72
Views
1
CrossRef citations to date
0
Altmetric
Research Article

Cypermethrin, deltamethrin, and hexachlorobenzene contents in milk and dairy products in Tehran, Iran

& ORCID Icon

References

  • Mie, A., Andersen, H.R., Gunnarsson, S., Kahl, J., Kesse-Guyot, E., Rembialkowska, E., Quaglio, G. and Grandjean, P., 2017, Human health implications of organic food and organic agriculture: A comprehensive review. Environmental Health 16(1), 1–22. doi: 10.1186/s12940-017-0315-4.
  • Zikankuba, V.L., Mwanyika, G., Ntwenya, J.E., James, A. and Yildiz, F., 2019, Pesticide regulations and their malpractice implications on food and environment safety. Cogent Food & Agriculture 5(1), 1601544. doi: 10.1080/23311932.2019.1601544.
  • Ishaq, M., Sultana, N., Ikram, M., Iqbal, A., Shah, F., Hamayun, M. and Hussain, A., 2020, Occurrence of heavy metals and pesticide residues in tomato crop: A threat to public health. Arabian Journal of Geosciences 13, 1–11. doi: 10.1007/s12517-020-05578-2.
  • Dinham, B. and Malik, S., 2003, Pesticides and human rights. International Journal of Occupational and Environmental Health 9(1), 40–52. doi: 10.1179/oeh.2003.9.1.40.
  • Rani, L., Thapa, K., Kanojia, N., Sharma, N., Singh, S., Grewal, A.S., Srivastav, A.L. and Kaushal, J., 2021, An extensive review on the consequences of chemical pesticides on human health and environment. Journal of Cleaner Production 283, 124657. doi: 10.1016/j.jclepro.2020.124657.
  • Ravula, A.R. and Yenugu, S., 2021, Pyrethroid based pesticides–chemical and biological aspects. Critical Reviews in Toxicology 51(2), 117–140. doi: 10.1080/10408444.2021.1879007.
  • Whyte, S.K., Westcott, J.D., Jimenez, D., Revie, C.W. and Hammell, K.L., 2014, Assessment of sea lice (Lepeophtheirus salmonis) management in New Brunswick, Canada using deltamethrin (AlphaMax®) through clinical field treatment and laboratory bioassay responses. Aquaculture 422, 54–62. doi: 10.1016/j.aquaculture.2013.11.027.
  • Jayasinghe, J., Pathirana, S., Dilhani, D., Nawarathne, S., Sinhapura, M., Jayasinghe, C., Chandrajith, R. and Marapana, U., 2019, Pesticide residues in cow milk and dairy products from the major milk producing area of Sri Lanka. Agrofor International Journal 4(3), 83–90. doi: 10.7251/AGRENG1903083J.
  • Gill, J.P.S., Bedi, J.S., Singh, R., Fairoze, M.N., Hazarika, R.A., Gaurav, A., Satpathy, S.K., Chauhan, A.S., Lindahl, J., Grace, D., Kumar, A. and Kakkar, M., 2020, Pesticide residues in peri-urban bovine milk from India and risk assessment: A multicenter study. Scientific Reports 10(1), 1–11. doi: 10.1038/s41598-020-65030-z.
  • Tidiane Dione, C., Delhomme, O., Diagne, I., Diebakate, C., Ndiaye, B., Cisse, D., Hane, M., Dione, M.M., Diouf, S., Diop, A., Ndiaye, M. and Millet, M., 2022, Application of the QuEChERS method for the determination of pesticides, PAHs and PCBs in fish in Senegal. Journal of Environmental Science and Health, Part A 57(10), 869–879. doi: 10.1080/10934529.2022.2123188.
  • Hampton, J.O., Hyndman, T.H., Allen, B.L. and Fischer, B., 2021, Animal harms and food production: Informing ethical choices. Animals 11(5), 1225. doi: 10.3390/ani11051225.
  • Monica, K., 2022, Influence of dairy farming practices on milk production. A critical literature review. Animal Health Journal 3(1), 1–15. doi: 10.47941/ahj.771.
  • Rey-Cadilhac, L., Cariou, R., Ferlay, A., Jondreville, C., Delavaud, C., Faulconnier, Y., Alcouffe, S., Faure, P., Marchand, P., Le Bizec, B., Jurjanz, S. and Lerch, S., 2020, Undernutrition combined with dietary mineral oil hastens depuration of stored dioxin and polychlorinated biphenyls in ewes. 1. Kinetics in blood, adipose tissue and faeces. Plos One 15(3), e0230629. doi: 10.1371/journal.pone.0230629.
  • Schopf, M.F., Pierezan, M.D., Rocha, R., Pimentel, T.C., Esmerino, E.A., Marsico, E.T., De Dea Lindner, J., Cruz, A.G.D. and Verruck, S., 2022, Pesticide residues in milk and dairy products: An overview of processing degradation and trends in mitigating approaches. Critical Reviews in Food Science and Nutrition 1–15. doi: 10.1080/10408398.2022.2103642.
  • Poudel, S., Poudel, B., Acharya, B. and Poudel, P., 2020, Pesticide use and its impacts on human health and environment. Environment and Ecosystem Science 4(1), 47–51. doi: 10.26480/ees.01.2020.47.51.
