Key Laboratory of Inorganic Coating Materials CAS, Shanghai Institute of Ceramics, Chinese Academy of Sciences, Shanghai 200050, China.
Nanoscale. 2018 Jul 19;10(28):13572-13580. doi: 10.1039/c8nr02946f.
A sandwich-type electrochemical immunosensor for sensitive detection of a tumor marker, α-fetoprotein (AFP), was fabricated by employing polydopamine-detection antibody nanoparticles (PDANPs-Ab2) as selective redox cycling-based signal amplifiers on an electrodeposited nano-gold electrode. In this research, PDANPs prepared through oxidative polymerization of dopamine were found to amplify the oxidation charge transfer of the electrochemical mediator (1,1'-ferrocene dimethanol, FDM), which was supported by cyclic voltammetry (CV) and X-ray photoelectron spectroscopy (XPS) investigation. Therefore, PDANPs were utilized as label materials of electrochemical immunosensors to enhance sensitivity for the first time. Meanwhile, the nano-gold electrode was used as a platform to accelerate electron transfer and immobilize capture antibody (Ab1). The electrochemical performance of the AFP immunosensor was investigated in PBS containing FDM with CV. Under optimal conditions, the constructed AFP immunosensor exhibited a wide linear range from 1 pg mL-1 to 50 ng mL-1 and a low detection limit of 0.3 pg mL-1, as well as excellent stability, reproducibility and selectivity. Measurements of AFP in human serum gave excellent correlation with the clinical standard Chemiluminescence Microparticle Immuno Assay (CMIA). These results indicated that the developed immunosensor may have promising application in the clinical diagnosis of AFP and other tumor markers.
一种三明治型电化学免疫传感器,用于灵敏检测肿瘤标志物甲胎蛋白(AFP),通过在电沉积纳米金电极上使用聚多巴胺-检测抗体纳米粒子(PDANPs-Ab2)作为选择性基于氧化还原循环的信号放大器来制备。在这项研究中,通过多巴胺的氧化聚合制备的 PDANPs 被发现可以放大电化学介体(1,1'-二茂铁二甲醇,FDM)的氧化电荷转移,这得到了循环伏安法(CV)和 X 射线光电子能谱(XPS)研究的支持。因此,PDANPs 首次被用作电化学免疫传感器的标记材料以提高灵敏度。同时,纳米金电极用作平台以加速电子转移并固定捕获抗体(Ab1)。通过 CV 在含有 FDM 的 PBS 中研究了 AFP 免疫传感器的电化学性能。在最佳条件下,所构建的 AFP 免疫传感器在 1 pg mL-1 至 50 ng mL-1 的宽线性范围内表现出良好的线性关系,检测限低至 0.3 pg mL-1,具有出色的稳定性、重现性和选择性。在人血清中 AFP 的测量与临床标准化学发光微粒子免疫分析(CMIA)具有极好的相关性。这些结果表明,所开发的免疫传感器可能在 AFP 和其他肿瘤标志物的临床诊断中具有广阔的应用前景。