University of Science and Technology of China , Hefei 230026 , People's Republic of China.
Suzhou Institute of Biomedical Engineering and Technology , Chinese Academy of Sciences , Suzhou 215163 , People's Republic of China.
ACS Appl Mater Interfaces. 2018 Oct 31;10(43):36796-36804. doi: 10.1021/acsami.8b15419. Epub 2018 Oct 17.
Herein, we have developed an ultrasensitive self-powered biosensor for miRNA assay based on biofuel cells. The system is composed of indium tin oxide cathode and graphene oxide/gold nanoparticle/glucose oxidase anode. Redox probe of [Fe(CN)] is entrapped inside porous FeO nanoparticles by DNA. However, in the presence of target miRNA, hybridization reaction occurs between miRNA and DNA, which initiates the release of [Fe(CN)]. Moreover, duplex specific nuclease is further employed to trigger target recycling amplification. As a result, much more redox probes are released and the open circuit voltage is significantly increased. A "signal-on" self-powered biosensor for miRNA quantification is thus developed. The detection range is from 10 aM to 10 fM; meanwhile, the limit of detection is as low as 1.4 aM, which is superior to that in most reported methods. Therefore, the proposed biosensor is expected to be a powerful point-of-care tool for miRNA diagnostics, which may have wide applications in the future.
在这里,我们基于生物燃料电池开发了一种用于 miRNA 分析的超灵敏自供电生物传感器。该系统由氧化铟锡阴极和氧化石墨烯/金纳米粒子/葡萄糖氧化酶阳极组成。[Fe(CN)]的氧化还原探针被 DNA 包裹在多孔 FeO 纳米粒子内。然而,在存在靶 miRNA 的情况下,miRNA 与 DNA 之间发生杂交反应,从而引发[Fe(CN)]的释放。此外,还进一步使用双链特异性核酸酶来触发靶标循环放大。结果,释放出更多的氧化还原探针,并且开路电压显著增加。因此,开发了一种用于 miRNA 定量的“信号开启”自供电生物传感器。检测范围为 10 aM 至 10 fM;同时,检测限低至 1.4 aM,优于大多数报道的方法。因此,所提出的生物传感器有望成为 miRNA 诊断的有力即时检测工具,在未来可能具有广泛的应用。