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Functionalized magnetic microparticle-based colorimetric platform for influenza A virus detection

机译:功能化的基于磁性微粒的比色平台,用于甲型流感病毒检测

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A colorimetric platform for influenza A virus detection was developed by using the high efficiency of enzymatic catalysis and the reduction of gold ions with hydrogen peroxide. Aptamer-functionalized magnetic microparticles were synthesized to capture the influenza A virus. This was followed by the binding of ConA-GOx-AuNPs to the H3N2 virus through the ConA-glycan interaction. The sandwich complex was subsequently dispersed in glucose solution to trigger an enzymatic reaction to produce hydrogen peroxide, which controlled the growth of gold nanoparticles and produced colored solutions. The determination of H3N2 concentration was realized by comparing the two differently colored gold nanoparticles. This method could detect the target virus as low as 11.16 mu g ml(-1). Furthermore, it opens new opportunities for sensitive and colorimetric detection of viruses and proteins.
机译:利用高效的酶催化作用和过氧化氢还原金离子,开发了一种比色平台,用于检测甲型流感病毒。合成适体功能化的磁性微粒以捕获甲型流感病毒。随后,ConA-GOx-AuNPs通过ConA-聚糖相互作用与H3N2病毒结合。随后将三明治复合物分散在葡萄糖溶液中以引发酶促反应以产生过氧化氢,该过氧化氢控制了金纳米颗粒的生长并产生了有色溶液。通过比较两种颜色不同的金纳米颗粒,可以确定H3N2的浓度。此方法可以检测到低至11.16μg ml(-1)的目标病毒。此外,它为病毒和蛋白质的灵敏和比色检测提供了新的机会。

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