State Key Laboratory of Electroanalytical Chemistry, Changchun Institute of Applied Chemistry , Chinese Academy of Sciences , Changchun 130022 , People's Republic of China.
College of Chemistry , Liaoning University , Shenyang 110036 , People's Republic of China.
Anal Chem. 2019 Feb 19;91(4):3048-3054. doi: 10.1021/acs.analchem.8b05443. Epub 2019 Feb 7.
Electrochemiluminescence (ECL) has emerged as one of the most important methods for in vitro diagnosis and detection, but it is still limited in sensitivity for ultrasensitive biodetections. Fast and ultrasensitive detection of biomolecules is critical, especially for the clinical detection of cardiac troponin I (cTnI) for cardiac infarction diagnosis. In this study, an effective tactic was developed to enhance ECL efficiency of the luminol system, by combined use of Co-based metal organic frameworks (MOF), zeolitic imidazolate frameworks (ZIF-67), and luminol-capped Ag nanoparticles (luminol-AgNPs). The integration leads to a pronounced ∼115-fold enhancement in luminol ECL. On the basis of this fascinating sensing platform, a robust label-free ECL immunosensor was constructed for ultrasensitive detection of cTnI, the main marker of myocardial infarction, with good stability and a detection limit as low as 0.58 fg mL (S/N = 3).
电化学发光(ECL)已成为体外诊断和检测最重要的方法之一,但对于超灵敏生物检测,其灵敏度仍然有限。快速和超灵敏的生物分子检测至关重要,特别是对于用于心肌梗死诊断的心脏肌钙蛋白 I(cTnI)的临床检测。在这项研究中,通过联合使用基于钴的金属有机骨架(MOF)、沸石咪唑酯骨架(ZIF-67)和包裹在发光体上的银纳米粒子(luminol-AgNPs),开发了一种有效策略来提高发光体系统的 ECL 效率。这种集成导致发光体 ECL 显著增强约 115 倍。基于这个引人注目的传感平台,构建了一种稳健的无标记 ECL 免疫传感器,用于超灵敏检测心肌梗死的主要标志物 cTnI,具有良好的稳定性和低至 0.58 fg mL 的检测限(S/N = 3)。