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首页> 外文期刊>Chemical science >A smart ZnO@polydopamine-nucleic acid nanosystem for ultrasensitive live cell mRNA imaging by the target-triggered intracellular self-assembly of active DNAzyme nanostructures
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A smart ZnO@polydopamine-nucleic acid nanosystem for ultrasensitive live cell mRNA imaging by the target-triggered intracellular self-assembly of active DNAzyme nanostructures

机译:通过目标触发的活性DNAzyme纳米结构的细胞内自组装,用于超灵敏活细胞mRNA成像的智能ZnO @ polydopamine-核酸纳米系统

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Efficient strategies for the ultrasensitive imaging of gene expression in living cells are essential in chemistry and cell biology. Here, we report a novel and efficient enzyme-free dual signal amplification strategy for live cell mRNA imaging by using a smart nucleic acid hairpin-based nanosystem. This nanosystem consists of a ZnO nanoparticle core, an interlayer of polydopamine and an outer layer of four hairpin DNA (hpDNA) probes. Such a core–shell nanosystem facilitates the cellular uptake of molecular hairpin payloads, protects them from nuclease digestion, and delivers them into the cytoplasm by the acid-triggered dissolution of the ZnO core. In the presence of target mRNA, the released hpDNA probes self-assemble via HCR into wire-shaped active DNAzymes that catalyze the generation of a fluorescence signal. The target-initiated HCR events and DNAzyme cascades offer efficient dual amplification and enable the ultrasensitive detection of mRNA with a femtomolar detection limit. Live cell assays show an intense fluorescence response from a tumor-related biomarker survivin mRNA only in tumor cells untreated with a survivin expression repressor YM155, but not in normal cells. The developed nanosystem provides a potential platform for the amplified imaging of low-abundance disease-related biomarkers in live cells.
机译:对活细胞中基因表达进行超灵敏成像的有效策略在化学和细胞生物学中至关重要。在这里,我们报告通过使用基于智能核酸发夹的纳米系统的活细胞mRNA成像的新型和有效的无酶双重信号放大策略。该纳米系统由ZnO纳米颗粒核心,聚多巴胺的中间层和四个发夹DNA(hpDNA)探针的外层组成。这种核-壳纳米系统可促进细胞吸收分子发夹式有效载荷,保护其免受核酸酶消化,并通过酸触发的ZnO核心溶解将其输送至细胞质。在靶mRNA存在的情况下,释放的hpDNA探针通过HCR自组装通过成为线状活性DNA酶,可催化荧光信号的产生。靶标起始的HCR事件和DNAzyme级联提供有效的双重扩增,并能够以飞摩尔级的检测极限对mRNA进行超灵敏的检测。活细胞分析显示,仅在未使用 survivin 表达阻遏物YM155处理的肿瘤细胞中,肿瘤相关生物标记物 survivin mRNA产生强烈的荧光反应,而在正常细胞中则没有。先进的纳米系统为活细胞中低丰度疾病相关生物标记物的放大成像提供了潜在平台。

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