Dong Pei, Li Ruomeng, He Shizhen, Zhang Qingqing, Shang Jinhua, Jiang Yuqian, Liu Xiaoqing, Wang Fuan
College of Chemistry and Molecular Sciences, Wuhan University 430072 Wuhan P. R. China.
Research Institute of Shenzhen, Wuhan University Shenzhen 518057 P. R. China
Chem Sci. 2023 Jan 24;14(8):2159-2167. doi: 10.1039/d2sc05568f. eCollection 2023 Feb 22.
The accurate identification of multiple biomarkers involved in disease plays a vital role in effectively distinguishing cancer cells from normal cells, facilitating reliable cancer diagnosis. Motivated by this knowledge, we have engineered a compact and clamped cascaded DNA circuit for specifically discriminating cancer cells from normal cells the amplified multi-microRNA imaging strategy. The proposed DNA circuit combines the traditional cascaded DNA circuit with multiply localized responsive character through the elaboration of two super-hairpin reactants, thus concurrently streamlining the circuit components and realizing localization-intensified cascaded signal amplification. In parallel, the multiple microRNA-stimulated sequential activations of the compact circuit, combined with a handy logic operation, significantly elevated the cell-discriminating reliability. Applications of the present DNA circuit and in cellular imaging experiments were executed with expected results, therefore illustrating that our DNA circuit is useful for precise cell discrimination and further clinical diagnosis.
准确识别与疾病相关的多种生物标志物在有效区分癌细胞与正常细胞、促进可靠的癌症诊断方面起着至关重要的作用。基于这一认识,我们设计了一种紧凑且钳位的级联DNA电路,用于从正常细胞中特异性区分癌细胞——即扩增多微RNA成像策略。所提出的DNA电路通过精心设计两种超级发夹反应物,将传统的级联DNA电路与多重局部响应特性相结合,从而在简化电路组件的同时实现了局部增强的级联信号放大。同时,紧凑电路的多个微RNA刺激的顺序激活,结合便捷的逻辑运算,显著提高了细胞区分的可靠性。本DNA电路在[具体应用场景未提及]和细胞成像实验中的应用均取得了预期结果,因此表明我们的DNA电路可用于精确的细胞区分及进一步的临床诊断。