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Journal of Environmental Science and Health, Part B
Pesticides, Food Contaminants, and Agricultural Wastes
Volume 57, 2022 - Issue 1
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Research Article

Development of a sensitive chicken IgY-based enzyme-linked immunosorbent assay for detection of mebendazole in pork and mutton

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References

  • Speare, R.; Skerratt, L. F.; Berger, L.; Johnson, P. M. Toxic Effects of Mebendazole at High Dose on the Haematology of Red-Legged Pademelons (Thylogale Stigmatica). Aust. Vet. J. 2004, 82, 300–303.
  • Sasagawa, S.; Nishimura, Y.; Kon, T.; Yamanaka, Y.; Murakami, S.; Ashikawa, Y.; Yuge, M.; Okabe, S.; Kawaguchi, K.; Kawase, R.; Tanaka, T. DNA Damage Response is Involved in the Developmental Toxicity of Mebendazole in Zebrafish Retina. Front. Pharmacol. 2016, 7, 57.
  • Liu, C.; Yin, J.; Yao, J.; Xu, Z.; Tao, Y.; Zhang, H. Pharmacophore-Based Virtual Screening toward the Discovery of Novel anti-Echinococcal Compounds. Front. Cell. Infect. Microbiol. 2020, 10, 118.
  • Moser, W.; Schindler, C.; Keiser, J. Drug Combinations against Soil-Transmitted Helminth Infections. Adv. Parasitol. 2019, 103, 91–115.
  • He, J.; Zheng, Y.; Chen, X.; Li, N.; Tang, F.; Huo, N.; Wang, J.; Gu, S. Development of an Enzyme-Linked Immunosorbent Assay for the Detection of Mebendazole in Chicken and Mutton. Anal. Methods. 2021, 13, 1740–1746. DOI: https://doi.org/10.1039/D1AY00133G.
  • Lee, J. S.; Cho, S. H.; Lim, C. M.; Chang, M. I.; Joo, H. J.; Bae, H.; Park, H. J. A Liquid Chromatography - Tandem Mass Spectrometry Approach for the Identification of Mebendazole Residue in Pork, Chicken, and Horse. PLoS One. 2017, 12, e0169597.
  • Naguib, I. A.; Hassan, E. S.; Emam, A. A.; Abdelaleem, E. A. Development and Validation of HPTLC and Green HPLC Methods for Determination of a New Combination of Quinfamide and Mebendazole. J. Chromatogr. Sci. 2019, 58, 16–21.
  • Wang, Z.; Liang, X.; Wen, K.; Zhang, S.; Li, C.; Shen, J. A Highly Sensitive and Class-Specific Fluorescence Polarisation Assay for Sulphonamides Based on Dihydropteroate Synthase. Biosens. Bioelectron. 2015, 70, 1–4.
  • Thirumalai, D.; Visaga Ambi, S.; Vieira-Pires, R. S.; Xiaoying, Z.; Sekaran, S.; Krishnan, U. Chicken Egg Yolk Antibody (IgY) as Diagnostics and Therapeutics in Parasitic Infections-a Review. Int. J. Biol. Macromol. 2019, 136, 755–763.
  • Liou, J.-F.; Chang, C.-W.; Tailiu, J-j.; Yu, C.-K.; Lei, H.-Y.; Chen, L.-R.; Tai, C. Passive Protection Effect of Chicken Egg Yolk Immunoglobulins on Enterovirus 71 Infected Mice. Vaccine 2010, 28, 8189–8196.
  • Liang, X.; Li, C.; Zhu, J.; Song, X.; Yu, W.; Zhang, J.; Zhang, S.; Shen, J.; Wang, Z. Dihydropteroate Synthase-Based Sensor for Screening Multi-Sulfonamides Residue and Its Comparison with Broad-Specific Antibody-Based Immunoassay by Molecular Modeling Analysis. Anal. Chim. Acta. 2019, 1050, 139–145.
  • He, J.; Wang, Y.; Zhang, X. Preparation of Artificial Antigen and Development of IgY-Based Indirect Competitive ELISA for the Detection of Kanamycin Residues. Food Anal. Methods 2016, 9, 744–751. DOI: https://doi.org/10.1007/s12161-015-0248-x.
  • Polson, A.; von Wechmar, M. B.; van Regenmortel, M. H. Isolation of Viral IgY Antibodies from Yolks of Immunized Hens. Immunol. Commun. 1980, 9, 475–493.
  • Chen, J. M.; Wang, Z. Z.; Wu, C. B.; Li, S.; Lu, T. B. Crystal Engineering Approach to Improve the Solubility of Mebendazole. Cryst. Eng. Comm. 2012, 14, 6221–6229. DOI: https://doi.org/10.1039/c2ce25724f.
  • Guo, L.; Wu, X.; Liu, L.; Kuang, H.; Xu, C. Gold Nanoparticle-Based Paper Sensor for Simultaneous Detection of 11 Benzimidazoles by One Monoclonal Antibody. Small. 2018, 14, 1701782. DOI: https://doi.org/10.1002/smll.201701782.
  • He, J.; Hu, J.; Thirumalai, D.; Schade, R.; Du, E.; Zhang, X. Development of Indirect Competitive ELISA Using Egg Yolk-Derived Immunoglobulin (IgY) for the Detection of Gentamycin Residues. J. Environ Sci. Heal. B. 2016, 51, 8–13. DOI: https://doi.org/10.1080/03601234.2015.1080479.
  • He, J.; Wang, Y.; Zhang, X. Preparation of Artificial Antigen and Development of Indirect Competitive ELISA Based on Chicken IgY for the Detection of Acid Orange II in Food Samples. Food Anal. Methods. 2016, 9, 378–384. DOI: https://doi.org/10.1007/s12161-015-0203-x.
  • Turnipseed, S. B.; Storey, J. M.; Wu, I. L.; Gieseker, C. M.; Hasbrouck, N. R.; Crosby, T. C.; Andersen, W. C.; Lanier, S.; Casey, C. R.; Burger, R.; Madson, M. R. Application and Evaluation of a High-Resolution Mass Spectrometry Screening Method for Veterinary Drug Residues in Incurred Fish and Imported Aquaculture Samples. Anal. Bioanal. Chem. 2018, 410, 5529–5544.

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