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首页> 外文期刊>Angewandte Chemie >Catalytic Molecular Imaging of MicroRNA in Living Cells by DNA-Programmed Nanoparticle Disassembly
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Catalytic Molecular Imaging of MicroRNA in Living Cells by DNA-Programmed Nanoparticle Disassembly

机译:DNA程序化的纳米粒子拆卸对活细胞中MicroRNA的催化分子成像

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摘要

Molecular imaging is an essential tool for disease diagnostics and treatment. Direct imaging of low-abundance nucleic acids in living cells remains challenging because of the relatively low sensitivity and insufficient signal-to-background ratio of conventional molecular imaging probes. Herein, we report a class of DNA-templated gold nanoparticle (GNP)-quantum dot (QD) assembly-based probes for catalytic imaging of cancer-related microRNAs (miRNA) in living cells with signal amplification capacity. We show that a single miRNA molecule could catalyze the disassembly of multiple QDs with the GNP through a DNA-programmed thermodynamically driven entropy gain process, yielding significantly amplified QD photoluminescence (PL) for miRNA imaging. By combining the robust PL of QDs with the catalytic amplification strategy, three orders of magnitude improvement in detection sensitivity is achieved in comparison with non-catalytic imaging probe, which enables facile and accurate differentiation between cancer cells and normal cells by miRNA imaging in living cells.
机译:分子成像是疾病诊断和治疗的重要工具。对活细胞中低丰度核酸的直接成像仍然具有挑战性,因为常规分子成像探针的灵敏度相对较低且信噪比不足。在这里,我们报告了一类基于DNA模板的金纳米粒子(GNP)-量子点(QD)组装的探针,用于在具有信号放大能力的活细胞中对癌症相关的microRNA(miRNA)进行催化成像。我们显示单个的miRNA分子可以通过DNA编程的热力学驱动的熵增加过程催化与GNP的多个QD的分解,从而产生显着放大的QD光致发光(PL),用于miRNA成像。通过将强大的QD的PL与催化扩增策略相结合,与非催化成像探针相比,检测灵敏度提高了三个数量级,从而通过活细胞中的miRNA成像实现了癌细胞与正常细胞之间的简便而准确的区分。

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