Department of Gastroenterology, Zhongnan Hospital of Wuhan University, College of Chemistry and Molecular Sciences, Wuhan University, Wuhan, 430072, P. R. China.
Engineering Research Center for Biotechnology of Active Substances (Ministry of Education), Chongqing Key Laboratory of Green Catalysis Materials and Technology, College of Chemistry, Chongqing Normal University, Chongqing, 401331, P. R. China.
Adv Sci (Weinh). 2024 Jun;11(22):e2400517. doi: 10.1002/advs.202400517. Epub 2024 Apr 13.
The precise regulation of cellular behaviors within a confined, crowded intracellular environment is highly amenable in diagnostics and therapeutics. While synthetic circuitry system through a concatenated chemical reaction network has rarely been reported to mimic dynamic self-assembly system. Herein, a catalytic self-defined circuit (CSC) for the hierarchically concatenated assembly of DNA domino nanostructures is engineered. By incorporating pre-sealed symmetrical fragments into the preying hairpin reactants, the CSC system allows the hierarchical DNA self-assembly via a microRNA (miRNA)-powered self-sorting catalytic hybridization reaction. With minimal strand complexity, this self-sustainable CSC system streamlined the circuit component and achieved localization-intensified cascaded signal amplification. Profiting from the self-adaptively concatenated hybridization reaction, a reliable and robust method has been achieved for discriminating carcinoma tissues from the corresponding para-carcinoma tissues. The CSC-sustained self-assembly strategy provides a comprehensive and smart toolbox for organizing various hierarchical DNA nanostructures, which may facilitate more insights for clinical diagnosis and therapeutic assessment.
在受限、拥挤的细胞内环境中精确调控细胞行为在诊断和治疗中非常适用。尽管串联化学反应网络的合成电路系统很少被报道能够模拟动态自组装系统。在此,设计了用于 DNA 串接组装的催化自定义电路 (CSC)。通过将预密封的对称片段纳入捕食发夹反应物中,CSC 系统允许通过 miRNA 驱动的自分类催化杂交反应进行分级 DNA 自组装。通过最小的链复杂性,这种自持续 CSC 系统简化了电路组件,并实现了本地化增强级联信号放大。利用自适应串联杂交反应,实现了从相应的癌旁组织中区分癌组织的可靠和稳健的方法。CSC 持续的自组装策略为组织各种分级 DNA 纳米结构提供了一个全面而智能的工具箱,这可能有助于更深入地了解临床诊断和治疗评估。