Hubei Collaborative Innovation Center for Rare Metal Chemistry, Hubei Key Laboratory of Pollutant Analysis & Reuse Technology, Department of Chemistry, Hubei Normal University, Huangshi 435002, PR China.
Analyst. 2016 Jul 21;141(14):4381-7. doi: 10.1039/c6an00651e. Epub 2016 May 17.
A nanoporous gold nanosphere (pAu NS) was synthesized to load high-content glucose oxidase (GOx) and ferrocene (Fc) for the successful preparation of a new gold nanoprobe. After the specific recognition of the tumor biomarker of carcinoembryonic antigen (CEA) at a gold electrode based aptasensor, this GOx and Fc dually functionalized pAu NS nanoprobe was further used for sandwich immunoreaction and signal tracing. Based on the Fc-mediated GOx-catalytic reaction, the gold nanoprobes quantitatively captured onto the electrode surface produced a sensitive electrochemical signal corresponding to the protein recognition events, which led to the development of a new biosensing method for CEA measurement. Both the high loading of GOx and Fc on the pAu NS nanocarrier and the enzymatically catalytic reaction of the nanoprobe greatly amplify the electrochemical signal; meanwhile, the immobilization of the Fc mediator on this enzyme nanoprobe and the highly specific aptamer recognition drastically decrease the background current, resulting in the achievement of ultrahigh sensitivity of the method. Under optimum conditions, this method shows an excellent analytical performance including a wide linear relationship of five-order of magnitude and a low detection limit down to 0.45 pg mL(-1). Thus this pAu NS based gold nanoprobe and the proposed immunoassay method provide great potential for practical applications.
一种纳米多孔金纳米球(pAu NS)被合成以负载高含量的葡萄糖氧化酶(GOx)和二茂铁(Fc),成功制备了一种新型金纳米探针。在基于金电极的适体传感器上对肿瘤标志物癌胚抗原(CEA)进行特异性识别后,该 GOx 和 Fc 双重功能化的 pAu NS 纳米探针进一步用于夹心免疫反应和信号跟踪。基于 Fc 介导的 GOx 催化反应,定量捕获到电极表面的金纳米探针产生了与蛋白质识别事件相对应的敏感电化学信号,从而开发了一种用于 CEA 测量的新生物传感方法。GOx 和 Fc 在 pAu NS 纳米载体上的高负载以及纳米探针的酶催化反应极大地放大了电化学信号;同时,Fc 介体在该酶纳米探针上的固定化和高度特异性适体识别大大降低了背景电流,从而实现了该方法的超高灵敏度。在最佳条件下,该方法表现出优异的分析性能,包括五阶数量级的宽线性关系和低至 0.45 pg mL(-1) 的检测限。因此,基于 pAu NS 的金纳米探针和所提出的免疫测定方法为实际应用提供了巨大的潜力。