which holds great potential for a future application in clinical diagnosis.

摘要

DNA 可以被修饰为一种支架,用于构建 DNA 纳米机器,如果 DNA 纳米机器可以被诊断 DNA 或其他分析物的存在触发,那么它可以用于分析应用。我们在此提出了一种新颖而强大的 DNA 纳米机器,它可以通过串联链置换反应和 DNA 行走器来检测 DNA。描述了三种不同的 DNA 传感平台,其中整个 DNA 机器都构建在金电极 (GE) 上。这种级联多重扩增策略表现出优异的灵敏度。在最佳条件下,电化学传感器可以实现 36 fM 的检测限,线性范围为 50 至 500 fM。特别是,电化学传感器可以轻松区分碱基突变。更有趣的是,DNA 纳米机器可以用于构建模拟 AND 和 OR 逻辑门。我们证明,从不同输入组合产生的电化学信号可用于区分多种靶 DNA。该生物传感器的实际应用通过在人血清中检测靶 DNA 得到了验证,结果令人满意,这为未来在临床诊断中的应用提供了巨大的潜力。

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