Rapid and Sensitive On-Site Detection of Fipronil in Foods Using Evanescent Wave Fluorescent Immunosensor

Author:

Li Yujing1,Xu Wenjuan2,Liu Jingjing3ORCID,Zhang Erjing4,Li Hejie5,Zhang Yan4,Zhang Jing3,Li Chunsheng3,Zhang Xiaoguang67

Affiliation:

1. Discipline Inspection and Supervision Division, Hebei Jiaotong Vocational and Technical College, Shijiazhuang 050035, China

2. School of Environment & Natural Resource, Renmin University of China, Beijing 100872, China

3. Biology Institute, Hebei Academy of Sciences, Shijiazhuang 050052, China

4. College of Life Sciences, Hebei Normal University, Shijiazhuang 050010, China

5. College of Food Science and Biology, Hebei University of Science and Technology, Shijiazhuang 050091, China

6. Core Facilities and Centers, Hebei Medical University, Shijiazhuang 050017, China

7. Hebei Xiangzhi Testing Technology Co., Ltd., Shijiazhuang 050035, China

Abstract

Fipronil (FIP), a broad-spectrum phenylpyrazole insecticide, is highly toxic and threatens human health and ecological balance. Developing convenient, rapid, portable analytical technology for on-site and high-frequency testing of FIP is essential to reduce its damage. Herein, a monoclonal antibody (Clone F-3F6) against FIP, with high affinity and specificity, was produced using a novel immunogen, FIP-BSA, which was simply and directly synthesized by conjugating FIP with bovine serum albumin (BSA). Among the previously reported antibodies, F-3F6 acts more specifically against FIP. The FIP metabolites fipronil desulfinyl, fipronil sulfide, and fipronil sulfone showed lower cross-reactivity, and other pesticides were not recognized. To achieve high-frequency and on-site measurements of FIP, an evanescent wave fluorescence biosensor was built by integrating evanescent wave fluorescence technology, a functionalized fiber bioprobe, and a fluorescence-labeled F-3F6 antibody. The detection limit of FIP was 0.032 μg/L. The detection results of real milk and water samples showed that all the coefficients of variation were less than 10%, and the recovery ranged from 90 to 120%. The high reusability and stability of functionalized fiber bioprobe enables the accurate, cost-effective, high-frequency, and facile quantitative detection of FIP. This highly specific and reliable evanescent wave fluorescence biosensor will be well suited to the sensitive and high-frequency on-site analysis of only FIP in food.

Funder

Hebei Academy of Sciences

Shijiazhuang Bureau of Science and Technology

Publisher

MDPI AG

Subject

Physical and Theoretical Chemistry,Analytical Chemistry

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