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基于无标记电化学阻抗谱的恩诺沙星免疫传感器的研制。

Development of an enrofloxacin immunosensor based on label-free electrochemical impedance spectroscopy.

作者信息

Wu Ching-Chou, Lin Chia-Hung, Wang Way-Shyan

机构信息

Department of Bio-industrial Mechatronics Engineering, National Chung Hsing University, No. 250, Kuo Kuang Road, Taichung 402, Taiwan.

出版信息

Talanta. 2009 Jun 30;79(1):62-7. doi: 10.1016/j.talanta.2009.03.006. Epub 2009 Mar 14.

Abstract

Enrofloxacin is the most widespread antibiotic in the fluoroquinolone family. As such, the development of a rapid and sensitive method for the determination of trace amounts of enrofloxacin is an important issue in the health field. The interaction of the enrofloxacin antigen to a specific antibody (Ab) immobilized on an 11-mercapto-undecanoic acid-coated gold electrode was quantified by electrochemical impedance spectroscopy. Two equivalent circuits were separately used to interpret the obtained impedance spectra. These circuits included one resistor in series with one parallel circuit comprised of a resistor and a capacitor (1R//C), and one resistor in series with two parallel RC circuits (2R//C). The results indicate that the antigen-antibody reaction analyzed using the 1R//C circuit provided a more sensitive resistance increment against the enrofloxacin concentration than that of the 2R//C circuit. However, the 2R//C circuit provided a better fitting for impedance spectra, and therefore supplies more detailed results of the enrofloxacin-antibody interaction, causing the increase of electron transfer resistance selectively to the modified layer, and not the electrical double layer. The antibody-modified electrode allowed for analysis of the dynamic linear range of 1-1000 ng/ml enrofloxacin with a detection limit of 1 ng/ml. The reagentless and label-free impedimetric immunosensors provide a simple and sensitive detection method for the specific determination of enrofloxacin.

摘要

恩诺沙星是氟喹诺酮类中应用最为广泛的抗生素。因此,开发一种快速灵敏的痕量恩诺沙星测定方法是健康领域的一个重要问题。通过电化学阻抗谱对恩诺沙星抗原与固定在11-巯基十一烷酸修饰金电极上的特异性抗体(Ab)之间的相互作用进行了定量分析。分别使用两个等效电路来解释所获得的阻抗谱。这些电路包括一个与由一个电阻和一个电容组成的并联电路串联的电阻(1R//C),以及一个与两个并联RC电路串联的电阻(2R//C)。结果表明,使用1R//C电路分析抗原-抗体反应时,与2R//C电路相比,对恩诺沙星浓度的电阻增量更灵敏。然而,2R//C电路对阻抗谱的拟合更好,因此能提供恩诺沙星-抗体相互作用更详细的结果,导致电子转移电阻选择性地增加到修饰层上,而不是双电层上。抗体修饰电极可用于分析恩诺沙星的动态线性范围为1-1000 ng/ml,检测限为1 ng/ml。这种无需试剂和标记的阻抗免疫传感器为恩诺沙星的特异性测定提供了一种简单灵敏的检测方法。

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