Zhou Xue-Mei, Chen Si-Yi, Chai Ya-Qin, Zhuo Ying, Yuan Ruo
Key Laboratory of Luminescence Analysis and Molecular Sensing (Southwest University), Ministry of Education, College of Chemistry and Chemical Engineering, Southwest University, Chongqing 400715, P. R. China.
Anal Chem. 2025 Jan 14;97(1):686-693. doi: 10.1021/acs.analchem.4c05032. Epub 2025 Jan 1.
Herein, a supramolecular DNA nanodevice was formed via the rolling circle amplification (RCA) and hybridization chain reaction (HCR) cascade reaction on a tetrahedral DNA nanostructure (TDN) to achieve simultaneous sensitive detection and intracellular imaging of dual-miRNAs related to liver cancer. The supramolecular DNA nanodevice effectively addressed the limitations of low probe loading capacity in traditional TDN nanodevices by enriching plenty of signal probes around a single TDN, significantly enhancing the fluorescence signal. Impressively, the supramolecular DNA nanodevice with a TDN fulcrum and dense DNA structure imparted the nanodevice with strong rigidity, ensuring the stability of the signal probes to decrease aggregation quenching for further increasing the fluorescence response. Consequently, the biosensor based on supramolecular DNA nanodevice enabled simultaneous and sensitive detection of miRNA221 and miRNA222, and further achieved accurate in situ intracellular imaging of miRNA221 and miRNA222, displaying significantly improved imaging capabilities compared to traditional TDN-based nanodevices. More importantly, simultaneous and precise intracellular imaging of miRNA221 and miRNA222 could effectively distinguish hepatocellular carcinoma cells with different degrees of metastasis from human normal liver cells, providing more precise information for the diagnosis and development of hepatocellular carcinoma.
在此,通过在四面体DNA纳米结构(TDN)上进行滚环扩增(RCA)和杂交链式反应(HCR)级联反应,形成了一种超分子DNA纳米器件,以实现对与肝癌相关的双miRNA的同时灵敏检测和细胞内成像。该超分子DNA纳米器件通过在单个TDN周围富集大量信号探针,有效解决了传统TDN纳米器件中探针负载能力低的局限性,显著增强了荧光信号。令人印象深刻的是,具有TDN支点和致密DNA结构的超分子DNA纳米器件赋予了纳米器件很强的刚性,确保了信号探针的稳定性,减少聚集猝灭,从而进一步提高荧光响应。因此,基于超分子DNA纳米器件的生物传感器能够同时灵敏地检测miRNA221和miRNA222,并进一步实现miRNA221和miRNA222在细胞内的精确原位成像,与传统的基于TDN的纳米器件相比,其成像能力有显著提高。更重要的是,对miRNA221和miRNA222进行同时精确的细胞内成像能够有效区分不同转移程度的肝癌细胞与人类正常肝细胞,为肝癌的诊断和发展提供更精确的信息。