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一种新型电化学免疫传感器,使用β-环糊精功能化银负载金刚烷修饰的葡萄糖氧化酶作为标记物用于超灵敏检测甲胎蛋白。

A novel electrochemical immunosensor using β-cyclodextrins functionalized silver supported adamantine-modified glucose oxidase as labels for ultrasensitive detection of alpha-fetoprotein.

作者信息

Gao Jian, Ma Hongmin, Lv Xiaohui, Yan Tao, Li Na, Cao Wei, Wei Qin

机构信息

Key Laboratory of Chemical Sensing & Analysis in Universities of Shandong, School of Chemistry and Chemical Engineering, University of Jinan, Jinan 250022, China.

Key Laboratory of Chemical Sensing & Analysis in Universities of Shandong, School of Chemistry and Chemical Engineering, University of Jinan, Jinan 250022, China.

出版信息

Anal Chim Acta. 2015 Sep 17;893:49-56. doi: 10.1016/j.aca.2015.08.052. Epub 2015 Sep 2.

Abstract

In this work, a novel sandwich-type electrochemical immunosensor based on host-guest interaction was fabricated for the detection of alpha-fetoprotein (AFP). Due to the large specific surface area of multiwalled carbon nanotubes and the unique supramolecular recognition ability of β-cyclodextrins, ferrocenecarboxylic acid (Fc) was incorporated into this sensor platform by host-guest interaction to generate an electrochemical signal. And β-cyclodextrins functionalized silver supported adamantine-modified glucose oxidase (GOD-CD-Ag), was used as a label to improve the analytical performance of the immunosensor by the dual amplification strategy. The obtained GOD-CD-Ag conjugates could convert glucose into gluconic acid with the formation of hydrogen peroxide (H2O2). And then silver nanoparticles could in situ catalyze the reduction of the generated H2O2, dramatically improving the oxidation reaction of Fc. The developed immunosensor shows a wide linear calibration range from 0.001 to 5.0 ng/mL with a low detection limit (0.2 pg/mL) for the detection of AFP. The method, with ideal reproducibility and selectivity, has a wide application prospect in clinical research.

摘要

在本工作中,制备了一种基于主客体相互作用的新型夹心型电化学免疫传感器,用于检测甲胎蛋白(AFP)。由于多壁碳纳米管具有较大的比表面积以及β-环糊精独特的超分子识别能力,通过主客体相互作用将二茂铁羧酸(Fc)引入该传感器平台以产生电化学信号。并且,β-环糊精功能化的银负载金刚烷修饰葡萄糖氧化酶(GOD-CD-Ag)用作标记物,通过双放大策略提高免疫传感器的分析性能。所获得的GOD-CD-Ag缀合物可将葡萄糖转化为葡萄糖酸并生成过氧化氢(H2O2)。然后银纳米颗粒可原位催化所生成的H2O2的还原,显著改善Fc的氧化反应。所开发的免疫传感器在检测AFP时显示出从0.001至5.0 ng/mL的宽线性校准范围以及低检测限(0.2 pg/mL)。该方法具有理想的重现性和选择性,在临床研究中具有广阔的应用前景。

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