Chen Yaqian, Ma Jiaqi, Yin Xuechi, Deng Ziai, Liu Xiaojing, Yang Di, Zhao Lei, Sun Jing, Wang Jianlong, Zhang Daohong
College of Food Science and Engineering, Northwest A&F University, 22 Xinong Road, Yangling, 712100, Shaanxi, China.
Bio-Nanotechnology Research Institute, Ludong University, Yantai, 264025, Shandong, China.
Biosens Bioelectron. 2023 Mar 15;224:115075. doi: 10.1016/j.bios.2023.115075. Epub 2023 Jan 8.
To explore the superiority of multifunctional nanocomposites and realize the joint-detection of foodborne pathogens, an immersible amplification dip-stick immunoassay (DSIA) was exploited for the sensitive detection of Salmonella typhimurium (S. typhi) and Escherichia coli O157:H7 (E. coli O157:H7). Saving for the basic colorimetric performance, the reporter molecule of CoFeO (CFO) possesses multivalent elements (Co, Fe) as well as multifunction of superior catalase-like activity and magnetic properties. By dint of the catalytic activity of CFO, a directly immersible amplification can be simply achieved to endure the DSIA with an intensive signal and a dual-visible mode for the determination of S. typhi and E. coli O157:H7. In virtue of the magnetic separation and enrichment capability of the CFO, the DSIA can perform a matrix-interference-free detection and obtain a dynamic detection range of 10-10 CFU/mL and a low assay limit of 10 CFU/mL. Moreover, the DSIA has reasonable recovery rates for contamination monitoring of two target bacteria in milk and beef samples. Our research provides a persuasive supplement for the application of multifunctional nanocomposites in the ongoing dip-stick immunoassay and an alternative strategy for the efficient detection of foodborne pathogens.
为了探索多功能纳米复合材料的优越性并实现食源性病原体的联合检测,开发了一种可浸入式扩增试纸免疫分析(DSIA)用于鼠伤寒沙门氏菌(伤寒沙门氏菌)和大肠杆菌O157:H7(大肠杆菌O157:H7)的灵敏检测。除了基本的比色性能外,CoFeO(CFO)报告分子具有多价元素(Co、Fe)以及具有优异过氧化氢酶样活性和磁性的多功能。借助CFO的催化活性,可以简单地实现直接浸入式扩增,以实现具有强信号和双可见模式的DSIA,用于检测伤寒沙门氏菌和大肠杆菌O157:H7。凭借CFO的磁分离和富集能力,DSIA可以进行无基质干扰检测,获得10-10 CFU/mL的动态检测范围和10 CFU/mL的低检测限。此外,DSIA在牛奶和牛肉样品中对两种目标细菌的污染监测具有合理的回收率。我们的研究为多功能纳米复合材料在现行试纸免疫分析中的应用提供了有说服力的补充,并为食源性病原体的高效检测提供了替代策略。