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 >An impedance immunosensor based on low-cost microelectrodes and specific monoclonal antibodies for rapid detection of avian influenza virus H5N1 in chicken swabs
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An impedance immunosensor based on low-cost microelectrodes and specific monoclonal antibodies for rapid detection of avian influenza virus H5N1 in chicken swabs

机译:一种基于低成本微电极和特异性单克隆抗体的阻抗免疫传感器,用于快速检测鸡拭子中的禽流感病毒H5N1

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Early screening of suspected cases is the key to control the spread of avian influenza (AI) H5N1. In our previous studies, an impedance biosensor with an interdigitated array microelectrode based biochip was developed and validated with pure AI H5 virus, but had limitations in cost and reliability of the biochip, specificity of the antibody against Asian in-field H5N1 virus and detection of H5N1 virus in real samples. The purpose of this study is to develop a low-cost impedance immunosensor for rapid detection of Asian in-field AI H5N1 virus in chicken swabs within 1 h and validate it with the H5N1 virus. Specific monoclonal antibodies against AI H5N1 virus were developed by fusion of mouse myeloma cells with spleen cells isolated from an H5N1-virus-immunized mouse. Dot-ELISA analysis demonstrated that the developed antibodies had good affinity and specificity with the H5N1 virus. The microelectrodes were redesigned with compact size, fabricated using an improved wet-etching micro-fabrication process with a higher qualified production rate of 70-80%, and modified with the antibodies by the Protein A method. Equivalent circuit analysis indicated that electron transfer resistor was effective with the increase in impedance after capturing of the H5N1 viruses. Linear relationship between impedance change and logarithmic value of H5N1 virus at the concentrations from 2(-1) to 2(4) HAU/50 mu l was found and the lower limit of detection was 2(-1) HAU/50 mu l. No obvious interferences from non-target viruses such as H6N2, H9N2, Newcastle disease virus, and infectious bronchitis virus were found. Chicken swab tests showed that the impedance immunosensor had a comparable accuracy with real-time RT-PCR compared to viral isolation. (C) 2014 Elsevier B.V. All rights reserved.
机译:尽早筛查可疑病例是控制禽流感(AI)H5N1传播的关键。在我们以前的研究中,开发了具有交叉指状阵列微电极生物芯片的阻抗生物传感器,并已通过纯AI H5病毒进行了验证,但在生物芯片的成本和可靠性,针对亚洲野外H5N1病毒的抗体的特异性以及对H5N1病毒的检测方面存在局限真实样本中的H5N1病毒。这项研究的目的是开发一种低成本的阻抗免疫传感器,用于在1小时内快速检测鸡拭子中的亚洲田间AI H5N1病毒,并使用H5N1病毒对其进行验证。通过将小鼠骨髓瘤细胞与从H5N1病毒免疫小鼠中分离的脾细胞融合,开发了针对AI H5N1病毒的特异性单克隆抗体。 Dot-ELISA分析表明,开发的抗体与H5N1病毒具有良好的亲和力和特异性。将微电极重新设计为紧凑的尺寸,使用改进的湿法蚀刻微加工工艺制造,合格率更高,达到70-80%,并通过蛋白A方法用抗体修饰。等效电路分析表明,电子捕获电阻器在捕获H5N1病毒后随着阻抗的增加是有效的。发现H5N1病毒在2(-1)至2(4)HAU / 50μl浓度下阻抗变化与对数值之间的线性关系,检测下限为2(-1)HAU / 50μl。没有发现来自非目标病毒(例如H6N2,H9N2,新城疫病毒和传染性支气管炎病毒)的明显干扰。鸡拭子测试表明,与病毒分离相比,阻抗免疫传感器与实时RT-PCR的准确性相当。 (C)2014 Elsevier B.V.保留所有权利。

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