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可编程错配驱动的高效DNA信号放大器。

Programmable mismatch-fueled high-efficiency DNA signal amplifier.

作者信息

Zhang Xiao-Long, Li Sha-Sha, Liu Wei-Wei, Kong Ling-Qi, Chai Ya-Qin, Yuan Ruo

机构信息

Key Laboratory of Luminescence Analysis and Molecular Sensing (Southwest University), Ministry of Education, College of Chemistry and Chemical Engineering, Southwest University Chongqing 400715 PR China

出版信息

Chem Sci. 2022 Sep 26;13(40):11926-11935. doi: 10.1039/d2sc04814k. eCollection 2022 Oct 19.

Abstract

Herein, by introducing mismatches, a high-efficiency mismatch-fueled catalytic multiple-arm DNA junction assembly (M-CMDJA) with high-reactivity and a high-threshold is developed as a programmable DNA signal amplifier for rapid detection and ultrasensitive intracellular imaging of miRNA. Compared with traditional nucleic acid signal amplification (NASA) with a perfect complement, the M-CMDJA possesses larger kinetic and thermodynamic favorability owing to the more negative reaction standard free energy (Δ) as driving force, resulting in much higher efficiency and rates. Once traces of the input initiator react with the mismatched substrate DNA, it could be converted into amounts of output multiple-arm DNA junctions the M-CMDJA as the functional DNA conversion nanodevice. Impressively, the mismatch-fueled catalytic four-arm DNA junction assembly (M-CFDJA) exhibits high conversion efficiency up to 1.05 × 10 in 30 min, which is almost ten times more than those of conventional methods. Therefore, the M-CMDJA could easily address the challenges of traditional methods: slow rates and low efficiency. In application, the M-CFDJA as a DNA signal amplifier was successfully used to develop a biosensing platform for rapid miRNA detection with a LOD of 6.11 aM and the ultrasensitive intracellular imaging of miRNA, providing a basis for the next-generation of versatile DNA signal amplification methods for ultimate applications in DNA nanobiotechnology, biosensing assay, and clinical diagnoses.

摘要

在此,通过引入错配,开发了一种具有高反应性和高阈值的高效错配驱动催化多臂DNA连接体组装(M-CMDJA),作为一种可编程的DNA信号放大器,用于miRNA的快速检测和超灵敏细胞内成像。与具有完美互补性的传统核酸信号放大(NASA)相比,M-CMDJA由于更负的反应标准自由能(Δ)作为驱动力,具有更大的动力学和热力学优势,从而具有更高的效率和速率。一旦痕量的输入引发剂与错配的底物DNA反应,它就可以作为功能性DNA转换纳米器件,被转化为大量的输出多臂DNA连接体。令人印象深刻的是,错配驱动催化四臂DNA连接体组装(M-CFDJA)在30分钟内表现出高达1.05×10的高转换效率,几乎是传统方法的十倍。因此,M-CMDJA可以轻松应对传统方法的挑战:速率慢和效率低。在应用中,M-CFDJA作为一种DNA信号放大器,成功地用于开发一种用于快速miRNA检测的生物传感平台,检测限为6.11 aM,并实现了miRNA的超灵敏细胞内成像,为DNA纳米生物技术、生物传感分析和临床诊断等最终应用的下一代通用DNA信号放大方法提供了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4494/9580486/e7d6d7d40ecc/d2sc04814k-s1.jpg

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