Key Laboratory of Analysis and Detection for Food Safety (Ministry of Education), and Fujian Provincial Key Laboratory of Analysis and Detection for Food Safety, Department of Chemistry, Fuzhou University, Fuzhou 350108, China.
Anal Chem. 2010 Feb 15;82(4):1527-34. doi: 10.1021/ac902768f.
A novel nanoparticle-based electrochemical immunoassay of carbohydrate antigen 125 (CA125) as a model was designed to couple with a microfluidic strategy using anti-CA125-functionalized magnetic beads as immunosensing probes. To construct the immunoassay, thionine-horseradish peroxidase conjugation (TH-HRP) was initially doped into nanosilica particles using the reverse micelle method, and then HRP-labeled anti-CA125 antibodies (HRP-anti-CA125) were bound onto the surface of the synthesized nanoparticles, which were used as recognition elements. Different from conventional nanoparticle-based electrochemical immunoassays, the recognition elements of the immunoassay simultaneously contained electron mediator and enzyme labels and simplified the electrochemical measurement process. The sandwich-type immunoassay format was used for the online formation of the immunocomplex in an incubation cell and captured in the detection cell with an external magnet. The electrochemical signals derived from the carried HRP toward the reduction of H(2)O(2) using the doped thionine as electron mediator. Under optimal conditions, the electrochemical immunoassay exhibited a wide working range from 0.1 to 450 U/mL with a detection limit of 0.1 U/mL CA125. The precision, reproducibility, and stability of the immunoassay were acceptable. The assay was evaluated for clinical serum samples, receiving in excellent accordance with results obtained from the standard enzyme-linked immunosorbent assay (ELISA) method. Concluding, the nanoparticle-based assay format provides a promising approach in clinical application and thus represents a versatile detection method.
设计了一种基于新型纳米粒子的电化学免疫分析方法,以糖链抗原 125(CA125)为模型,结合使用抗 CA125 功能化磁性珠的微流控策略作为免疫传感探针。为构建免疫分析,首先使用反胶束方法将噻嗪-辣根过氧化物酶缀合物(TH-HRP)掺杂到纳米硅粒子中,然后将 HRP 标记的抗 CA125 抗体(HRP-anti-CA125)结合到合成的纳米粒子表面,将其用作识别元件。与传统的基于纳米粒子的电化学免疫分析不同,免疫分析的识别元件同时包含电子介体和酶标记物,简化了电化学测量过程。采用夹心型免疫分析形式在孵育池中在线形成免疫复合物,并在外加磁场中在检测池中捕获。所得 HRP 用于掺杂的噻嗪作为电子介体还原 H(2)O(2)的电化学信号。在最佳条件下,电化学免疫分析显示出从 0.1 到 450 U/mL 的宽工作范围,检测限为 0.1 U/mL CA125。免疫分析的精密度、重现性和稳定性是可以接受的。该测定法用于临床血清样品的评估,与标准酶联免疫吸附测定(ELISA)方法的结果非常吻合。总之,基于纳米粒子的分析方法为临床应用提供了有前途的方法,因此代表了一种多功能的检测方法。