| Literature DB >> 32254100 |
Huiting Lu1, Fan Yang, Benhan Liu, Kai Zhang, Yu Cao, Wenhao Dai, Wenjun Li, Haifeng Dong.
Abstract
Intracellular microRNA (miRNA) imaging remains a key challenge due to its low abundance. Herein, we integrate a rationally designed elegant entropy-driven DNA probe with assisted DNA fuel on hollow copper sulfide nanoparticles (HCuSNPs) for intracellular miRNA imaging. The anchored assisted DNA fuel strand could be efficiently released by a NIR-II laser irradiation induced photothermal effect of the HCuSNPs. The DNA machine was activated by target miRNA binding and powered by NIR-responsive released DNA fuel through toehold-mediated strand displacement reactions, accomplished by strong fluorescence recovery. It demonstrated 2 orders of magnitude improvement in the detection sensitivity compared to molecular beacons (MBs). Reliable intracellular low-abundance miRNA imaging among different cells and monitoring of down-regulated miRNA was realized without external enzyme or fuel addition. Oncogenic miRNA imaging in vivo was also realized. The entropy-driven DNA machine system provides a facile and powerful tool for intracellular miRNA analysis and related biomedical applications.Entities:
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Year: 2018 PMID: 32254100 DOI: 10.1039/c8nh00330k
Source DB: PubMed Journal: Nanoscale Horiz ISSN: 2055-6756 Impact factor: 10.989