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Highly sensitive electrochemical biosensor based on redox - active monolayer for detection of anti-hemagglutinin antibodies against swine-origin influenza virus H1N1 in sera of vaccinated mice

机译:基于氧化还原 - 活性单层的高敏感的电化学生物传感器,用于检测疫苗小鼠血清中猪原血流感病毒H1N1的抗血凝素抗体

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In this work, we report an electrochemical biosensor for the detection of anti-hemagglutinin antibodies against the swine virus H1N1 present in mice sera immunized with mixture of His6-H1 HA in monomeric and oligomeric form. The oriented immobilization of the recombinant His-tagged hemagglutinin (His6-H1 HA) consists of: (i) formation of a mixed layer of 4-mercaptobutanol (MBT) and the thiol derivative of dipyrromethene (DPM); (ii) complexation of?Cu (II) by DPM; (iii) immobilization of His6-H1 HA via coordination bonds between Cu (II) sites from DPM-Cu (II) complex and imidazole nitrogen atoms of a histidine tag; (iv) filling free spaces with bovine serum albumin. The interactions between recombinant His6- H1 HA covalently attached to the electrode surface and the anti-hemagglutinin H1 antibodies present in mice sera were explored with Osteryoung square-wave voltammetry. This analytical device was able to detect the antibodies present in vaccinated mice sera diluted from 1?×?109 to 1?×?108 fold. The unprecedented sensitivity of described biosensor is much better than widely use ELISA test and other analytical methods for determination of antibodies against the influenza A viruses. It has been proved that redox active DPM-Cu (II) monolayer is a universal platform suitable for stable and oriented immobilization of any His-tagged sensing elements. Thus, this universal layer could be a base of numerous analytical devices suitable for detection of antibodies against different viruses.
机译:在这项工作中,我们报告了一种用于检测抗血凝素抗体的电化学生物传感器,用于针对用His6-H1 Ha在单体和低聚形式的混合物中免疫的小鼠血清中存在的猪病毒H1N1。重组其标记的血凝素(HIS6-H1 HA)的定向固定包括:(i)形成4-巯基丁醇(MBT)的混合层和二甲基乙烯(DPM)的硫醇衍生物; (ii)DPM的络合?CU(II); (iii)通过来自DPM-Cu(II)的Cu(II)位点与组氨酸标签的复合物和咪唑氮原子的Cu(II)位点之间的协调键固定HIS6-H1 HA; (iv)用牛血清白蛋白填充自由空间。用Osteryoung Square-Wave伏安法探讨了重组与电极表面的重组His6-H1 HA之间的相互作用和小鼠血清中存在的抗血凝素H1抗体。该分析装置能够检测从1Ω·109至1×108倍稀释的接种疫苗的小鼠血清中存在的抗体。描述的生物传感器的前所未有的敏感性远远优于广泛使用的ELISA试验和其他分析方法,用于测定抗甲型病毒的抗体。已经证明,氧化还原活性DPM-Cu(II)单层是适用于任何其标记的传感元件的稳定和定向固定的通用平台。因此,这种通用层可以是许多分析装置的基础,适用于检测针对不同病毒的抗体。

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