Department of Biological Sciences, KAIST, Daejeon, Republic of Korea.
Biosens Bioelectron. 2011 Mar 15;26(7):3192-9. doi: 10.1016/j.bios.2010.12.025. Epub 2010 Dec 28.
We demonstrate a highly sensitive electrochemical immunosensor based on the combined use of substrate recycling and carbon nanotubes (CNTs) coated with tyrosinase (TYR) and magnetic nanoparticles (MNP). Both TYR and MNP were immobilized on the surface of CNTs by covalent attachment, followed by additional cross-linking via glutaraldehyde treatment to construct multi-layered cross-linked TYR-MNP aggregates (M-EC-CNT). Magnetically capturable, highly active and stable M-EC-CNT were further conjugated with primary antibody against a target analyte of hIgG, and used for a sandwich-type immunoassay with a secondary antibody conjugated with alkaline phosphatase (ALP). In the presence of a target analyte, a sensing assembly of M-EC-CNT and ALP-conjugated antibody was attracted onto a gold electrode using a magnet. On an electrode, ALP-catalyzed hydrolysis of phenyl phosphate generated phenol, and successive TYR-catalyzed oxidation of phenol produced electrochemically measurable o-quinone that was converted to catechol in a scheme of substrate recycling. Combination of highly active M-EC-CNT and substrate recycling for the detection of hIgG resulted in a sensitivity of 27.6 nA ng(-1) mL(-1) and a detection limit of 0.19 ng mL(-1) (1.2 pM), respectively, representing better performance than any other electrochemical immunosensors relying on the substrate recycling with the TYR-ALP combination. The present immunosensing system also displayed a long-term stability by showing a negligible loss of electrochemical detection signal even after reagents were stored in an aqueous buffer at 4°C for more than 6 months.
我们展示了一种基于底物循环和涂覆有酪氨酸酶(TYR)和磁性纳米颗粒(MNP)的碳纳米管(CNT)组合使用的高灵敏度电化学免疫传感器。TYR 和 MNP 均通过共价附着固定在 CNT 的表面上,然后通过戊二醛处理进行额外交联,以构建多层交联的 TYR-MNP 聚集体(M-EC-CNT)。可通过磁场捕获的、高活性和稳定的 M-EC-CNT 进一步与针对 hIgG 的目标分析物的抗体结合,并与碱性磷酸酶(ALP)偶联的二级抗体一起用于夹心型免疫测定。存在目标分析物时,使用磁铁将 M-EC-CNT 和与 ALP 偶联的抗体的传感组件吸引到金电极上。在电极上,ALP 催化苯膦酸的水解生成苯酚,随后 TYR 催化苯酚的氧化产生电化学可测量的邻醌,邻醌在底物循环方案中转化为儿茶酚。高活性 M-EC-CNT 和底物循环的组合用于检测 hIgG,灵敏度为 27.6 nA ng(-1) mL(-1),检测限为 0.19 ng mL(-1)(1.2 pM),优于任何其他基于 TYR-ALP 组合的底物循环的电化学免疫传感器。即使在试剂在 4°C 的水性缓冲液中储存超过 6 个月后,该免疫传感系统也显示出长期稳定性,电化学检测信号几乎没有损失。