Wang Ming-Yue, Jing Wen-Jie, Wang Li-Juan, Jia Li-Ping, Ma Rong-Na, Zhang Wei, Shang Lei, Li Xiao-Jian, Xue Qing-Wang, Wang Huai-Sheng
College of Chemistry and Chemical Engineering, Liaocheng University, Liaocheng, 252000, China.
No. 3 Middle School of Liaocheng, Liaocheng, Shandong Province, 252000, China.
Biosens Bioelectron. 2023 Apr 15;226:115116. doi: 10.1016/j.bios.2023.115116. Epub 2023 Feb 2.
DNA nanomachines have shown potential application in the construction of various biosensors. Here, an electrochemiluminescence biosensor for the sensitive detection of miRNA-21 were reported based on three-dimensional (3D) DNA nanomachine and duplex-specific nuclease (DSN)-mediated target recycle amplification strategy. First, the bipedal DNA walkers were obtained by DSN-mediated digestion reaction initiated by target miRNA-21.3D DNA tracks were prepared by modifying FeO magnetic beads (MBs) with ferrocene-labeled DNA (Fc-DNA). The produced DNA walkers autonomously moved along 3D DNA tracks powered by nicking endonuclease. During the movement, ferrocene-labeled DNA was cleaved, resulting in large amounts of Fc-labeled DNA fragments away from the MBs surface. Finally, the liberated Fc-labeled DNA fragments were dropped on the C-g-CN modified electrode surface, leading to the quenching of C-g-CN electrochemiluminescence (ECL). Benefiting from the dual amplification strategy of 3D DNA nanomachine and DSN-mediated target recycling, the developed ECL biosensor exhibited an excellent performance for miRNA-21 detection with a wide linear range of 10 fM to 10 nM and a low detection limit of 1.0 fM. This work offers a new thought for the application of DNA walkers in the construction of various biosensors.
DNA纳米机器已在各种生物传感器的构建中显示出潜在应用。在此,基于三维(3D)DNA纳米机器和双链特异性核酸酶(DSN)介导的靶标循环扩增策略,报道了一种用于灵敏检测miRNA-21的电化学发光生物传感器。首先,通过靶标miRNA-21引发的DSN介导的消化反应获得双足DNA步行器。通过用二茂铁标记的DNA(Fc-DNA)修饰FeO磁珠(MBs)制备3D DNA轨道。产生的DNA步行器在切口内切核酸酶的驱动下沿着3D DNA轨道自主移动。在移动过程中,二茂铁标记的DNA被切割,导致大量Fc标记的DNA片段从MBs表面脱离。最后,释放的Fc标记的DNA片段滴落在C-g-CN修饰的电极表面,导致C-g-CN电化学发光(ECL)淬灭。受益于3D DNA纳米机器和DSN介导的靶标循环的双重扩增策略,所开发的ECL生物传感器在miRNA-21检测中表现出优异的性能,线性范围宽达10 fM至10 nM,检测限低至1.0 fM。这项工作为DNA步行器在各种生物传感器构建中的应用提供了新思路。