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铜掺杂铽发光金属有机骨架作为放大器电化学发光免疫分析的发射器和共反应促进剂。

Copper-Doped Terbium Luminescent Metal Organic Framework as an Emitter and a Co-reaction Promoter for Amplified Electrochemiluminescence Immunoassay.

机构信息

State Key Laboratory of Analytical Chemistry for Life Science, School of Chemistry and Chemical Engineering, Nanjing University, Nanjing 210023, P. R. China.

College of Chemistry, Green Catalysis Center, Henan Joint International Research Laboratory of Green Construction of Functional Molecules and Their Bioanalytical Applications, Zhengzhou University, Zhengzhou 450001, P. R. China.

出版信息

Anal Chem. 2021 Nov 9;93(44):14878-14884. doi: 10.1021/acs.analchem.1c03988. Epub 2021 Oct 26.

Abstract

This work designed a signal amplification strategy for construction of a highly sensitive electrochemiluminescence (ECL) biosensor by doping Cu in a terbium luminescent metal organic framework (Cu:Tb-MOF) to act as a co-reaction promoter, which enhanced the generation of SO radical during the cathodic process in the presence of KSO as a co-reactant. The porous and hollow morphology and the size of Cu:Tb-MOF could be efficiently tuned via changing the molar ratio of Cu and Tb and the reaction time, which were related to the specific surface area, pore diameter, and the ECL intensity of the MOF structure. To further improve the sensitivity of the ECL biosensor, HO was introduced into the ECL system to act as another co-reaction promoter, leading to a new ECL mechanism involving dual co-reaction promoters. In view of the low electron transfer resistance of Cu:Tb-MOF, a label-free ECL immunosensor was conveniently constructed by co-immobilizing Cu:Tb-MOF and the capture antibody on the electrode surface. Using pro-gastrin-releasing peptide (ProGRP, a biomarker of small-cell lung cancer) as the model target, the proposed immunosensor exhibited excellent performance with a detection range of 1.0 pg·mL to 50 ng·mL and a limit of detection down to 0.68 pg·mL (3σ). This work demonstrated a strategy to use the MOF structures as both an emitter and a co-reaction promoter for amplified ECL emission and proposed an innovative route to extend the application of lanthanide MOFs.

摘要

这项工作设计了一种信号放大策略,通过在铽发光金属有机骨架(Cu:Tb-MOF)中掺杂 Cu 作为共反应促进剂,构建了一种高灵敏度的电致化学发光(ECL)生物传感器,在 KSO 作为共反应物存在的情况下,增强了阴极过程中 SO 自由基的生成。多孔和中空形态以及 Cu:Tb-MOF 的尺寸可以通过改变 Cu 和 Tb 的摩尔比和反应时间来有效调节,这与 MOF 结构的比表面积、孔径和 ECL 强度有关。为了进一步提高 ECL 生物传感器的灵敏度,将 HO 引入 ECL 体系中作为另一种共反应促进剂,导致涉及双共反应促进剂的新 ECL 机制。鉴于 Cu:Tb-MOF 的低电子转移电阻,通过将 Cu:Tb-MOF 和捕获抗体共固定在电极表面上,方便地构建了无标记的 ECL 免疫传感器。以胃泌素释放肽前体(ProGRP,小细胞肺癌的生物标志物)为模型靶标,所提出的免疫传感器表现出优异的性能,检测范围为 1.0 pg·mL 至 50 ng·mL,检测限低至 0.68 pg·mL(3σ)。这项工作展示了一种将 MOF 结构同时用作发射器和共反应促进剂的策略,用于放大 ECL 发射,并提出了一种扩展镧系 MOF 应用的创新途径。

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