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一种基于氮、磷共掺杂碳点修饰的铁基金属有机框架的用于可视化检测金霉素的集成智能手机分子印迹荧光传感器。

A Smartphone-Integrated Molecularly Imprinted Fluorescence Sensor for Visual Detection of Chlortetracycline Based on N,P-Codoped Carbon Dots Decorated Iron-Based Metal-Organic Frameworks.

作者信息

Zhang Jinni, Liu Yan, Cui Xueyan, Cao Yichuan, Li Yan, Fang Guozhen, Wang Shuo

机构信息

State Key Laboratory of Food Nutrition and Safety, Tianjin University of Science and Technology, Tianjin 300457, China.

Tianjin Key Laboratory of Food Science and Health, School of Medicine, Nankai University, Tianjin, 300071, China.

出版信息

J Agric Food Chem. 2023 Nov 1;71(43):16303-16309. doi: 10.1021/acs.jafc.3c05406. Epub 2023 Oct 19.

Abstract

The residue of chlortetracycline is potentially hazardous to human health; it is meaningful to exploit a portable, rapid, sensitive, and selective method for detection of chlortetracycline (CTC). In this study, a novel fluorescence bionic sensing probe (NH-MIL-53&N,P-CDs@MIP) was successfully prepared based on the nitrogen and phosphorus codoped carbon dots decorated iron-based metal-organic frameworks combining with molecular imprinted polymer for the detection of CTC. A fluorescence intensity-responsive "on-off" detection of CTC on account of the inner-filter effect (IFE) was achieved by NH-MIL-53&N,P-CDs@MIP. Under the optimal conditions, the fluorescence quenching degree of NH-MIL-53&N,P-CDs@MIP presented a good linear relationship with the CTC concentration in the range 0.06-30 μg mL and the limit of detection (LOD) was 0.019 μg mL. The fluorescent probe was applied to detect CTC in milk samples, and experimental results showed a good recovery rate (88.73%-96.28%). Additionally, a smartphone-integrated fluorescence sensing device based on NH-MIL-53&N,P-CDs@MIP was exploited to replace the expensive and bulky fluorescence spectrophotometer for quantitative determination of CTC with the LOD of 0.033 μg mL. The sensing system showed high selectivity, strong stability, high specificity, and portability, which provide a great strategy for the quantitative detection of antibiotic residue.

摘要

金霉素残留对人体健康具有潜在危害;开发一种便携式、快速、灵敏且具有选择性的金霉素(CTC)检测方法具有重要意义。在本研究中,基于氮磷共掺杂碳点修饰的铁基金属有机框架与分子印迹聚合物相结合,成功制备了一种新型荧光仿生传感探针(NH-MIL-53&N,P-CDs@MIP)用于检测CTC。通过NH-MIL-53&N,P-CDs@MIP基于内滤光效应(IFE)实现了对CTC的荧光强度响应“开-关”检测。在最佳条件下,NH-MIL-53&N,P-CDs@MIP的荧光猝灭程度与0.06 - 30 μg mL范围内的CTC浓度呈现良好的线性关系,检测限(LOD)为0.019 μg mL。该荧光探针应用于牛奶样品中CTC的检测,实验结果显示回收率良好(88.73% - 96.28%)。此外,还开发了一种基于NH-MIL-53&N,P-CDs@MIP的集成智能手机荧光传感装置,以取代昂贵且笨重的荧光分光光度计用于定量测定CTC,其LOD为0.033 μg mL。该传感系统具有高选择性、强稳定性、高特异性和便携性,为抗生素残留的定量检测提供了一种很好的策略。

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