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使用微型自动核酸提取仪结合重组酶聚合酶扩增和侧向流动免疫分析法同时检测五种食源性病原体。

Simultaneous Detection of Five Foodborne Pathogens Using a Mini Automatic Nucleic Acid Extractor Combined with Recombinase Polymerase Amplification and Lateral Flow Immunoassay.

作者信息

Jin Bei, Ma Biao, Li Jiali, Hong Yi, Zhang Mingzhou

机构信息

Zhejiang Provincial Key Laboratory of Biometrology and Inspection & Quarantine, China Jiliang University, Hangzhou 310018, China.

出版信息

Microorganisms. 2022 Jul 5;10(7):1352. doi: 10.3390/microorganisms10071352.

Abstract

In recent years, foodborne disease outbreaks have caused huge losses to the economy and have had severe impacts on public health. The accuracy and variety of detection techniques is crucial to controlling the outbreak and spread of foodborne diseases. The need for instruments increases the difficulty of field detection, while manually-handled samples are subject to user error and subjective interpretation. Here, we use a mini automatic nucleic acid extractor combined with recombinant polymerase amplification (RPA) and lateral flow immunoassay (LFIA) for simultaneous quantitative detection of five major foodborne pathogens. The pre-treatment device using the magnetic bead method allows for nucleic acid extraction of the reagent tank without manual operation, which is highly efficient and stable for preventing aerosol contamination. The gene of , the gene of , the gene of , the gene of and the gene of were used as target fragments. The labeled antibody concentration is optimized on the LFIA to find the equilibrium point for the binding capacity of the five chemical markers and to efficiently and accurately visualize the bands. The RPA assay shows an optimal performance at 37 °C for 15 min. The optimized RPA-LFIA detection limit can reach 10 CFU/mL. There was no cross-reactivity among forty-eight strains. Furthermore, the average recoveries in spiked food samples were 90.5-104.5%. In summary, the RPA-LFIA established in this study can detect five pathogenic bacteria simultaneously with little dependence on laboratory equipment, and it has promising prospects for screening in low-resource areas.

摘要

近年来,食源性疾病暴发给经济造成了巨大损失,并对公众健康产生了严重影响。检测技术的准确性和多样性对于控制食源性疾病的暴发和传播至关重要。对仪器的需求增加了现场检测的难度,而人工处理样本则容易出现用户误差和主观解读。在此,我们使用一种小型自动核酸提取仪,结合重组聚合酶扩增(RPA)和侧向流动免疫分析(LFIA),用于同时定量检测五种主要食源性病原体。采用磁珠法的预处理装置可实现试剂罐核酸的自动提取,无需人工操作,在防止气溶胶污染方面高效且稳定。以[具体细菌1]的基因、[具体细菌2]的基因、[具体细菌3]的基因、[具体细菌4]的基因和[具体细菌5]的基因作为靶片段。在LFIA上对标记抗体浓度进行优化,以找到五种化学标记物结合能力的平衡点,并高效准确地使条带可视化。RPA分析在37℃下15分钟显示出最佳性能。优化后的RPA-LFIA检测限可达10 CFU/mL。四十八株菌株之间无交叉反应。此外,加标食品样本中的平均回收率为90.5-104.5%。综上所述,本研究建立的RPA-LFIA能够同时检测五种病原菌,对实验室设备依赖性小,在资源匮乏地区的筛查中具有广阔前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9ce7/9322833/9b3a8329a070/microorganisms-10-01352-g001.jpg

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