Cheng Lin, Wei BingGuo, He Ling Ling, Mao Ling, Zhang Jie, Ceng JinXiang, Kong DeRong, Chen ChaDan, Cui HanFeng, Hong Nian, Fan Hao
Department of Pharmacy, JiangXi University of Traditional Chinese Medicine, JiangXi 330004, China.
The Research Center of Chinese Medicine Resource and National Medicine of Jiangxi University of Traditional Chinese Medicine, JiangXi 330004, China.
Anal Biochem. 2017 Feb 1;518:46-52. doi: 10.1016/j.ab.2016.09.018. Epub 2016 Oct 18.
A novel "off-On" electrogenerated chemiluminescence (ECL) biosensor has been developed for the detection of mercury(II) based on molecular recognition technology. The ECL mercury(II) biosensor comprises two main parts: an ECL substrate and an ECL intensity switch. The ECL substrate was made by modifying the complex of Ruthenium(II) tris-(bipyridine)(Ru(bpy))/Cyclodextrins-Au nanoparticles(CD-AuNps)/Nafion on the surface of glass carbon electrode (GCE), and the ECL intensity switch is the single hairpin DNA probe designed according to the "molecular recognition" strategy which was functionalized with ferrocene tag at one end and attached to Cyclodextrins (CD) on modified GCE through supramolecular noncovalent interaction. We demonstrated that, in the absence of Hg(II) ion, the probe keeps single hairpin structure and resulted in a quenching of ECL of Ru(bpy). Whereas, in the presence of Hg(II) ion, the probe prefers to form the T-Hg(II)-T complex and lead to an obvious recovery of ECL of Ru(bpy), which provided a sensing platform for the detection of Hg(II) ion. Using this sensing platform, a simple, rapid and selective "off-On" ECL biosensor for the detection of mercury(II) with a detection limit of 0.1 nM has been developed.
基于分子识别技术,开发了一种用于检测汞(II)的新型“关-开”型电化学发光(ECL)生物传感器。该ECL汞(II)生物传感器主要由两部分组成:一个ECL底物和一个ECL强度开关。ECL底物是通过将三(联吡啶)钌(II)(Ru(bpy))/环糊精-金纳米颗粒(CD-AuNps)/ Nafion的复合物修饰在玻碳电极(GCE)表面制成的,而ECL强度开关是根据“分子识别”策略设计的单链发夹DNA探针,其一端用二茂铁标签功能化,并通过超分子非共价相互作用连接到修饰的GCE上的环糊精(CD)上。我们证明,在不存在Hg(II)离子的情况下,探针保持单链发夹结构,并导致Ru(bpy)的ECL猝灭。而在存在Hg(II)离子的情况下,探针倾向于形成T-Hg(II)-T复合物,并导致Ru(bpy)的ECL明显恢复,这为检测Hg(II)离子提供了一个传感平台。利用这个传感平台,开发了一种简单、快速且选择性的“关-开”型ECL生物传感器,用于检测汞(II),检测限为0.1 nM。