College of Food and Biological Engineering, Zhengzhou University of Light Industry, Zhengzhou, China.
Henan Key Laboratory of Cold Chain Food Quality and Safety Control, Zhengzhou, China.
Anal Methods. 2022 Jun 23;14(24):2423-2430. doi: 10.1039/d2ay00506a.
() is one of the most lethal pathogenic bacteria. Although the traditional microbial culture method has high sensitivity and selectivity for the diagnosis of , it is time-consuming and not suitable for on-site detection. A rapid, convenient and visualized on-site detection method is particularly needed. In this work, FeO@UiO-66-NH was prepared for both magnetic separation and lateral flow immunoassay (LFIA) for the detection of by taking advantage of the easy separation of the magnetic core FeO and the high surface area of the outer layer UiO-66-NH. FeO@UiO-66-NH with a high surface area and good water-dispersibility and optical properties was synthesized by a simple hydrothermal process. It could directly adsorb on the surface of target bacteria and form FeO@UiO-66-NH-bacteria conjugates, without the labeling of an antibody. After magnetic separation and concentration, the FeO@UiO-66-NH-bacteria conjugates were detected by the antibody on the test line of the LFIA strip, resulting in a visible orange band. The capture efficiency and LFIA detection of FeO@UiO-66-NH were optimized in this study. Under the optimal conditions, a good linear correlation between the test line intensity and the concentration of was obtained in the range of 10-10 CFU mL, and the limit of detection was 2.2 × 10 CFU mL by the naked eye. The FeO@UiO-66-NH-based LFIA strip showed strong specificity for , and the detection took 45 min without culture enrichment. Therefore, the proposed FeO@UiO-66-NH-based strip showed the advantages of simple synthesis, being label-free, low cost, good selectivity and convenience.
()是一种最致命的病原菌。虽然传统的微生物培养方法对的诊断具有高灵敏度和选择性,但耗时且不适合现场检测。特别需要一种快速、方便和可视化的现场检测方法。在这项工作中,利用磁性核 FeO 易于分离和外层 UiO-66-NH 的高表面积,制备了 FeO@UiO-66-NH,用于磁分离和侧向流动免疫分析(LFIA)检测。通过简单的水热过程合成了具有高表面积、良好水分散性和光学性能的 FeO@UiO-66-NH。它可以直接吸附在靶细菌的表面,并形成 FeO@UiO-66-NH-细菌缀合物,而无需标记抗体。经过磁分离和浓缩后,LFIA 条带的测试线上用抗体检测 FeO@UiO-66-NH-细菌缀合物,导致出现可见的橙色条带。本研究优化了 FeO@UiO-66-NH 的捕获效率和 LFIA 检测。在最佳条件下,在 10-10 CFU mL 的范围内,测试线强度与浓度之间得到了良好的线性相关性,并且通过肉眼可以检测到 2.2×10 CFU mL 的检测限。基于 FeO@UiO-66-NH 的 LFIA 条带对表现出很强的特异性,并且无需培养富集即可在 45 分钟内完成检测。因此,所提出的基于 FeO@UiO-66-NH 的条带具有合成简单、无标记、成本低、选择性好和方便的优点。