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基于金纳米粒子的 CTG 重复探针系统和等温扩增的高灵敏度 MicroRNA 146a 检测。

Highly sensitive MicroRNA 146a detection using a gold nanoparticle-based CTG repeat probing system and isothermal amplification.

机构信息

Department of Bioactive Material Sciences, Research Center of Bioactive Materials Chonbuk National University, Jeonju 561-756, South Korea.

Department of Bioactive Material Sciences, Research Center of Bioactive Materials Chonbuk National University, Jeonju 561-756, South Korea; Department of Chemistry, Chonbuk National University, Jeonju 561-756, South Korea.

出版信息

Anal Chim Acta. 2018 Jan 25;999:155-160. doi: 10.1016/j.aca.2017.11.016. Epub 2017 Nov 13.

Abstract

We have developed a gold nanoparticle (AuNP)-based CTG repeat probing system displaying high quenching capability and combined it with isothermal amplification for the detection of miRNA 146a. This method of using a AuNP-based CTG repeat probing system with isothermal amplification allowed the highly sensitive (14 aM) and selective detection of miRNA 146a. A AuNP-based CTG repeat probing system having a hairpin structure and a dT fluorophore exhibited highly efficient quenching because the CTG repeat-based stable hairpin structure imposed a close distance between the AuNP and the dT residue. A small amount of miRNA 146a induced multiple copies of the CAG repeat sequence during rolling circle amplification; the AuNP-based CTG repeat probing system then bound to the complementary multiple-copy CAG repeat sequence, thereby inducing a structural change from a hairpin to a linear structure with amplified fluorescence. This AuNP-based CTG probing system combined with isothermal amplification could also discriminate target miRNA 146a from one- and two-base-mismatched miRNAs (ORN 1 and ORN 2, respectively). This simple AuNP-based CTG probing system, combined with isothermal amplification to induce a highly sensitive change in fluorescence, allows the detection of miRNA 146a with high sensitivity (14 aM) and selectivity.

摘要

我们开发了一种基于金纳米粒子(AuNP)的 CTG 重复探针系统,具有高猝灭能力,并将其与等温扩增相结合,用于检测 miRNA 146a。这种使用基于 AuNP 的 CTG 重复探针系统与等温扩增的方法允许高度敏感(14 aM)和选择性检测 miRNA 146a。具有发夹结构和 dT 荧光团的基于 AuNP 的 CTG 重复探针系统由于基于 CTG 重复的稳定发夹结构使 AuNP 与 dT 残基之间的距离接近,因此表现出高效的猝灭作用。少量的 miRNA 146a 在滚环扩增过程中诱导多个 CAG 重复序列;基于 AuNP 的 CTG 重复探针系统随后与互补的多拷贝 CAG 重复序列结合,从而诱导从发夹到具有放大荧光的线性结构的结构变化。这种与等温扩增相结合的基于 AuNP 的 CTG 探针系统还可以区分靶 miRNA 146a 与单碱基和双碱基错配的 miRNA(分别为 ORN 1 和 ORN 2)。这种简单的基于 AuNP 的 CTG 探针系统,结合等温扩增以诱导荧光的高度敏感变化,允许以高灵敏度(14 aM)和选择性检测 miRNA 146a。

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