School of Chemistry and Chemical Engineering, Anhui Province Key Laboratory of Coal Clean Conversion and High Valued Utilization, Institute of Material Science and Engineering, Anhui University of Technology, Maanshan, 243002, China.
Mikrochim Acta. 2021 May 5;188(6):181. doi: 10.1007/s00604-021-04833-x.
Simultaneous cathodic and anodic electrochemiluminescence (ECL) emissions of needle-like nanostructures of Ru(bpy) (RuNDs) as the only luminophore are reported based on different co-reactants. Cathodic ECL was attained from RuNDs/KSO system, while anodic ECL was achieved from RuNDs/black phosphorus quantum dots (BPQDs) system. Ferrocene attached to the hairpin DNA could quench the cathodic and anodic ECL simultaneously. Subsequently, the ECL signals recovered in the presence of tumor marker mucin 1 (MUC1), which made it possible to quantitatively detect MUC1. The variation of ECL signal was related linearly to the concentrations of MUC1 in the range 20 pg mL to 10 ng mL, and the detection limits were calculated to 2.5 pg mL (anodic system, 3σ) and 6.2 pg mL (cathodic system, 3σ), respectively. The recoveries were 97.0%, 105%, and 95.2% obtained from three human serum samples, and the relative standard deviation (RSD) is 5.3%. As a proof of concept, this work realized simultaneous ECL emission of a single luminophore, which initiates a new thought in biomarker ECL detection beyond the traditional ones. Simultaneous cathodic and anodic ECL emissions of RuNDs were reported based on different co-reactants. Ferrocene could quench the ECL emission in the cathode and the anode simultaneously. Thus, an aptasensor was constructed based on the variation of ECL intensity. As a proof of concept, this work realized simultaneous ECL emission of a single luminophore, which initiates a new thought in biomarker ECL detection beyond the traditional ones by avoiding the false positive signals.
基于不同共反应物,报道了作为唯一发光体的针状纳米结构 Ru(bpy)(RuNDs)的同时阴极和阳极电化学发光(ECL)发射。RuNDs/KSO 体系实现了阴极 ECL,而 RuNDs/黑磷量子点(BPQDs)体系实现了阳极 ECL。发夹 DNA 上附着的二茂铁可以同时猝灭阴极和阳极 ECL。随后,在肿瘤标志物粘蛋白 1(MUC1)存在的情况下,ECL 信号得到恢复,从而可以定量检测 MUC1。ECL 信号的变化与 MUC1 的浓度在 20 pg mL 至 10 ng mL 的范围内呈线性相关,检测限分别计算为 2.5 pg mL(阳极系统,3σ)和 6.2 pg mL(阴极系统,3σ)。从三个人体血清样本中获得的回收率分别为 97.0%、105%和 95.2%,相对标准偏差(RSD)为 5.3%。作为概念验证,本工作实现了单个发光体的同时 ECL 发射,这在传统的生物标志物 ECL 检测之外引发了新的思考。基于不同的共反应物,报道了 RuNDs 的同时阴极和阳极 ECL 发射。二茂铁可以同时猝灭阴极和阳极的 ECL 发射。因此,基于 ECL 强度的变化构建了适体传感器。作为概念验证,本工作实现了单个发光体的同时 ECL 发射,这在传统的生物标志物 ECL 检测之外引发了新的思考,避免了假阳性信号。