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pH-responsive ZnO nanoprobe mediated DNAzyme signal amplification strategy for sensitive detection and live cell imaging of multiple microRNAs

机译:pH-响应ZnO Nanoprobe介导的DNazyme信号放大策略,用于多微小RNA的敏感检测和活细胞成像

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摘要

Here, a pH-responsive ZnO nanoprobe mediated DNAzyme signal amplification strategy was proposed for sensitive detection and live cell imaging of multiple microRNAs. The nanoprobe including ZnO nanoparticles (ZnO NPs) core as carrier and cofactor provider and polydopamine shell for adsorption the functional hairpin DNAs was designed. When nanoprobe entered the cell through endocytosis, the acidic environment of the cell could decompose the ZnO NPs core to release the functional hairpin DNAs and Zn2+. The Zn2+ could act as cofactor for the DNAzyme cleavage amplification reaction, avoiding additional cell delivery processes. The recognition hairpin DNAs (H1 and H3) recognized microRNA and exposed the DNAzyme. The DNAzyme cleaved cyclically the reporter hairpin DNAs (H2 and H4), producing enhanced fluorescent signal for miR-21 and miR-373 detection with the detection limit of 54 pM and 38 pM, respectively. Expression levels of miR-21 in Hela, HepG-2 and L02 cells were differentiated. Furthermore, simultaneous imaging of miR-21 and miR-373 in same living cells was achieved. These results indicated this strategy could have a potential application in microRNAs assays for the accurate diagnosis and therapy of cancer.
机译:这里,提出了一种pH-响应ZnO Nanoprobe介导的DNazyme信号放大策略,用于多个MicroRNA的敏感检测和活细胞成像。包括ZnO纳米颗粒(ZnO NPS)芯的纳毛板作为载体和辅因子提供者和用于吸附的多茶胺壳,设计了功能性发夹DNA。当Nanopobe通过内吞作用进入细胞时,细胞的酸性环境可以分解ZnO NPS核心以释放功能性发夹DNA和Zn2 +。 Zn2 +可作为DNAzyme切割扩增反应的辅助因子,避免额外的细胞递送方法。识别发夹DNA(H1和H3)识别MicroRNA并暴露于DNazyme。 DNazyme循环地裂开报告发夹DNA(H2和H4),分别产生了MIR-21和MIR-373检测的增强的荧光信号,分别为54pm和38pm的检测限。 MiR-21在HeLa,HepG-2和L02细胞中的表达水平分化。此外,实现了同一活细胞中miR-21和miR-373的同时显像。这些结果表明该策略可以在MicroRNAS测定中具有准确诊断和治疗癌症的潜在应用。

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