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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 >Rapid detection and subtyping of multiple influenza viruses on a microfluidic chip integrated with controllable micro-magnetic field
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Rapid detection and subtyping of multiple influenza viruses on a microfluidic chip integrated with controllable micro-magnetic field

机译:用可控微磁场集成的微流体芯片多种流感病毒的快速检测和亚型

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AbstractInfluenza viruses have threatened animals and public health systems continuously. Moreover, there are many subtypes of influenza viruses, which have brought great difficulties to the classification of influenza viruses during any influenza outbreak. So it is crucial to develop a rapid and accurate method for detecting and subtyping influenza viruses. In this work, we reported a rapid method for simultaneously detecting and subtyping multiple influenza viruses (H1N1, H3N2 and H9N2) based on nucleic acid hybridization on a microfluidic chip integrated with controllable micro-magnetic field. H1N1, H3N2 and H9N2 could be simultaneously detected in 80min with detection limits about 0.21nM, 0.16nM, 0.12nM in order. Moreover, the sample and reagent consumption was as low as only 3μL. The results indicated that this approach possessed fast analysis and high specificity. Therefore, it is expected to be used to simultaneously subtype and detect multiple targets, and may provide a powerful technique platform for the rapid detection and subtyping analysis of influenza viruses.Highlights?A controllable micro-magnetic field microfluidic chip was constructed.?Based on
机译:<![cdata [ 抽象 流感病毒持续威胁动物和公共卫生系统。此外,有许多流感病毒的亚型,在任何流感爆发过程中对流感病毒的分类带来了巨大的困难。因此,为检测和亚型流感病毒开发一种快速和准确的方法至关重要。在这项工作中,我们报道了一种快速检测和亚次甲酸杂交的多种流感病毒(H1N1,H3N2和H9N2)的快速方法,所述核酸杂交在与可控微磁场集成的微流体芯片上。可以在80min中同时检测H1N1,H3N2和H9N2,检测限约0.21nm,0.16nm,0.12nm。此外,样品和试剂消耗量低至仅为3μL。结果表明,这种方法具有快速的分析和高特异性。因此,预计将用于同时亚型并检测多个目标,并且可以为流感病毒的快速检测和亚型分析提供强大的技术平台。 亮点 构建可控的微磁场微流体芯片。 基于

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