Xiong Huiwen, Gao Jingwen, Wang Ying, Chen Ziyi, Chen Miao-Miao, Zhang Xiuhua, Wang Shengfu
Hubei Collaborative Innovation Center for Advanced Organic Chemical Materials, Ministry of Education Key Laboratory for the Synthesis and Application of Organic Functional Molecules & College of Chemistry and Chemical Engineering, Hubei University, Wuhan 430062, PR China.
Analyst. 2019 Apr 8;144(8):2550-2555. doi: 10.1039/c9an00183b.
In this study, an ultrasensitive electrochemiluminescence (ECL) aptasensor based on Ru(bpy)32+-doped silica nanoparticles (Ru@SiO2 NPs) coupled with gold nanoparticles (Au NPs) was developed for the determination of ractopamine (Rac). TPrA is used as the coreactant, the Ru@SiO2 NPs serve as the ECL luminophores, and the Au NPs work as a catalyzer in the redox reaction as well as the carrier that immobilizes the aptamer. Meanwhile, the complete incorporation of the Ru@SiO2 NPs and Au NPs increases the localized surface plasmon resonance (LSPR) probability, thus promoting ECL emission. The ractopamine (Rac) target molecules are specifically captured on the electrode surface by aptamer recognition. The ECL signal is quenched by energy transfer from the luminophore to benzoquinone compounds, which are oxidative products of Rac from the electrochemical scanning process. The proposed ECL aptasensor exhibits ultrahigh sensitivity and excellent selectivity for Rac detection. The linear response ranged over Rac concentrations from 1.5 × 10-12 M to 1.5 × 10-8 M with a detection limit of 4.1 × 10-14 M (S/N = 3). The detection recovery of Rac in real meat samples confirmed the satisfactory performance of the method. This study describes a versatile ECL aptasensor based on the combined functions of luminous nanospheres and Au NPs, indicating its potential application for the ultrasensitive analysis of targets in diverse systems.
在本研究中,开发了一种基于钌(Ⅱ)联吡啶掺杂二氧化硅纳米颗粒(Ru@SiO₂ NPs)与金纳米颗粒(Au NPs)耦合的超灵敏电化学发光(ECL)适体传感器,用于测定莱克多巴胺(Rac)。三丙胺(TPrA)用作共反应剂,Ru@SiO₂ NPs用作ECL发光体,Au NPs在氧化还原反应中起催化剂作用,同时作为固定适体的载体。同时,Ru@SiO₂ NPs和Au NPs的完全结合增加了局部表面等离子体共振(LSPR)概率,从而促进了ECL发射。莱克多巴胺(Rac)靶分子通过适体识别被特异性捕获在电极表面。ECL信号通过从发光体到苯醌化合物的能量转移而猝灭,苯醌化合物是电化学扫描过程中Rac的氧化产物。所提出的ECL适体传感器对Rac检测具有超高灵敏度和优异的选择性。线性响应范围为Rac浓度从1.5×10⁻¹² M到1.5×10⁻⁸ M,检测限为4.1×10⁻¹⁴ M(S/N = 3)。实际肉类样品中Rac的检测回收率证实了该方法的良好性能。本研究描述了一种基于发光纳米球和Au NPs组合功能的通用ECL适体传感器,表明其在不同系统中对目标物进行超灵敏分析的潜在应用。