Key Laboratory for the Chemistry and Molecular Engineering of Medicinal Resources, Ministry of Education, College of Chemistry and Chemical Engineering, Guangxi Normal University, Guilin, China.
Analyst. 2011 May 21;136(10):2119-24. doi: 10.1039/c0an00836b. Epub 2011 Apr 1.
An integrated microchip electrophoresis (MCE) system with online immunoreaction and laser induced fluorescence (LIF) detection has been developed for simultaneous determination of multi-analytes. In this system, the multiplexed immunoreactions between multiple antibody-immobilized glass beads with analytes and respective fluorescently labeled antigens were performed in a sample reservoir. After online incubation, the immunoreaction solution was injected into a one-way separation channel, and free fluorescently labeled antigens were separated and detected in the separation channel. With the help of glass beads, the immunocomplex can not move into the separation channel, which simplifies the separation of fluorescently labeled antigens. With the use of phenobarbital (PB), phenytoin (PHT), carbamazepine (CBZ) and theophylline (Th) as proof-of-principle analytes, the one-way multiplexed immunoassay could be completed within 20 min, resulting in a response curve over the range of 4.0-400 nM for each analyte. Detection limits (S/N = 3) for the drugs tested were in the range of 1.8 × 10(-9) to 2.5 × 10(-9) M. Compared with the conventional immunoassays, this assay is simple, rapid, sensitive and low cost, and provides an accurate procedure for a multiplex immunoassay. The present method has been applied for the simultaneous determination of PB, PHT, CBZ and Th in human serum, which showed a promise of automated clinical application.
已开发出一种集成微芯片电泳 (MCE) 系统,具有在线免疫反应和激光诱导荧光 (LIF) 检测功能,可用于同时测定多种分析物。在该系统中,在样品库中进行多个抗体固定化玻璃珠与分析物之间的多重免疫反应,以及各自荧光标记的抗原。在线孵育后,将免疫反应溶液注入单向分离通道,并在分离通道中分离和检测游离的荧光标记抗原。借助玻璃珠,免疫复合物不能进入分离通道,从而简化了荧光标记抗原的分离。以苯巴比妥 (PB)、苯妥英 (PHT)、卡马西平 (CBZ) 和茶碱 (Th) 作为原理验证分析物,单向多重免疫测定可在 20 分钟内完成,每个分析物的响应曲线范围为 4.0-400 nM。测试药物的检测限 (S/N = 3) 在 1.8×10(-9) 到 2.5×10(-9) M 范围内。与传统免疫测定相比,该测定方法简单、快速、灵敏且成本低,为多重免疫测定提供了一种准确的方法。该方法已应用于人血清中 PB、PHT、CBZ 和 Th 的同时测定,显示出自动化临床应用的前景。