Yan Dewen, Zhang Yue, Gong Weiming, Ren Dan, Cao Linlin, Li Yueyuan, Li Yueyun, Liu Hui, Liu Qing
School of Chemistry and Chemical Engineering, Shandong University of Technology, Zibo 255049, PR China.
Zibo Central Hospital, Zibo 255036, PR China.
Anal Chem. 2025 Sep 9;97(35):19360-19368. doi: 10.1021/acs.analchem.5c04144. Epub 2025 Aug 28.
Dual-signal-output ratiometric electrochemiluminescence (ECL) platforms offer a promising solution to address the instability and inaccuracies associated with single-signal ECL detection. However, most existing ratiometric systems still rely on two independent luminophores, inevitably increasing the system complexity and compromising the detection accuracy. In this study, a bimetallic dual-ligand ECL luminophore, Ce/Tb-MOF, was synthesized via a solvothermal approach, exhibiting distinct anodic and cathodic ECL emissions from a single luminophore. To spatially regulate signal generation and avoid the complications of coreactant mixing, we designed a beacon nanostructure, TPA-β-CD@Au, that locally introduces the anodic coreactant tripropylamine (TPA) upon target binding. This enabled the implementation of a ″Reverse Regulation of Anodic/Cathodic Signals″ strategy, wherein target recognition simultaneously suppresses cathodic emission and enhances anodic emission, achieving internally calibrated signal output. Based on this mechanism, a highly sensitive ECL immunosensor was developed for the detection of Pro-gastrin-releasing peptide (Pro-GRP). The sensor exhibited excellent analytical performance, including a broad dynamic range (100 fg/mL to 100 ng/mL), a low detection limit of 52.4 fg/mL, and strong anti-interference capability. This work presents a robust and simplified ratiometric ECL platform and provides valuable insights into the rational design of multifunctional MOF-based biosensors for clinical diagnostics.
双信号输出比率型电化学发光(ECL)平台为解决与单信号ECL检测相关的不稳定性和不准确问题提供了一种很有前景的解决方案。然而,大多数现有的比率型系统仍然依赖于两种独立的发光体,这不可避免地增加了系统复杂性并影响了检测准确性。在本研究中,通过溶剂热法合成了一种双金属双配体ECL发光体Ce/Tb-MOF,其从单一发光体表现出不同的阳极和阴极ECL发射。为了在空间上调节信号产生并避免共反应剂混合的复杂性,我们设计了一种信标纳米结构TPA-β-CD@Au,其在靶标结合时局部引入阳极共反应剂三丙胺(TPA)。这实现了一种“阳极/阴极信号反向调节”策略,其中靶标识别同时抑制阴极发射并增强阳极发射,实现内部校准的信号输出。基于此机制,开发了一种用于检测胃泌素释放肽前体(Pro-GRP)的高灵敏度ECL免疫传感器。该传感器表现出优异的分析性能,包括宽动态范围(100 fg/mL至100 ng/mL)、52.4 fg/mL的低检测限和强抗干扰能力。这项工作提出了一个强大且简化的比率型ECL平台,并为基于多功能MOF的生物传感器用于临床诊断的合理设计提供了有价值的见解。