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用于快速灵敏检测沙门氏菌的双功能化缺陷金属有机框架

Dual-functionalized defective metal-organic frameworks for fast and sensitive biosensing of Salmonella.

作者信息

Yuan Jing, Jia Kaiyuan, Li Yuntao, Li Yanbin, Lin Jianhan

机构信息

National Innovation Center for Digital Agricultural Products Circulation, Ministry of Agriculture and Rural Affairs, China Agricultural University, Beijing 100083, China.

Institute of Semiconductors, Chinese Academy of Sciences, Beijing 100083, China.

出版信息

Food Chem. 2025 Nov 15;492(Pt 1):145350. doi: 10.1016/j.foodchem.2025.145350. Epub 2025 Jun 26.

Abstract

Accurate screening of pathogenic bacteria is effective to prevent foodborne diseases. In this study, a handheld biosensor was newly developed for sensitive detection of Salmonella inside a pipette tip using immune nickel meshes (INMs) for bacterial enrichment and fluorescent defective metal-organic frameworks with boronic acid (MOFs@B(OH)) for bacterial labeling. First, three INMs were respectively assembled in a 3D-printed conic separator inside a tip. Then, the mixture of bacterial sample and MOFs@B(OH) was pipetted in and out, allowing the antibodies on INMs to capture flow-through target bacteria and MOFs@B(OH) to label them for formation of INM-bacteria-MOFs@B(OH) conjugates. Finally, acetic acid was pipetted to dissociate MOFs@B(OH) from the conjugates, which was excited by 370 nm light and measured at 464 nm to determine target bacteria. Under optimal conditions, this biosensor enabled detection of Salmonella as low as 18.8 CFU/mL within 20 min, and showed potential for in-field pathogen screening.

摘要

准确筛查病原菌对预防食源性疾病很有效。在本研究中,新开发了一种手持式生物传感器,用于灵敏检测移液器吸头内的沙门氏菌,该传感器使用免疫镍网(INMs)进行细菌富集,并使用含硼酸的荧光缺陷金属有机框架(MOFs@B(OH))进行细菌标记。首先,将三个INMs分别组装在吸头内部的3D打印锥形分离器中。然后,将细菌样品和MOFs@B(OH)的混合物反复吸取和排出,使INMs上的抗体捕获流过的目标细菌,并使MOFs@B(OH)对其进行标记,以形成INM-细菌-MOFs@B(OH)缀合物。最后,吸取乙酸以使MOFs@B(OH)从缀合物上解离,其由370 nm光激发并在464 nm处测量以确定目标细菌。在最佳条件下,该生物传感器能够在20分钟内检测低至18.8 CFU/mL的沙门氏菌,并显示出用于现场病原体筛查的潜力。

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