Preparation, Identification and Preliminary Application of the Fenvalerate Monoclonal Antibody in Six Kinds of Dark Tea
Author:
Wei Kang1, Yang Qihui2, Wei Yang1ORCID, Wang Yuanfeng2ORCID, Xu Naifeng2ORCID, Wei Xinlin1
Affiliation:
1. Department of Food Science & Technology, School of Agriculture and Biology, Shanghai Jiao Tong University, Shanghai 200240, China 2. Institute of Food Engineering, College of Life Science, Shanghai Normal University, 100 Guilin Road, Shanghai 200234, China
Abstract
Fenvalerate has the advantages of a broad insecticidal spectrum, high efficiency, low toxicity and low cost, and it is widely used in agriculture, especially in tea, resulting in the accumulation of fenvalerate residues in tea and the environment, posing a serious threat to human health. Therefore, the timely monitoring of fenvalerate residue dynamics is vital for ensuring the health of humans and the ecological environment, and it is necessary for establishing a fast, reliable, accurate and on-site method for detecting fenvalerate residues. Based on the methods of immunology, biochemistry and molecular biology, mammalian spleen cells, myeloma cells and mice were used as experimental materials to establish a rapid detection method of an enzyme-linked immunosorbent assay to detect the residues of fenvalerate in dark tea. Three cell lines—1B6, 2A11 and 5G2—that can stably secrete fenvalerate antibodies were obtained by McAb technology, and their sensitivities (IC50) were 36.6 ng/mL, 24.3 ng/mL and 21.7 ng/mL, respectively. The cross-reaction rates of the pyrethroid structural analogs were all below 0.6%. Six dark teas were used to detect the practical application of fenvalerate monoclonal antibodies. The sensitivity IC50 of the anti-fenvalerate McAb in PBS with 30% methanol is 29.12 ng/mL. Furthermore, a latex microsphere immunochromatographic test strip with an LOD of 10.0 ng/mL and an LDR of 18.9–357 ng/mL was preliminarily developed. A specific and sensitive monoclonal antibody for fenvalerate was successfully prepared and applied to detect fenvalerate in dark teas (Pu‘er tea, Liupao tea, Fu Brick tea, Qingzhuan tea, Enshi dark tea and selenium-enriched Enshi dark tea). A latex microsphere immunochromatographic test strip was developed for the preparation of rapid detection test strips of fenvalerate.
Funder
Key Project of Science and Technology Commission National Key R&D Program of China
Subject
Plant Science,Health Professions (miscellaneous),Health (social science),Microbiology,Food Science
Reference46 articles.
1. Miao, S., Wei, Y., Chen, J., and Wei, X. (2022). Extraction Methods, Physiological Activities and High Value Applications of Tea Residue and Its Active Components: A Review. Crit. Rev. Food Sci. Nutr., 1–19. 2. Wei, Y., Xu, J., Miao, S., Wei, K., Peng, L., Wang, Y., and Wei, X. (2022). Recent Advances in the Utilization of Tea Active Ingredients to Regulate Sleep through Neuroendocrine Pathway, Immune System and Intestinal Microbiota. Crit. Rev. Food Sci. Nutr., 1–29. 3. Huang, Y., Wei, Y., Xu, J., and Wei, X. (2022). A Comprehensive Review on the Prevention and Regulation of Alzheimer’s Disease by Tea and Its Active Ingredients. Crit. Rev. Food Sci. Nutr., 1–25. 4. Liubao Brick Tea Activates the PI3K-Akt Signaling Pathway to Lower Blood Glucose, Metabolic Disorders and Insulin Resistance via Altering the Intestinal Flora;Zhu;Food Res. Int.,2021 5. A Data Fusion Approach on Confocal Raman Microspectroscopy and Electronic Nose for Quantitative Evaluation of Pesticide Residue in Tea;Sanaeifar;Biosyst. Eng.,2021
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