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通过金属-有机框架的结晶网络增强卟啉的电致化学发光用于心肌肌钙蛋白 I 的灵敏检测。

Enhancing the Electrochemiluminescence of Porphyrin via Crystalline Networks of Metal-Organic Frameworks for Sensitive Detection of Cardiac Troponin I.

机构信息

Key Laboratory of Bioelectrochemistry and Environmental Analysis of Gansu Province, College of Chemistry and Chemical Engineering, Northwest Normal University, Lanzhou 730070, People's Republic of China.

出版信息

Anal Chem. 2023 Aug 8;95(31):11687-11694. doi: 10.1021/acs.analchem.3c01647. Epub 2023 Jul 28.

Abstract

Porphyrins easily aggregate due to unfavorable π-π accumulation, causing luminescent quenching in the aqueous phase and subsequently reducing luminescent efficiency. It is a feasible way to immobilize porphyrin molecules through metal-organic framework materials (MOFs). In this study, 5,10,15,20-tetrakis (4-carboxyphenyl) porphyrin (TCPP) was introduced into the metal-organic skeleton (PCN-224) as a ligand. The result showed that the electrochemiluminescence (ECL) and photoluminescence (PL) efficiency of the MOF skeleton was 8.2 and 6.5 times higher than TCPP, respectively. Impressively, the periodic distribution of porphyrin molecules in the MOF framework can overcome the bottleneck of porphyrin aggregation, resulting in the organic ligand TCPP participating in the electron transfer reaction. Herein, based on the PCN-224, a sandwich-type ECL immunosensor was constructed for the determination of cardiac troponin I (cTnI). It provided sensitive detection of cTnI in the range of 1 fg/mL to 10 ng/mL with a detection limit of 0.34 fg/mL. This work not only innovatively exploited a disaggregation ECL (DIECL) strategy via the crystalline framework of MOF to enhance the PL and ECL efficiency of porphyrin but also provided a promising ECL platform for the ultrasensitive monitoring of cTnI.

摘要

卟啉由于不利的π-π堆积很容易聚集,导致在水相中发光猝灭,从而降低发光效率。通过金属有机骨架材料(MOFs)固定卟啉分子是一种可行的方法。在本研究中,将 5,10,15,20-四(4-羧基苯基)卟啉(TCPP)引入金属-有机骨架(PCN-224)作为配体。结果表明,MOF 骨架的电化学发光(ECL)和光致发光(PL)效率分别比 TCPP 高 8.2 倍和 6.5 倍。令人印象深刻的是,卟啉分子在 MOF 骨架中的周期性分布可以克服卟啉聚集的瓶颈,从而使有机配体 TCPP 参与电子转移反应。在此基础上,基于 PCN-224,构建了三明治型 ECL 免疫传感器用于检测心肌肌钙蛋白 I(cTnI)。该传感器在 1 fg/mL 至 10 ng/mL 的范围内对 cTnI 进行了灵敏检测,检测限为 0.34 fg/mL。这项工作不仅创新性地利用 MOF 的结晶骨架开发了一种解聚集 ECL(DIECL)策略来增强卟啉的 PL 和 ECL 效率,而且为 cTnI 的超灵敏监测提供了一种有前途的 ECL 平台。

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