Sun Zhen, Guo Jia, Wan Wenbo, Wang Chunxing
College of Physics and Electronic Science, Shandong Normal University, Jinan 250358, China.
College of Information Science and Engineering, Shandong Normal University, Jinan 250358, China.
Nanomaterials (Basel). 2022 Jul 14;12(14):2417. doi: 10.3390/nano12142417.
Bacterial contamination is an important factor causing food security issues. Among the bacteria, is one of the main pathogens of food-borne microorganisms. However, traditional bacterial detection approaches cannot meet the requirements of real-time and on-site detection. Thus, it is of great significance to develop a rapid and accurate detection of bacteria in food to ensure food safety and safeguard human health. The pathogen heat-treatment module was designed in this paper based on the techniques including nanoprobe, pathogen heat-treatment, graphene transparent electrode (GTE), and adenosine triphosphate (ATP) bioluminescence technology. The system mainly consists of two parts: one is the optical detection unit; the other is the data processing unit. And it can quickly and automatically detect the number of bacterial colonies in food such as milk etc. The system uses not only the probe to capture and enrich by antigen-antibody interaction but also the heat treatment to increase the amount of ATP released from bacterial cells within five minutes. To enhance the detecting accuracy and sensitivity, the electric field generated by GTE is adopted in the system to enrich ATP. Compared to the other conventional methods, the linear correlation coefficient of the system can be reached 0.975, and the system meets the design requirements. Under the optimal experimental conditions, the detection can be completed within 25 min, and the detectable concentration of bacteria is in the range of 3.1 × 10-10 CFU/mL. This system satisfies the demands of a fast and on-site inspection.
细菌污染是引发食品安全问题的一个重要因素。在细菌中,是食源微生物的主要病原体之一。然而,传统的细菌检测方法无法满足实时和现场检测的要求。因此,开发一种快速、准确检测食品中细菌的方法对于确保食品安全和保障人类健康具有重要意义。本文基于纳米探针、病原体热处理、石墨烯透明电极(GTE)和三磷酸腺苷(ATP)生物发光技术等设计了病原体热处理模块。该系统主要由两部分组成:一部分是光学检测单元;另一部分是数据处理单元。它能够快速、自动地检测牛奶等食品中的细菌菌落数量。该系统不仅利用探针通过抗原-抗体相互作用捕获和富集,还利用热处理在五分钟内增加细菌细胞释放的ATP量。为提高检测精度和灵敏度,系统采用GTE产生的电场来富集ATP。与其他传统方法相比,该系统的线性相关系数可达0.975,满足设计要求。在最佳实验条件下,25分钟内即可完成检测,可检测的细菌浓度范围为3.1×10-10 CFU/mL。该系统满足快速现场检测的需求。