Zhejiang Provincial Key Laboratory of Biometrology and Inspection & Quarantine, China Jiliang University, Hangzhou 310018, China.
Hangzhou Quickgene Sci-Tech. Co., Ltd., Hangzhou 310018, China.
Biosensors (Basel). 2023 Jun 14;13(6):652. doi: 10.3390/bios13060652.
The five recognized zoonotic foodborne pathogens, namely, , , , and , pose a major threat to global health and social-economic development. These pathogenic bacteria can cause human and animal diseases through foodborne transmission and environmental contamination. Rapid and sensitive detection for pathogens is particularly important for the effective prevention of zoonotic infections. In this study, rapid and visual europium nanoparticle (EuNP)-based lateral flow strip biosensors (LFSBs) combined with recombinase polymerase amplification (RPA) were developed for the simultaneous quantitative detection of five foodborne pathogenic bacteria. Multiple T lines were designed in a single test strip for increasing the detection throughput. After optimizing the key parameters, the single-tube amplified reaction was completed within 15 min at 37 °C. The fluorescent strip reader recorded the intensity signals from the lateral flow strip and converted the data into a T/C value for quantification measurement. The sensitivity of the quintuple RPA-EuNP-LFSBs reached a level of 10 CFU/mL. It also exhibited good specificity and there was no cross-reaction with 20 non-target pathogens. In artificial contamination experiments, the recovery rate of the quintuple RPA-EuNP-LFSBs was 90.6-101.6%, and the results were consistent with those of the culture method. In summary, the ultrasensitive bacterial LFSBs described in this study have the potential for widespread application in resource-poor areas. The study also provides insights in respect to multiple detection in the field.
五种公认的食源性人畜共患病病原体,即、、、和,对全球健康和社会经济发展构成重大威胁。这些病原菌可通过食源性传播和环境污染导致人类和动物疾病。对病原体进行快速、灵敏的检测对于有效预防人畜共患感染尤为重要。本研究开发了基于铕纳米粒子(EuNP)的快速可视化侧向流条生物传感器(LFSB)与重组酶聚合扩增(RPA)联合,用于同时定量检测五种食源性病原菌。在单个测试条上设计了多个 T 线以增加检测通量。优化关键参数后,在 37°C 下,单管扩增反应在 15 分钟内完成。荧光条阅读器记录侧向流条的强度信号,并将数据转换为 T/C 值进行定量测量。五重 RPA-EuNP-LFSB 的灵敏度达到 10 CFU/mL。它还表现出良好的特异性,与 20 种非靶标病原体无交叉反应。在人工污染实验中,五重 RPA-EuNP-LFSB 的回收率为 90.6-101.6%,与培养方法的结果一致。综上所述,本研究中描述的超敏细菌 LFSB 具有在资源匮乏地区广泛应用的潜力。该研究还为现场的多重检测提供了思路。