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基于碳化钼纳米载体的高灵敏度电化学发光探针用于甲胎蛋白检测。

High-Sensitivity Electrochemiluminescence Probe with Molybdenum Carbides as Nanocarriers for α-Fetoprotein Sensing.

机构信息

State Key Laboratory of Electroanalytical Chemistry, Changchun Institute of Applied Chemistry, Chinese Academy of Sciences , Changchun, Jilin 130022, P. R. China.

University of Science and Technology of China , Hefei, Anhui 230026, P. R. China.

出版信息

Anal Chem. 2017 Nov 21;89(22):12108-12114. doi: 10.1021/acs.analchem.7b02701. Epub 2017 Nov 7.

Abstract

Suitably designed electrochemiluminescence (ECL) carrying group acting as high-efficiency solid-state probe has attracted a lot of attention. Herein, molybdenum carbides with the two-dimensional ultrathin nanosheet structure on the surface and excellent conductivity were successfully employed as the nanocarriers for the capture of ECL reagent of luminol-capped Au nanoparticles (luminol-AuNPs). Notably, the luminol-AuNPs in the hybrid (luminol-AuNPs@MoC) exhibited enhanced ECL performance (∼6-fold) as compared to individual luminol-AuNPs because of the facilitated electron transfer process. Ultimately, the as-prepared ECL label was used to construct a label-free ECL immunosensor for the detection of α-fetoprotein (AFP). The immunosensor shows high selectivity and high sensitivity to AFP detection with a wide linear range of 0.1 pg·mL to 30 ng·mL and an extremely low detection limit of 0.03 pg·mL (S/N = 3). Moreover, the fabricated ECL immunosensor exhibit satisfied performance in the practical application. This novel sensing strategy not only broadens the application of molybdenum carbides but also provides a new efficient approach to detect various biomolecules.

摘要

设计合理的电化学发光(ECL)载体作为高效的固态探针引起了广泛关注。在此,成功地将表面具有二维超薄纳米片结构和优异导电性的碳化钼用作纳米载体,用于捕获具有鲁米诺覆盖的金纳米粒子(luminol-AuNPs)的 ECL 试剂。值得注意的是,与单个 luminol-AuNPs 相比,混合(luminol-AuNPs@MoC)中的 luminol-AuNPs 表现出增强的 ECL 性能(约 6 倍),因为电子转移过程得到了促进。最终,将制备的 ECL 标记物用于构建用于检测甲胎蛋白(AFP)的无标记 ECL 免疫传感器。该免疫传感器对 AFP 检测具有高选择性和高灵敏度,线性范围为 0.1 pg·mL 至 30 ng·mL,检测限低至 0.03 pg·mL(S/N = 3)。此外,所制备的 ECL 免疫传感器在实际应用中表现出令人满意的性能。这种新颖的传感策略不仅拓宽了碳化钼的应用,而且为检测各种生物分子提供了一种新的有效方法。

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