Department of Chemistry and Laboratory for Preparation and Application of Ordered Structural Materials of Guangdong Province, Shantou University, Shantou, Guangdong, 515063, PR China.
National Detergents and Cosmetics Products Quality Supervision and Inspection Center (Guangdong), Shantou, Guangdong, 515041, PR China.
Biosens Bioelectron. 2019 Oct 15;143:111627. doi: 10.1016/j.bios.2019.111627. Epub 2019 Aug 23.
In traditional electrochemiluminescence (ECL) analysis, gold nanomaterials are commonly used as a tool for signal amplification and linking antibodies due to their good electrical conductivity and biocompatibility. Here, we found that multitipped gold nanoparticles-gold nanoflowers (AuNFs) as coreactant accelerator have good catalytic activity for the reduction of dissolved oxygen (O) to hydrogen peroxide (HO) using tris (hydroxymethyl) aminomethane (Tris) as electron donor. Based on this, a new enzyme-free and label-free ECL immunosensor have been constructed for the detection of α-fetoprotein (AFP). In this system, due to the unique geometric and spatial effects of AuNFs, the dissolved O as endogenous coreactant was catalyzed by AuNFs to produce HO using Tris as an electron donor. The in situ generated HO can more efficiently produce various electrogenerated reactive oxygen species (ROSs) as the important intermediates on the electrode surface. Then, oxidation of luminol reacts with ROSs significantly amplifies the luminol ECL signal. Under optimal experimental conditions, the proposed ECL immunosensor was able to detect the AFP concentration from 0.01 to 100 ng mL, with a low detection limit of 3.4 pg mL (S/N = 3). In addition, the prepared ITO-based sensor is similar to a micro-test chip and convenient to use, thus making it suitable for clinical use as a disposable device in point-of-care tests (POCTs).
在传统的电化学发光(ECL)分析中,由于金纳米材料具有良好的导电性和生物相容性,通常被用作信号放大和连接抗体的工具。在这里,我们发现多尖金纳米粒子-金纳米花(AuNFs)作为共反应物加速剂,在三羟甲基氨基甲烷(Tris)作为电子供体的情况下,对溶解氧(O)还原为过氧化氢(HO)具有很好的催化活性。基于此,构建了一种新的无酶和无标记的 ECL 免疫传感器,用于检测甲胎蛋白(AFP)。在该体系中,由于 AuNFs 的独特几何和空间效应,溶解的 O 作为内源性共反应物,在 Tris 作为电子供体的作用下被 AuNFs 催化生成 HO。原位生成的 HO 可以更有效地产生各种电生成的活性氧物质(ROSs)作为电极表面的重要中间体。然后,鲁米诺与 ROSs 的氧化反应显著放大了鲁米诺的 ECL 信号。在最佳实验条件下,所提出的 ECL 免疫传感器能够从 0.01 到 100ng/mL 检测 AFP 浓度,检测限低至 3.4pg/mL(S/N=3)。此外,制备的 ITO 基传感器类似于微测试芯片,使用方便,因此适合作为一次性设备用于即时检测(POCTs)中的临床应用。