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Highly stable and reusable imprinted artificial antibody used for in situ detection and disinfection of pathogens

机译:高度稳定且可重复使用的印迹人工抗体用于病原体的原位检测和消毒

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摘要

Sandwich ELISA methods have been widely used for biomarker and pathogen detection because of their high specificity and sensitivity. However, the main drawbacks of this assay are the cost, the time-consuming procedure for the isolation of antibodies and their poor stability. To overcome these restrictions, we herein fabricated artificial antibodies based on imprinting technology and developed a sandwich ELISA for pathogen detection. Both the capture and detection antibodies were obtained via an in situ method, with simplicity, rapidity and low cost. The peroxidase mimics, the CeO2 nanoparticles, as signal generators were integrated with the detection antibody. The fabricated artificial antibodies exhibited not only natural antibody-like binding affinities and selectivities, but also superior stability and reusability. The detection limit was about 500 CFU mL–1, which is much lower than that of traditional ELISA methods (104 to 105 CFU mL–1). Furthermore, the capture antibody can disinfect pathogens in situ.
机译:夹心ELISA方法具有高度的特异性和敏感性,已被广泛用于生物标志物和病原体的检测。然而,该测定法的主要缺点是成本,分离抗体的费时程序及其稳定性差。为了克服这些限制,我们在此基于印迹技术制备了人工抗体,并开发了用于病原体检测的夹心ELISA。捕获抗体和检测抗体均通过原位方法获得,简便,快速且成本低廉。过氧化物酶模拟物CeO2纳米粒子作为信号发生器与检测抗体整合在一起。制备的人工抗体不仅表现出天然的抗体样结合亲和力和选择性,而且还具有出色的稳定性和可重复使用性。检测限约为500 CFU mL –1 ,远低于传统ELISA方法(10 4 至10 5 CFU mL –1 )。此外,捕获抗体可以原位消毒病原体。

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