College of Chemistry, Fuzhou University, Fuzhou 350116, PR China.
College of Chemistry, Fuzhou University, Fuzhou 350116, PR China.
Biosens Bioelectron. 2019 Apr 15;131:274-279. doi: 10.1016/j.bios.2019.02.004. Epub 2019 Feb 20.
Nucleic acid nanoswitches have a status that cannot be ignored in the field of biosensing due to the excellent biocompatibility and flexibility of design. In our current research, we have constructed a new electrochemical platform based on self-assembled pH-sensitive continuous circular DNA nanoswitch for miRNA-21 detection. We elaborately designed an inside ring probe (IRP) which could form a circle when complemented with an outside ring probe (ORP). Under the weakly acidic condition, IRPs and ORPs are self-assembled into continuous annular DNA, meanwhile, the nanoswitch is activated. However, if it is not a weakly acidic environment with a pH equal to 6, these circles are separated and the nanoswitch cannot be triggered. Therefore, the biosensor doesn't work. Only when the pH is 6, can the nanoswitch be activated. Consequently, a large number of RuHex will accumulate on the continuous annular DNA, which leads to highly sensitive detection of miRNA-21, with concentration ranged from 10 to 10 M and limit of detection down to 0.84 fM. More importantly, this nanoswitch-based biosensor can directly detect the target microRNA in human serum without pretreatment. Therefore, the proposed novel electrochemical DNA nanoswitch will have broad application prospects in biomarker detection and clinical diagnosis.
核酸纳米开关由于其优异的生物相容性和设计灵活性,在生物传感领域具有不可忽视的地位。在我们目前的研究中,我们基于自组装的 pH 敏感连续循环 DNA 纳米开关构建了一种用于 miRNA-21 检测的新型电化学平台。我们精心设计了一个内环探针 (IRP),当与外环探针 (ORP) 互补时可以形成一个环。在弱酸性条件下,IRP 和 ORP 自组装成连续的环形 DNA,同时纳米开关被激活。然而,如果不是 pH 值等于 6 的弱酸性环境,这些环就会分离,纳米开关无法被触发。因此,生物传感器无法工作。只有在 pH 值为 6 时,纳米开关才能被激活。因此,大量的 RuHex 将在连续的环形 DNA 上积累,从而实现对 miRNA-21 的高灵敏度检测,检测浓度范围为 10 到 10 M,检测限低至 0.84 fM。更重要的是,这种基于纳米开关的生物传感器可以直接在人血清中检测目标 microRNA,无需预处理。因此,所提出的新型电化学 DNA 纳米开关将在生物标志物检测和临床诊断中具有广阔的应用前景。