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CRISPR/Cas12a介导的模块化纳米孔转导放大策略用于铜离子的检测

王华宁 张冰 李冰凌

分析化学2026,Vol.54Issue(7):1200-1209,10.
分析化学2026,Vol.54Issue(7):1200-1209,10.DOI:10.19756/j.issn.0253-3820.261156

CRISPR/Cas12a介导的模块化纳米孔转导放大策略用于铜离子的检测

A CRISPR/Cas12a-mediated Modular Nanopore Transduction Amplification Strategy for Detection of Copper Ions

王华宁 1张冰 1李冰凌1

作者信息

  • 1. 中国科学院长春应用化学研究所,电分析化学重点实验室,长春 130022||中国科学技术大学应用化学与工程学院,合肥 230026
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摘要

Abstract

Due to the advantages of label-free operation,high sensitivity and high throughput,solid-state nanopore-based sensing technologies exhibit broad application prospects for analyte characterization at the single-molecule level.To address the insufficient resolution and selectivity of solid-state nanopores for direct detection of small-sized,non-nucleic-acid targets,a modular signal amplification strategy integrating DNAzymes,clustered regularly interspaced short palindromic repeats(CRISPR),hybridization chain reaction(HCR),and solid-state nanopores was constructed in this work,using Cu2+as a model target for validation.In this strategy,a Cu2+-responsive DNAzyme first converted the small-molecule input into a nucleic acid signal.Subsequently,the trans-cleavage activity of the Cas12a/crRNA system was employed to achieve intermediate signal amplification,and HCR was further used to generate long-chain nucleic acid assemblies that could be efficiently resolved by solid-state nanopores.Compared with conventional strategies that required direct sequence coupling between the recognition module and the amplification module,the introduction of the CRISPR module in this method reduced the coupling between upstream and downstream nucleic acid sequence design,thereby improving the editability and scalability of the system.Real-time fluorescence results showed that the minimum distinguishable concentration of Cu2+reached 1 μmol/L,and the system also exhibited good anti-interference performance.Agarose gel electrophoresis and nanopore results further confirmed that Cu2+could be stepwise transduced into HCR products,yielding nanopore event distributions that were clearly distinguishable from those of the negative control and interfering ions.This method provided a new signal amplification strategy for nanopore-based detection of small size non-nucleic-acid targets.

关键词

固相纳米孔/信号放大策略/杂交链式反应/CRISPR/Cas/DNA酶/铜离子

Key words

Solid-state nanopore/Signal amplification strategy/Hybrid chain reaction/Clustered regularly interspaced short palindromic repeats/Cas/DNAzyme/Copper ions

引用本文复制引用

王华宁,张冰,李冰凌..CRISPR/Cas12a介导的模块化纳米孔转导放大策略用于铜离子的检测[J].分析化学,2026,54(7):1200-1209,10.

基金项目

国家自然科学基金项目(Nos.22525405,22374142,22474135,22504138)和吉林省科技发展计划项目-全国重点实验室(学科类)重大专项项目(No.SKL202302030)资助. Supported by the Natural Science Foundation of China(Nos.22525405,22374142,22474135,22504138)and the Science and Technology Development Plan Project of Jilin Province(No.SKL202302030). (Nos.22525405,22374142,22474135,22504138)

分析化学

0253-3820

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