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A magnetic molecularly imprinted optical chemical sensor for specific recognition of trace quantities of virus

机译:磁性分子印迹光学化学传感器,用于特异性识别痕量病毒

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A magnetic resonance light scattering (RLS) sensor based on the molecularly imprinted polymer (MIP) technique was developed for specific recognition of trace quantities of hepatitis A virus (HAV). Through a surface imprinting technique, the virus-magnetic-MIPs (virus-MMIPs) were prepared as the specific identification element, which was based on the effective synthesis of biomimetic polydopamine (PDA) inspired by mussels on the surface of Fe _(3) O _(4) magnetic nanoparticles. The preparation process of the virus-magnetic-MIPs was simple and rapid under an applied magnetic field. The surface of the magnetic-MIP captured viruses through specific recognition in water, which caused changes to the particle size and shape, and subsequently resulted in changes in the intensity of the RLS. The sensor was applied to determine the amount of HAV in the linear concentration range of 0.02–1.40 nmol L ~(?1) , with a low detection limit of 6.2 pmol L ~(?1) , and it was successfully applied for the immediate detection of added HAV from a 2000-fold dilution of human serum. More importantly, the proposed strategy addressed the difficulty of virus-MIP detection in the elution process and it is rapid, easy, sensitive, and eco-friendly.
机译:开发了一种基于分子印迹聚合物(MIP)技术的磁共振光散射(RLS)传感器,用于特异性识别痕量的甲型肝炎病毒(HAV)。通过表面印迹技术,制备了病毒-磁性-MIPs(病毒-MMIPs)作为特异性识别元素,它是基于贻贝在Fe _(3)的表面上有效合成的仿生聚多巴胺(PDA)。 O_(4)磁性纳米粒子。在外加磁场下,病毒-磁性-MIPs的制备过程简单,快速。磁性MIP的表面通过在水中的特异性识别捕获了病毒,这导致了粒径和形状的变化,并随后导致RLS强度的变化。该传感器用于测定线性浓度范围为0.02–1.40 nmol L〜(?1)的HAV量,检出限低至6.2 pmol L〜(?1),并已成功应用于即时从2000倍稀释的人血清中检测添加的HAV。更重要的是,提出的策略解决了洗脱过程中病毒MIP检测的困难,并且它快速,简便,灵敏且对环境友好。

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