State Key Laboratory for Managing Biotic and Chemical Threats to the Quality and Safety of Agro-products, Ningbo University, Ningbo, 315211, China and School of Marine Sciences, Ningbo University, Ningbo 315832, China.
Zhejiang Key Laboratory of Exploitation and Preservation of Coastal Bio-resource, Zhejiang Mariculture Research Institute, Wenzhou 325005, China.
Anal Methods. 2021 Jun 24;13(24):2710-2721. doi: 10.1039/d1ay00492a.
Waterborne pathogens are becoming a serious worldwide health hazard; thus, the regular monitoring of epidemic pathogens is urgently required for public safety. In the present study, we developed a microfluidic chip integrated loop-mediated isothermal amplification technique (on-chip LAMP) to simultaneously detect 10 waterborne pathogenic bacteria, Campylobacter jejuni, Listeria monocytogenes, Salmonella enterica, Shigella flexneri, Staphylococcus aureus, Vibrio alginolyticus, V. cholerae, V. parahemolyticus, V. vulnificus, and Yersinia enterocolitica. This method was capable of simultaneously completing 22 genetic analyses of two specimens and achieved limits of detection ranging from 7.92 × 10-3 to 9.54 × 10-1 pg of genomic DNA of pure bacteria per reaction. The processes from sample loading to microfluidic operation were in a highly automated format, and the LAMP reaction ran to completion within 35 minutes, with a minimal volume of 22 μl per each half of a single chip. The coefficient of variation for the time-to-positive value was less than 0.1, indicating an excellent reproducibility of the dual-sample on-chip LAMP assay. The clinical sensitivity and specificity in analyses of coastal water samples were 93.1% and 98.0%, respectively, in comparison with traditional microbiological methods. Our established dual-sample on-chip LAMP assay provides an effective multiple-pathogen analysis of waterborne bacterial pathogens. This indicates that the method is applicable for on-site detection and routine monitoring of waterborne bacteria in aquatic environments.
水传播病原体正在成为全球严重的健康危害,因此迫切需要对流行病原体进行常规监测,以确保公共安全。本研究开发了一种微流控芯片集成环介导等温扩增技术(on-chip LAMP),用于同时检测 10 种水传播病原体:空肠弯曲菌、单核细胞增生李斯特菌、肠炎沙门氏菌、福氏志贺菌、金黄色葡萄球菌、溶藻弧菌、霍乱弧菌、副溶血性弧菌、创伤弧菌和小肠结肠炎耶尔森菌。该方法能够同时完成两个标本的 22 次基因分析,检测限范围为 7.92×10-3 至 9.54×10-1 pg 纯细菌基因组 DNA/反应。从样品加载到微流控操作的过程均采用高度自动化的格式,LAMP 反应在 35 分钟内完成,每个芯片的一半反应仅需 22 μl 的最小体积。阳性时间的变异系数小于 0.1,表明双样本 on-chip LAMP 分析具有出色的重现性。与传统微生物方法相比,该方法在沿海水样分析中的临床灵敏度和特异性分别为 93.1%和 98.0%。我们建立的双样本 on-chip LAMP 分析方法为水传播细菌病原体的多重病原体分析提供了有效手段。这表明该方法适用于水环境污染中现场检测和常规监测水传播细菌。