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A rapid and specific bacterial detection method based on cell-imprinted microplates

机译:一种基于细胞印迹微孔板的快速和特异性细菌检测方法

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摘要

Bacterial detection has attracted substantial interest in recent years owing to its importance in biology, medical care, drug discovery, and public health. For such applications, bacterial cell-imprinting technologies are regarded as potential methods, as they can fabricate artificial tailor-made receptors for cellular recognition. In comparison to conventional methods, which generally require a few days for bacterial determination, cell-imprinted polymers can save a substantial amount of time. Here, we report a high-throughput bacterial detection method based on a cell-imprinted 96-well microplate. The fabrication of the bacterial cell-imprinted polypyrrole and nafion complex was accomplished on a gold nanoparticle-coated microplate. The cell-imprinted polymer complex on the microplate can spontaneously rebind and specifically detect target cells with high selectivity in a short time frame (within 30 min). Furthermore, the microplates could discriminate particular target Escherichia coil O157:H7 cells from bacterial mixtures. This simple method may be used for a variety of applications such as clinical testing, food safety, and continuous environmental monitoring.
机译:由于其在生物学,医疗,药物发现和公共卫生的重要性,近年来的细菌检测引起了大量兴趣。对于这种应用,细菌电池印迹技术被认为是潜在的方法,因为它们可以制造用于蜂窝识别的人工量制的受体。与常规方法相比,通常需要几天的细菌测定,细胞印迹聚合物可以节省大量时间。在此,我们报告了一种基于细胞印记的96孔微孔板的高通量细菌检测方法。在金纳米颗粒涂覆的微孔板上完成了细菌细胞印迹聚吡咯和Nafion复合物的制备。微孔板上的细胞印迹聚合物复合物可以自发​​地重新纠正,并在短时间内(30分钟内)特别检测具有高选择性的靶细胞。此外,微孔板可以从细菌混合物中区分特定的目标大肠杆菌螺旋O157:H7细胞。这种简单的方法可用于各种应用,例如临床测试,食品安全和连续环境监测。

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