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基于碳点荧光探针和 MSNs@PDA 纳米粒子的靶触发链置换辅助靶循环用于 miRNA 的扩增检测和荧光成像。

A target-triggered strand displacement-assisted target recycling based on carbon dots-based fluorescent probe and MSNs@PDA nanoparticles for miRNA amplified detection and fluorescence imaging.

机构信息

School of Biology and Biological Engineering, South China University of Technology, No. 382, Outer Ring East Road, University Town, Panyu District, Guangzhou, 510006, P. R. China.

出版信息

Mikrochim Acta. 2024 May 28;191(6):351. doi: 10.1007/s00604-024-06428-8.

Abstract

A target-triggered strand displacement-assisted target recycling based on carbon dots-based fluorescent probe and mesoporous silica nanoparticles@polydopamine (MSNs@PDA) was established to detect miRNA. The surface of MSNs rich in mesopores was coated with a layer of PDA, which can adsorb and quench the fluorescence of single-stranded Fuel DNA with fluorescent carbon dots (CDs) modified at the end through fluorescence resonance energy transfer (FRET). After adding double-stranded DNA-gold nanoparticles (dsDNA-AuNPs) and target let-7a, it will trigger two toehold-mediated strand displacement reactions (TSDR), leading to the recovery of fluorescence and the recycling of target let-7a (excitation wavelength: 380 nm; emission wavelength: 458 nm). The recovery value of fluorescence is proportional to the logarithm of the target microRNA let-7a concentration, thus realizing the sensitivity amplification detection of disease markers. The MSNs@PDA@Fuel DNA-CDs/dsDNA-AuNPs nanoplatform based on the strategy of "on-off-on" and TSDR cyclic amplification may hold great potential as an effective and safe nanoprobe for accurate fluorescence imaging of diseases related to miRNA with low abundances.

摘要

建立了一种基于碳点荧光探针和介孔硅纳米粒子@聚多巴胺(MSNs@PDA)的靶触发链置换辅助靶循环的方法,用于检测 miRNA。丰富介孔的 MSNs 表面涂有一层 PDA,它可以通过荧光共振能量转移(FRET)吸附和猝灭末端修饰有荧光碳点(CDs)的单链燃料 DNA 的荧光。加入双链 DNA-金纳米粒子(dsDNA-AuNPs)和靶标 let-7a 后,它将触发两个引发链置换反应(TSDR),导致荧光恢复和靶标 let-7a 的循环(激发波长:380nm;发射波长:458nm)。荧光的恢复值与靶 microRNA let-7a 浓度的对数成正比,从而实现疾病标志物的灵敏度放大检测。基于“开-关-开”策略和 TSDR 循环放大的 MSNs@PDA@Fuel DNA-CDs/dsDNA-AuNPs 纳米平台,可能作为一种有效且安全的纳米探针,用于 miRNA 丰度低的与疾病相关的 miRNA 的精确荧光成像。

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