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首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >Quantitative and specific detection of cancer-related microRNAs in living cells using surface-enhanced Raman scattering imaging based on hairpin DNA-functionalized gold nanocages
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Quantitative and specific detection of cancer-related microRNAs in living cells using surface-enhanced Raman scattering imaging based on hairpin DNA-functionalized gold nanocages

机译:基于发夹DNA官能化金纳米的表面增强拉曼散射成像,使用表面增强拉曼散射成像定量和特异性检测活细胞中的癌细胞相关细胞

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摘要

Variations in the intracellular expression level of cancer-related microRNAs (miRNAs) are connected with worsening tumor progression. A simple, accurate, and sensitive analytical method for the imaging and detection of intracellular miRNA is still a great challenge due to the low abundance of miRNAs and the complexity of intracellular environments. In this work, target miRNA (miRNA)-mediated catalytic hairpin assembly (CHA)-induced gold nanocage (GNC)-hairpin DNA1 (hpDNA1)-hpDNA2-GNC nanostructures were designed for surface-enhanced Raman scattering (SERS) detection and imaging of the specific miR-125a-5p in the normal lung epithelial cell line (BEAS-2B cells) and lung cancer cell line (A549 cells). The finite difference time domain (FDTD) simulations showed that the polymer of GNCs possessed a much stronger electromagnetic field in nanogaps than that of single GNC, theoretically confirming the rational design of the CHA assembly strategy. Using this method, miR-125a-5p can be detected in a wide linear range with a detection limit of 43.96 aM and high selectivity over other miRNAs in vitro. Moreover, SERS imaging successfully detected and distinguished the expression levels of intracellular miR-125a-5p in BEAS-2B cells and A549 cells. The results obtained by the SERS assay were consistent with those obtained by the real-time quantitative polymerase chain reaction (qRT-PCR). This method can offer a powerful strategy for the imaging and quantitative detection of various types of biomolecules in vitro as well as in living cells.
机译:癌症相关微大稻草(MiRNA)细胞内表达水平的变化与肿瘤进展恶化。由于细胞内环境的低丰度和细胞内环境的复杂性,这是一种简单,准确和敏感的成像和检测的分析方法仍然是一个巨大的挑战和细胞内环境的复杂性。在这项工作中,针对诱导的金纳米(GNC)-Hairpin DNA1(HPDNA1)-HPDNA2-GNC纳米结构的靶miRNA(miRNA)介导的催化发夹组件(MiRNA)介导的催化发夹组件(MiRNA) - α-HPDNA2-GNC纳米结构用于表面增强拉曼散射(SERS)检测和成像正常肺上皮细胞系(BEA-2B细胞)和肺癌细胞系(A549细胞)的特异性miR-125a-5p。有限差分时域(FDTD)模拟表明,GNC的聚合物在纳米杆上具有比单一GNC的更强大的电磁场,从理论上证实了CHA组装策略的合理设计。使用该方法,MiR-125A-5P可以在宽的线性范围内检测,检测限为43.96AM和体外其他miRNA的高选择性。此外,SERs成像成功检测并区分了BEA-2B细胞和A549细胞中细胞内miR-125a-5p的表达水平。通过SERS测定获得的结果与通过实时定量聚合酶链反应(QRT-PCR)获得的结果一致。该方法可以提供强大的策略,用于在体外成像和定量检测各种类型的生物分子以及活细胞。

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