首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >Development and application of a novel electrochemical immunosensor for tetracycline screening in honey using a fully integrated electrochemical BioMEMS
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Development and application of a novel electrochemical immunosensor for tetracycline screening in honey using a fully integrated electrochemical BioMEMS

机译:一种新型电化学免疫传感器对蜂蜜四环素筛选的新型电化学免疫传感器的研制与应用

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摘要

Tetracycline (TC) is a veterinary drug, wildly prescribed for prophylactic and therapeutic purposes. Consequently, its remaining residues in food products have to be regularized. We report in this paper about the development of a novel immunosensor based on an integrated bio micro-electromechanical system (Bio-MEMS) containing eight gold microelectrodes (mu WEs), an integrated silver and platinum reference and counter electrodes, respectively. TC immobilization on the mu WEs surface was conducted using three methods. The first through functionalization with 4-aminophenylacetic acid (CMA), the second by functionalization with CMA followed by preconcentration of a new structure of magnetic nanoparticles (MNPs) coated with poly (pyrrole-co-pyrrole-2-carboxylic acid) (Py/Py-COOH/MNPs) cross-linked with Ab-TC, and the last one directly through the functionalization with Py/Py-COOH/MNPs. The analyte was quantified by competitive detection with TC immobilized on the mu WEs surface toward specific polyclonal antibody (Ab-TC), using a mixture of a fixed concentration of Ab-TC and decreasing levels of TC one from 0.1 pg mL(-1) to 1000 pg mL(-1). Microcontact printing, followed by fluorescence microscopy characterization were performed during the functionalization of the immunosensor surface to certify that the corresponding immune detection process is taking place. This immunosensor was found to be highly sensitive with a limit of detection of 1.2 pg mL(-1) and specific in the presence of interferents. The standard addition method was exploited to detect TC in honey samples. The present immunosensor platform is up-and-coming for TC detection which can dramatically decrease the time of analysis providing a new pathway for advanced immunoassays development in industrial food control.
机译:四环素(Tc)是一种兽药药物,用于预防性和治疗目的。因此,食品中的其余残留物必须进行规范化。我们在本文中报告了基于含有八个金微电极(MU WES),集成银和铂参考和计数器电极的集成生物微机电系统(BIO-MEMS)的新型免疫传感器的开发。使用三种方法进行Mu Wes表面上的Tc固定化。通过用4-氨基苯基乙酸(CMA)的第一通过官能化,第二通过CMA官能化,然后进行具有聚(吡咯 - 共吡咯-2-羧酸)的磁性纳米粒子(MNP)的新结构的前浓缩(PY / Py-CoOH / MNPS)与AB-TC交联,并通过用PY / PY-COOH / MNP直接通过功能化。通过用固定在MU WES表面上的TC朝向特定的多克隆抗体(AB-TC),使用固定浓度的AB-TC和从0.1pg ml(-1)的液体的混合物来定量分析物。到1000 pg ml(-1)。在免疫传感器表面的官能化期间进行微观印刷,然后进行荧光显微镜表征,以证明正在发生相应的免疫检测过程。发现这种免疫传感器对1.2pg ml(-1)的检测极限具有高度敏感性,并且在干扰的存在下具体。利用标准添加方法来检测蜂蜜样品中的Tc。本发明的免疫传感器平台是升级的,用于TC检测,这可以显着降低分析时间,为工业食物控制中的高级免疫测定发育提供新的途径。

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