Key Laboratory of Agricultural Information Acquisition Technology, Ministry of Agriculture and Rural Affairs, China Agricultural University, Beijing 100083, China.
Key Laboratory of Smart Agriculture System Integration, Ministry of Education, China Agricultural University, Beijing 100083, China.
Lab Chip. 2022 Sep 27;22(19):3780-3789. doi: 10.1039/d2lc00650b.
This study reported an automatic centrifugal system for rapid quantification of foodborne pathogenic bacteria based on immunomagnetic separation (IMS) for target bacteria enrichment and recombinase aided amplification (RAA) for nucleic acid detection. First, target bacteria were captured by immune magnetic nanoparticles (MNPs) to form magnetic bacteria, which were purified and enriched by magnetic separation. Then, nucleic acid extraction buffer was used to extract genomic DNA of magnetic bacteria and dissolve lyophilized RAA reagent. Finally, isothermal amplification and fluorescent detection were conducted for bacteria quantification. Bacteria magnetic separation, nucleic acid extraction and fluorescent RAA detection were elaborately achieved in a centrifugal disc with unique functional chambers and multistage siphon channels. A supporting device was developed to automatically and successively perform the programmed centrifugal protocol, including temperature control for isothermal amplification and fluorescence detection for real-time RAA analysis. Under optimal conditions, this centrifugal system enabled detection as low as 10 CFU mL in spiked chicken samples in 1 h with average recovery of 105.6% and average standard deviation of 8.4%. It has been demonstrated as an alternative for rapid detection of .
本研究报道了一种基于免疫磁分离(IMS)用于目标细菌富集和重组酶辅助扩增(RAA)用于核酸检测的自动离心系统,用于快速定量食源性病原体。首先,通过免疫磁性纳米颗粒(MNP)捕获目标细菌,形成磁性细菌,然后通过磁分离进行纯化和富集。然后,使用核酸提取缓冲液提取磁性细菌的基因组 DNA 并溶解冻干的 RAA 试剂。最后,进行等温扩增和荧光检测以定量细菌。细菌磁分离、核酸提取和荧光 RAA 检测在具有独特功能腔室和多级虹吸管通道的离心盘上进行了精心设计。开发了一种支撑装置,可自动、连续执行预定的离心方案,包括用于等温扩增的温度控制和用于实时 RAA 分析的荧光检测。在最佳条件下,该离心系统能够在 1 小时内从添加的鸡肉样品中检测到低至 10 CFU mL 的浓度,平均回收率为 105.6%,平均标准偏差为 8.4%。它已被证明是快速检测的一种替代方法。