金黄色葡萄球菌
微生物学
噬菌体
地氯酸
化学
细菌
检出限
食品科学
食品微生物学
病菌
微球菌科
受污染的食物
食品污染物
单核细胞增生李斯特菌
食品
食物中毒
生物传感器
生物
致病菌
生物测定
毒力
食品工业
作者
Wenyuan Zhou,Yeling Han,Aiping Deng,Yajie Li,Lei Yuan,Yajun Gao,Qin Hu,Guoqiang Zhu,Zhenquan Yang
标识
DOI:10.1016/j.lwt.2025.118622
摘要
Staphylococcus aureus is an important foodborne pathogen responsible for severe food poisoning. Thus, a rapid, easy-to-perform, and sensitive method is required to screen for S . aureus in ready-to-eat food samples . In this study, we constructed a colorimetric biosensor based on a CuCo 2 S 4 nanozyme with excellent peroxidase activity and the bacteriophage SapYZU01 with attractive properties. We further evaluated its applicability in the rapid and sensitive detection of S. aureus in ready-to-eat food samples (braised beef with potatoes, teriyaki chicken, stir-fried pork, steamed duck with mushrooms, and black pepper beef). The SapYZU01@CuCo 2 S 4 system detected S . aureus in 14 min total detection time (2 min incubation + 12 min reaction), with a detection limit of 78 CFU/mL. Its reliability and accuracy in S. aureus detection were confirmed and unaffected by interfering bacteria or food components in ready-to-eat food samples. In the proposed method, S. aureus blocks nanozyme active sites of SapYZU01@CuCo 2 S 4 , reducing ·OH production. In addition, the phage SapYZU01 acted as a biorecognition element, showing excellent specificity for S. aureus recognition. This was due to special binding between receptor-binding protein (RBP) and wall teichoic acid (WTA). Therefore, SapYZU01@CuCo 2 S 4 is an effective alternative for quantifying viable S. aureus strains in the food industry. • SapYZU01@CuCo 2 S 4 can selectively, sensitively, and rapidly detect viable S. aureus. • SapYZU01@CuCo 2 S 4 was not interfered with by other bacteria or food compounds. • SapYZU01@CuCo 2 S 4 exhibited accurate and reliable S. aureus counts in real food. • S. aureus blocks nanozyme active sites of SapYZU01@CuCo 2 S 4 , reducing ·OH production. • The recognition of SapYZU01@CuCo 2 S 4 is due to the phage receptor-binding protein.
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