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通过整合DNA步行器和滚环机器级联扩增构建三维DNA纳米机器生物传感器用于癌症相关基因的超灵敏检测

Three-Dimensional DNA Nanomachine Biosensor by Integrating DNA Walker and Rolling Machine Cascade Amplification for Ultrasensitive Detection of Cancer-Related Gene.

作者信息

Wu Na, Wang Kun, Wang Yi-Ting, Chen Ming-Li, Chen Xu-Wei, Yang Ting, Wang Jian-Hua

机构信息

Research Center for Analytical Sciences, Department of Chemistry, College of Sciences, Northeastern University, Box 332, Shenyang 110819, China.

出版信息

Anal Chem. 2020 Aug 18;92(16):11111-11118. doi: 10.1021/acs.analchem.0c01074. Epub 2020 Jul 29.

DOI:10.1021/acs.analchem.0c01074
PMID:32646212
Abstract

Stochastic DNA walkers capable of traversing on three-dimensional (3D) tracks have received great deal of attention. However, DNA walker-based biosensors exhibit limited amplification efficiency because of their slow walking kinetics and low processivity. Herein, by taking advantage of the high processivity of a DNA rolling machine, a sensitive ratiometric DNA nanomachine biosensor is designed. The biosensor is constructed with hairpin-loaded Au nanoparticles (NPs) (hpDNA@AuNPs) as a DNA walker and AgNCs-decorated magnetic NPs (AgNCs@MNPs) as a DNA rolling machine. In the presence of target DNA, exonuclease III (Exo III)-powered DNA walker is activated to accomplish first-stage amplification via a burnt-bridge mechanism, generating a great deal of toehold-loaded AuNPs (Toehold@AuNPs) to hybridize with magnetic nanoparticles loaded with silver-nanoclusters-labeled DNA (AgNCs@MNPs) with the assistance of Exo III. These trigger rapid rolling of AuNPs on the AgNCs@MNPs surface and release free AgNCs, converting the biological signal into a mass spectrometric signal ratio (Ag/Au) with detection by ICP-MS. A linear range of 0.5-500 fmol L is achieved with a detection limit of 119 amol L for the gene. The practical applicability of the biosensor has been demonstrated in the accurate assay of the gene in the human blood.

摘要

能够在三维(3D)轨道上行走的随机DNA步行器受到了广泛关注。然而,基于DNA步行器的生物传感器由于其缓慢的行走动力学和低持续合成能力,表现出有限的扩增效率。在此,利用DNA滚环机器的高持续合成能力,设计了一种灵敏的比率型DNA纳米机器生物传感器。该生物传感器由负载发夹的金纳米颗粒(hpDNA@AuNPs)作为DNA步行器和装饰有银纳米团簇的磁性纳米颗粒(AgNCs@MNPs)作为DNA滚环机器构建而成。在目标DNA存在的情况下,由核酸外切酶III(Exo III)驱动的DNA步行器被激活,通过烧桥机制完成第一阶段扩增,产生大量负载引发链的金纳米颗粒(Toehold@AuNPs),在Exo III的辅助下与负载有银纳米团簇标记DNA的磁性纳米颗粒(AgNCs@MNPs)杂交。这些引发金纳米颗粒在AgNCs@MNPs表面快速滚动并释放游离的银纳米团簇,将生物信号转化为通过电感耦合等离子体质谱检测的质谱信号比(Ag/Au)。对于该基因,实现了0.5 - 500 fmol/L的线性范围,检测限为119 amol/L。该生物传感器的实际适用性已在人体血液中该基因的准确测定中得到证明。

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