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基于外泌体载体的光控可募集杂交链式反应用于活细胞中高灵敏 microRNA 成像

Light-Controlled Recruitable Hybridization Chain Reaction on Exosome Vehicles for Highly Sensitive MicroRNA Imaging in Living Cells.

机构信息

School of Chemistry, Sun Yat-Sen University, Guangzhou 510275, China.

School of Pharmaceutical Sciences, Southern Medical University, Guangzhou 510515, China.

出版信息

Anal Chem. 2022 Jul 12;94(27):9665-9673. doi: 10.1021/acs.analchem.2c00974. Epub 2022 Jun 27.

Abstract

Sensitive imaging of intracellular microRNA (miRNA) in living cells is of great significance. Isothermal hybridization chain reaction (HCR)-based methods, although have been widely used to monitor intracellular low-abundance miRNA, are still subjected to the challenges of limited signal amplification efficiency and compromised imaging resolution. In this work, we design a light-controlled recruitable HCR (LCR-HCR) strategy that enables us to well overcome these limitations. Exosomes as delivery and recruitment vehicles are modified with three cholesterol-modified hairpins (H, H, and H), in which H is for anchoring target miRNA and H and H with photocleavable linkers (PC-linkers) are designed for spatiotemporal HCR. By controllably releasing probes with high local concentrations to efficiently trigger HCR and further recruiting the generated double-stranded DNA (dsDNA) polymers instead of dispersion in the cytoplasm, the LCR-HCR method can significantly improve the imaging contrast by confining all of the reactants on exosome vehicles. For a proof-of-concept demonstration, the miR-21 was analyzed by LCR-HCR with a limit of detection (LOD) down to 3.3 pM (corresponding to 165 amol per 50 μL) in vitro and four times higher response than traditional HCR in vivo. In general, the LCR-HCR method provides a powerful tool for sensitive miRNA imaging in living cells and cancer diagnosis.

摘要

活细胞内的 miRNA (miRNA)的敏感成像具有重要意义。基于等温杂交链式反应(HCR)的方法虽然已广泛用于监测细胞内低丰度 miRNA,但仍受到信号放大效率有限和成像分辨率降低的挑战。在这项工作中,我们设计了一种光控可招募 HCR(LCR-HCR)策略,从而很好地克服了这些限制。外泌体作为递送和招募载体,用三个胆固醇修饰的发夹(H、H 和 H)进行修饰,其中 H 用于锚定靶 miRNA,H 和 H 用光裂解连接体(PC-linkers)设计用于时空 HCR。通过可控释放具有高局部浓度的探针,可有效地触发 HCR,并进一步招募生成的双链 DNA(dsDNA)聚合物,而不是在细胞质中分散,LCR-HCR 方法可以通过将所有反应物限制在外泌体载体上来显著提高成像对比度。为了进行概念验证演示,通过 LCR-HCR 分析了 miR-21,其体外检测限(LOD)低至 3.3 pM(相当于 50 μL 中 165 amol),比体内传统 HCR 的响应高四倍。总的来说,LCR-HCR 方法为活细胞内敏感 miRNA 成像和癌症诊断提供了一种强大的工具。

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