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一种基于无酶表面等离子体共振成像生物传感的方法,用于基于催化发夹组装和球形核酸的高灵敏度 microRNA 检测。

An enzyme-free surface plasmon resonance imaging biosensing method for highly sensitive detection of microRNA based on catalytic hairpin assembly and spherical nucleic acid.

机构信息

Key Laboratory of Clinical Laboratory Diagnostics (Ministry of Education), College of Laboratory Medicine, Chongqing Medical University, Chongqing, 400016, China.

Department of Forensic Medicine, Faculty of Basic Medical Sciences, Chongqing Medical University, Chongqing, 400016, China.

出版信息

Anal Chim Acta. 2020 Apr 29;1108:21-27. doi: 10.1016/j.aca.2020.02.055. Epub 2020 Feb 27.

Abstract

MicroRNAs (miRNAs), considered as therapeutic targets and biomarkers, play important roles in biological processes. Herein, an enzyme-free surface plasmon resonance imaging (SPRi) biosensing method has been developed for miRNA detection based on catalytic hairpin assembly and spherical nucleic acid. The hairpin H1 tethered on the surface of the sensor chip is unfolded by miRNA, and then the hybridized miRNA is released through the displacement of the hairpin H2 for the successive hybridization and assembly process. The emerging DNA fragments on the sensor chip surface after hairpins assembly are further used to hybridize with spherical nucleic acid, inducing a remarkably amplified SPR signal. This biosensing method is highly sensitive to miRNA with a detection limit of 53.7 fM and a linear range of 4 orders of magnitude. Moreover, the biosensor demonstrates good specificity and has the ability to distinguish members of homologous miRNA family even with single base differences. Thus, the SPRi biosensing method may hold a great promise for further application in early clinical diagnosis.

摘要

微小 RNA(miRNAs)被认为是治疗靶点和生物标志物,在生物过程中发挥着重要作用。在此,基于发夹组装和球形核酸,开发了一种无酶表面等离子体共振成像(SPRi)生物传感方法用于 miRNA 的检测。发夹 H1 通过 miRNA 展开,然后通过发夹 H2 的置换释放杂交的 miRNA,用于连续的杂交和组装过程。发夹组装后在传感器芯片表面上出现的新 DNA 片段进一步与球形核酸杂交,诱导显著放大的 SPR 信号。该生物传感方法对 miRNA 具有高灵敏度,检测限为 53.7 fM,线性范围为 4 个数量级。此外,该生物传感器具有良好的特异性,甚至能够区分具有单个碱基差异的同源 miRNA 家族成员。因此,SPRi 生物传感方法有望在早期临床诊断中得到进一步应用。

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