College of Chemistry and Molecular Sciences, Wuhan University, Wuhan, 430072, P. R. China.
Wuhan Research Center for Infectious Diseases and Cancer, Chinese Academy of Medical Sciences, Wuhan, 430072, China.
Small. 2022 Aug;18(32):e2203341. doi: 10.1002/smll.202203341. Epub 2022 Jul 17.
DNA amplification machines show great promise for intracellular imaging, yet are always constrained by off-site machinery activation or signal leakage, originating from the inherent thermodynamically driven hybridization between machinery substrates. Herein, an entropy-driven catalytic DNA amplification machine is integrated with the on-site amplified substrate exposure procedure to realize the high-contrast in vivo imaging of microRNA (miRNA). The key machinery substrate (fuel strands) is initially split into substrate subunits that are respectively grafted into an auxiliary DNA polymerization amplification accessory for eliminating the undesired signal leakage. Meanwhile, in target cells, the auxiliary polymerization accessory can be motivated by cell-specific mRNA for successively restoring their intact machine-propelling functions for guaranteeing the on-site amplified imaging of miRNA with high specificity. This intelligent on-site multiply guaranteed machinery can improve the specificity of catalytic DNA machines for discriminating different cell types and, thus, can provide a remarkable prospect in biomedical diagnosis.
DNA 扩增机器在细胞内成像方面显示出巨大的应用潜力,但由于机器底物之间固有的热力学驱动杂交,总是受到场外机器激活或信号泄漏的限制。在此,我们将熵驱动的催化 DNA 扩增机器与现场扩增底物暴露程序相结合,实现了 microRNA (miRNA) 的高对比度体内成像。关键的机器底物(燃料链)最初被分裂成亚基,分别嫁接到辅助 DNA 聚合扩增辅助物上,以消除不必要的信号泄漏。同时,在靶细胞中,辅助聚合辅助物可以被特定于细胞的 mRNA 所激活,以连续恢复其完整的机器推动功能,从而保证 miRNA 的现场扩增成像具有高特异性。这种智能现场多重保障机器可以提高催化 DNA 机器区分不同细胞类型的特异性,从而在生物医学诊断中具有显著的前景。