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编码 DNA 框架用于扩增的细胞内 microRNAs 的多重成像。

Encoding DNA Frameworks for Amplified Multiplexed Imaging of Intracellular microRNAs.

机构信息

Key Laboratory for Organic Electronics and Information Displays & Jiangsu Key Laboratory for Biosensors, Institute of Advanced Materials (IAM), Jiangsu National Synergetic Innovation Center for Advanced Materials (SICAM), Nanjing University of Posts and Telecommunications, 9 Wenyuan Road, Nanjing 210023, China.

Institute of Molecular Medicine, Shanghai Key Laboratory for Nucleic Acids Chemistry and Nanomedicine, Renji Hospital, School of Medicine, Shanghai Jiao Tong University, Shanghai 200127, China.

出版信息

Anal Chem. 2021 Feb 2;93(4):2226-2234. doi: 10.1021/acs.analchem.0c04092. Epub 2021 Jan 8.

Abstract

Real-time imaging of multiple low-abundance microRNAs (miRNAs) simultaneously in living cells with high sensitivity is of vital importance for accurate cancer clinical diagnosis and prognosis studies. Maintaining stability of nanoprobes resistant to enzyme degradation and enabling effective signal amplification is highly needed for in vivo imaging studies. Herein, a rationally designed one-pot assembled multicolor tetrahedral DNA frameworks (TDFs) by encoding multicomponent nucleic acid enzymes (MNAzymes) was developed for signal-amplified multiple miRNAs imaging in living cells with high sensitivity and selectivity. TDFs could enter cells via self-delivery with good biocompatibility and stability. Two kinds of MNAzymes specific for miRNA-21 and miRNA-155 with fluorescein labeling were encoded in the structure of TDFs respectively through one-step thermal annealing. In the intracellular environment, the TDFs could be specifically bound with its specific miRNA target and form an active DNAzyme structure. The cleavage of the active site would trigger the release of target miRNA and circular fluorescence signal amplification, which enabled accurate diagnosis on miRNA identifications of different cell lines with high sensitivity. Meanwhile, with the specific AS1411 aptamer targeting for nucleolin overexpressed on the surface of the carcinoma cells, this well-designed TDFs nanoprobe exhibited good discrimination between cancer cells and normal cells. The strategy provides an efficient tool for understanding the biological function of miRNAs in cancer pathogenesis and therapeutic applications.

摘要

实时成像的多个低丰度 microRNAs (miRNAs) 同时在活细胞中具有高灵敏度对于癌症的临床诊断和预后研究至关重要。保持纳米探针的稳定性,抵抗酶的降解,并能够有效地进行信号放大,这对于体内成像研究是非常需要的。在此,通过编码多组分核酸酶 (MNAzymes) ,设计了一种合理的一锅组装多色四面体形 DNA 框架 (TDF) ,用于在活细胞中进行高灵敏度和选择性的信号放大多重 miRNA 成像。TDF 可以通过自传递进入细胞,具有良好的生物相容性和稳定性。两种具有荧光标记的特异性 miRNA-21 和 miRNA-155 的 MNAzymes 分别通过一步热退火编码在 TDF 的结构中。在细胞内环境中,TDF 可以特异性地与它的特定 miRNA 靶标结合,并形成一个活性的 DNAzyme 结构。活性位点的切割会触发靶 miRNA 的释放和循环荧光信号的放大,从而能够对不同细胞系的 miRNA 识别进行高灵敏度的准确诊断。同时,由于表面高表达核仁素的癌细胞具有特异性的 AS1411 适体,这个精心设计的 TDF 纳米探针能够在癌细胞和正常细胞之间进行很好的区分。该策略为理解 miRNA 在癌症发病机制和治疗应用中的生物学功能提供了一个有效的工具。

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