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基于酪胺信号放大的新型免疫传感器
引用本文:刘梦琴,蒋健晖,冯泳兰,黄勇,沈国励,俞汝勤.基于酪胺信号放大的新型免疫传感器[J].分析化学,2010,38(2).
作者姓名:刘梦琴  蒋健晖  冯泳兰  黄勇  沈国励  俞汝勤
作者单位:1. 衡阳师范学院化学与材料科学系功能金属有机材料湖南省重点实验室,衡阳,421008
2. 湖南大学化学化工学院化学生物传感与计量学国家重点实验室,长沙,410082
基金项目:国家自然科学基金项目(No.20205005);;新世纪优秀人才支持计划基金(No.NCET-04-0768);;湖南省重点学科建设项目;;湖南省教育厅科研计划项目(No.07C162)资助
摘    要:将酪胺应用于酶联免疫分析,建立了一种新的高灵敏伏安型免疫传感器。利用纳米金的静电吸咐和己二硫醇、巯基乙胺的自组装,将羊抗人IgG抗体固定到金电极表面上,以辣根过氧化物酶标记羊抗人IgG抗体为酶标抗体,以生物素化酪胺为酶底物,利用催化酪胺沉积反应,在传感界面沉积大量生物素,使原始信号得到几何级数的放大。结果表明,通过生物素化酪胺催化放大后,制得的免疫传感器对H2O2的催化能力增大近20倍,检测hIgG在1.5μg/L~22 mg/L范围内有良好的线性关系,检出限为0.1μg/L。用于实际试样的回收率的测定,结果良好。

关 键 词:电化学酶联免疫传感器  信号放大  酪胺氧化沉积  生物素  纳米金  

A Novel Electrochemical Enzyme-linked Immunosensor Based on Tyramine Signal Amplification
LIU Meng-Qin,JIANG Jian-Hui,FENG Yun-Lan,HUANG Yong,SHEN Guo-Li,YU Ru-Qin.A Novel Electrochemical Enzyme-linked Immunosensor Based on Tyramine Signal Amplification[J].Chinese Journal of Analytical Chemistry,2010,38(2).
Authors:LIU Meng-Qin  JIANG Jian-Hui  FENG Yun-Lan  HUANG Yong  SHEN Guo-Li  YU Ru-Qin
Institution:Department of Chemistry and Materials Science;Hengyang Normal University;Key Laboratory of Functional Organometallic Materials of Hengyang Normal University;College of Hunan Province;Hengyang 421008;State Key Laboratory of Chemo/Biosensing and Chemometrics;Chemistry and Chemical Engineering College;Hunan University;Changsha 410082
Abstract:A novel and highly sensitive voltammetric enzyme-linked immunosensor was developed based on tyramine) oxidation deposition. It was shown that gold nano-particles(colloid Au) could be used as a platform to immobilize antibodies by adsorption. By a sandwich immunossary format with goat-anti-human IgG labled Horseradish peroxidase(HRP) as the second antibody and catalytic amplification by biotin-tyramine, the immunosensor′s) catalytic ability to hydrogen peroxide increased nearly 20 times), the sensor exhibitd a linear response to human IgG in the concentration range from 1.5 μg/L-22 mg/L, and the detection limit was 0.1 μg/L), the regression equation could be expressed as Δi_p(μA) =2.8859c(mg/L)+17.152 with a correlation) coefficient of 0.9872. The immunosensor can be used to quantitatively determine hIgG in the sample) of human serum).
Keywords:Electrochemical enzyme-linked immunosensor  Signal amplification  Tyramine oxidation deposition  Biotin  Gold nanoparticles  
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