College of Chemical and Environmental Engineering, State Key Laboratory of Mining Disaster Prevention and Control Co-founded By Shandong Province and the Ministry of Science and Technology, Shandong University of Science and Technology, Qingdao, 266590, China.
College of Chemistry and Molecular Engineering, Qingdao University of Science & Technology, Qingdao, 266042, China.
Biosens Bioelectron. 2020 Feb 15;150:111846. doi: 10.1016/j.bios.2019.111846. Epub 2019 Nov 4.
Signal amplification is crucial in electrochemical biosensor to obtain low detection limits. In this work, a highly sensitive sandwich-type thrombin aptasensor is constructed, based on dual signal amplification of uniform silver nanowires (AgNWs) and hollow Au-CeO nanocomposites. AgNWs are decorated on the ITO surface to immobilize amino functionalized thrombin capture apemeter 1 (Apt1). And Au nanoparticles (AuNPs) grown directly on the surface of hollow CeO microstructure are used to immobilize sulfydryl functionalized thrombin reporter apemeter 2 (Apt2). Thus, sandwich-type apatasensor has been successfully designed, due to the specific recognition between thrombin and the two kinds of aptamers. One of the signal amplifications is from the good conductivity of uniform AgNWs. Moreover, uniform AgNWs together with hollow Au-CeO exhibit the good catalytic performance for the reduction of HO, further resulting in significant electrochemical signal amplification. Because the electrochemical signal amplification is closely related to the thrombin concentration, differential pulse voltammetry is used to specifically detect thrombin. Under the optimized conditions, the proposed method has a good linear response ranged from 0.5 pM to 30 nM with a low detection limit of 0.25 pM (S/N = 3) for thrombin. The proposed thrombin aptasensor displays good selectivity, reproducibility and stability, providing a good platform for the ultrasensitive detection of thrombin.
信号放大在电化学生物传感器中至关重要,可获得低检测限。在这项工作中,构建了一种基于均一银纳米线 (AgNWs) 和中空 Au-CeO 纳米复合材料双重信号放大的高灵敏三明治型凝血酶适体传感器。AgNWs 被修饰在 ITO 表面以固定氨基功能化的凝血酶捕获适体 1 (Apt1)。并且,直接生长在中空 CeO 微结构表面的金纳米颗粒 (AuNPs) 用于固定巯基功能化的凝血酶报告适体 2 (Apt2)。因此,由于凝血酶和两种适体之间的特异性识别,成功设计了三明治型适体传感器。信号放大之一来自于均一 AgNWs 的良好导电性。此外,均匀 AgNWs 与中空 Au-CeO 一起表现出对 HO 的还原的良好催化性能,进一步导致显著的电化学信号放大。由于电化学信号放大与凝血酶浓度密切相关,因此使用差分脉冲伏安法特异性检测凝血酶。在优化条件下,所提出的方法对凝血酶具有良好的线性响应范围从 0.5 pM 到 30 nM,检测限低至 0.25 pM(S/N=3)。所提出的凝血酶适体传感器表现出良好的选择性、重现性和稳定性,为超灵敏检测凝血酶提供了良好的平台。