School of Chemistry and Chemical Engineering, Shandong University of Technology, Zibo, 255049, PR China.
School of Chemistry and Chemical Engineering, Shandong University of Technology, Zibo, 255049, PR China.
Talanta. 2022 Sep 1;247:123575. doi: 10.1016/j.talanta.2022.123575. Epub 2022 May 21.
At present, the development of electrochemiluminescence (ECL) immunosensor with excellent performance is still the research focus of immunoassay and detection. Herein, SnS quantum dots (SnS QDs) and metal-organic framework (MIL-101 (Cr)) are effectively combined to achieve synergistic signal amplification based on KSO co-reactant, thereby constructing SnS QDs/SO and SO/O ECL double reaction luminous systems. SnS QDs and singlet oxygen ((O)) produced from the system as light-emitting devices jointly enhance the ECL response and significantly improve the sensitivity of the ECL immunosensor. Dissolved oxygen and SnS QDs respectively generate HOO and SnS QDs under negative potential, and react with transient SO to emit strong light respectively, so as to jointly enhance the ECL response. MIL-101 catalyzes the oxygen cathode reduction reaction to promote the conversion of dissolved oxygen into HOO, which greatly improves the ECL response of (O). CuS with spherical nanoflower-like form as a co-reaction promoter of KSO generate more SO active substances, which further enhance the ECL response of the immunosensor. The constructed ECL immunosensor has the advantages of low detection limit, high sensitivity and better stability. Under the optimal conditions, the detection range is 0.1 mU/mL∼100 U/mL, and the detection limit is 0.015 mU/mL. The results show that the constructed ECL immunosensor can detect human CA242 samples and have a broad application prospect in biological analysis and early diagnosis of diseases.
目前,具有优异性能的电化学发光(ECL)免疫传感器的发展仍然是免疫分析和检测的研究重点。在此,我们有效地结合了 SnS 量子点(SnS QDs)和金属有机骨架(MIL-101(Cr)),基于 KSO 共反应物实现协同信号放大,从而构建了 SnS QDs/SO 和 SO/O ECL 双反应发光体系。该体系中 SnS QDs 和来自体系的单线态氧((O)*)作为发光器件共同增强 ECL 响应,显著提高 ECL 免疫传感器的灵敏度。溶解氧和 SnS QDs 在负电势下分别产生 HOO 和 SnS QDs,并分别与瞬时光子 SO 反应以发射强光,从而共同增强 ECL 响应。MIL-101 催化氧气阴极还原反应,促进溶解氧转化为 HOO,极大地提高了 (O)*的 ECL 响应。具有球形纳米花状形态的 CuS 作为 KSO 的共反应促进剂,生成更多的 SO 活性物质,进一步增强了免疫传感器的 ECL 响应。所构建的 ECL 免疫传感器具有检测限低、灵敏度高、稳定性好等优点。在最佳条件下,检测范围为 0.1 mU/mL~100 U/mL,检测限为 0.015 mU/mL。结果表明,所构建的 ECL 免疫传感器可以检测人 CA242 样品,在生物分析和疾病的早期诊断中具有广阔的应用前景。