Dual‐Track Multifunctional Bimetallic Metal‐Organic Frameworks for Antibiotic Enrichment and Detection

Author:

Dong Yiming12,Feng Niu12,Liu Puyue12,Wei Qiaoling2,Peng Xuewen12,Jiang Feng3,Chen Yiping12ORCID

Affiliation:

1. Academy of Food Interdisciplinary Science School of Food Science and Technology Dalian Polytechnic University Dalian Liaoning 116034 China

2. College of Food Science and Technology Huazhong Agricultural University Wuhan Hubei 430070 China

3. Key Laboratory of Detection Technology of Focus Chemical Hazards in Animal‐derived Food for State Market Regulation Wuhan Hubei 430075 China

Abstract

AbstractThe improper use and overuse of antibiotics have led to significant burdens and detrimental effects on the environment, food supply, and human health. Herein, a magnetic solid‐phase extraction program and an optical immunosensor based on bimetallic Ce/Zr‐UiO 66 for the detection of antibiotics are developed. A magnetic Fe3O4@SiO2@Ce/Zr‐UiO 66 metal‐organic framework (MOF) is prepared to extract and enrich chloramphenicol from fish, wastewater, and urine samples, and a horseradish peroxidase (HRP)‐Ce/Zr‐UiO 66@bovine serum protein‐chloramphenicol probe is used for the sensitive detection of chloramphenicol based on the dual‐effect catalysis of Ce and HRP. In this manner, the application of Ce/Zr‐UiO 66 in integrating sample pretreatment and antibiotic detection is systematically investigated and the associated mechanisms are explored. It is concluded that Ce/Zr‐UiO 66 is a versatile dual‐track material exhibiting high enrichment efficiency (6.37 mg g−1) and high sensitivity (limit of detection of 51.3 pg mL−1) for chloramphenicol detection and serving as a multifunctional MOF for safeguarding public health and hygiene.

Funder

National Natural Science Foundation of China

Publisher

Wiley

Reference72 articles.

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