Key Laboratory of Optic-electric Sensing and Analytical Chemistry for Life Science, MOE; College of Chemistry and Molecular Engineering, Qingdao University of Science and Technology, Qingdao 266042, PR China.
Analyst. 2023 Sep 11;148(18):4456-4462. doi: 10.1039/d3an01139a.
Herein, a multifunctional electrochemiluminescence (ECL) and photoelectrochemical (PEC) biosensor based on exchange of Ag with CdTe QDs was developed for dual-mode detection of thrombin. First, CdTe QDs assembled on an electrode displayed superior ECL and PEC signals. At the same time, C-rich hairpin (HP) DNA linked to silicon spheres loaded a large amount of Ag, and the specific binding of thrombin to an aptamer led to the release of DNA P; then, DNA P interacted with HP DNA to produce numerous Ag ions by an enzyme-digestion amplification reaction. Ag underwent ion exchange with CdTe QDs to generate AgTe/CdTe QDs, resulting in much reversed PEC and changed ECL signals for dual-mode detection of thrombin. This work takes advantage of outstanding multi-signals of QDs coupled with convenient ion exchange to achieve multi-mode detection of the target, avoiding false positive or false negative signals generated in the traditional detection process, and thus can be used for the rapid detection of various biomolecules in actual samples.
本文开发了一种基于 Ag 与 CdTe QDs 交换的多功能电致化学发光(ECL)和光电化学(PEC)生物传感器,用于双重检测凝血酶。首先,组装在电极上的 CdTe QDs 显示出优异的 ECL 和 PEC 信号。同时,富 C 的发夹(HP)DNA 与硅球相连,负载大量 Ag,凝血酶与适体的特异性结合导致 DNA P 的释放;然后,DNA P 通过酶促消化扩增反应与 HP DNA 相互作用产生大量 Ag 离子。Ag 与 CdTe QDs 进行离子交换生成 AgTe/CdTe QDs,从而产生逆转的 PEC 和 ECL 信号,用于双重检测凝血酶。这项工作利用了 QDs 的出色多信号与方便的离子交换相结合,实现了目标的多模式检测,避免了传统检测过程中产生的假阳性或假阴性信号,因此可用于实际样品中各种生物分子的快速检测。