  • Upadhayay, J., Rana, M., Juyal, V., Bisht, S.S. and Joshi, R., 2020, Impact of pesticide exposure and associated health effects. In: P.K. Srivastava, V.P. Singh, A. Singh, D.K. Tripathi, S. Singh, S.M. Prasad and D.K. Chauhan (Eds.) Pesticides in crop production: Physiological and biochemical action (Chennai: John Wiley), pp. 69–88. doi: 10.1002/9781119432241.ch5.
  • Marlatt, V.L., Bayen, S., Castaneda-Cortès, D., Delbès, G., Grigorova, P., Langlois, V.S., Martyniuk, C.J., Metcalfe, C.D., Parent, L., Rwigemera, A., Thomson, P. and Van Der Kraak, G., 2022, Impacts of endocrine disrupting chemicals on reproduction in wildlife and humans. Environmental Research 208, 112584. doi: 10.1016/j.envres.2021.112584.
  • Leoci, R. and Ruberti, M., 2020, Glyphosate in agriculture: Environmental persistence and effects on animals. A review. Journal of Agriculture and Environment for International Development 114(1), 99–122. doi: 10.12895/jaeid.20201.1167.
  • Feldsine, P., Abeyta, C. and Andrews, W.H., 2002, AOAC international methods committee guidelines for validation of qualitative and quantitative food microbiological official methods of analysis. Journal of AOAC International 85(5), 1187–1200. doi: 10.1093/jaoac/85.5.1187.
  • Bissacot, D.Z. and Vassilieff, I., 1997, HPLC determination of flumethrin, deltamethrin, cypermethrin, and cyhalothrin residues in the milk and blood of lactating dairy cows. Journal of Analytical Toxicology 21(5), 397–402. doi: 10.1093/jat/21.5.397.
  • Pavan, F.A., Dallago, R.M., Zanella, R. and Martins, A.F., 1999, Determination of deltamethrin in cattle dipping baths by high-performance liquid chromatography. Journal of Agriculture and Food Chemistry 47(1), 174–176. doi: 10.1021/jf980171b.
  • Morita, T. and Assumpcao, R.M.V., 1988, Manual de solucoes, reagents e solventes (Sao Paulo: Editora Blucher), pp. 29–94.
  • Yao, Z.W., Zhang, Y. and Jiang, G.B., 2005, Residues of organochlorine compounds in human breast milk collected from Beijing, people’s Republic of China. Bulletin of Environmental Contamination and Toxicology 74(1), 155–161. doi: 10.1007/s00128-004-0562-2.
  • Khan, F., Prakash, D. and Jain, R.K., 2011, Development of an HPLC method for determination of pentachloronitrobenzene, hexachlorobenzene and their possible metabolites. BMC Chemical Biology 23, 11–12. doi: 10.1186/1472-6769-11-2.
  • Camardo Leggieri, M., Decontardi, S., Bertuzzi, T., Pietri, A. and Battilani, P., 2016, Modeling growth and toxin production of toxigenic fungi signaled in cheese under different temperature and water activity regimes. Toxins 9(1), 4. doi: 10.3390/toxins9010004.
  • Hashami, Z., Chabook, N., Javanmardi, F., Mohammadi, R., Bashiry, M. and Mousavi Khaneghah, A., 2022, The concentration and prevalence of potentially toxic elements (PTEs) in cheese: A global systematic review and meta-analysis. International Journal of Environmental Health Research 1–20. doi: 10.1080/09603123.2022.2153810.
  • Sassine, A., Moura, S., Morais Léo, V. and Vega Bustillos, O., 2004, Cypermethrin residues determination in the milk of a lactating dairy cow by gas chromatography-ion trap mass spectrometry. Journal of Analytical Toxicology 28(4), 238–241. doi: 10.1093/jat/28.4.238.
  • Iftikhar, B., Siddiqui, S. and Rehman, S., 2014, Assessment of the dietary transfer of pesticides to dairy milk and its effect on human health. African Journal of Biotechnology 13(3), 476–485. doi: 10.5897/AJB2013.11997.
  • Muhammad, F., Javed, I., Akhtar, M., Awais, M.M., Saleemi, M.K. and Anwar, M.I., 2012, Quantitative structure activity relationship and risk analysis of some pesticides in the cattle milk. Pakistan Veterinary Journal 32(4), 589–592.
  • Rothwell, J.T., Burnett, T.J., Hacket, K., Chevis, R. and Lowe, L.B., 2001, Residues of zeta‐cypermethrin in bovine tissues and milk following pour‐on and spray application. Pest Management Science: Formerly Pesticide Science 57(11), 993–999. doi: 10.1002/ps.372.
  • Dadrass, S., Mirfakhraie, S., Aramideh, S. and Safaralizadeh, M.H., 2016, The toxicity of three current insecticides against third larval stage of alfalfa weevil, Hypera postica Gyllenhal (Col.: Curculionidae). Journal of Entomology and Zoology Studies 4(5), 611–614.
  • Shahzadi, N., Imran, M., Sarwar, M., Hashmi, A.S. and Wasim, M., 2013, Identification of pesticides residues in different samples of milk. Journal of Agroalimentary Processes and Technologies 19(2), 167–172.
  • MA, A.M., 2016, Persistence of deltamethrin and diazinon in environment of dairy farm. Benha Veterinary Medical Journal 30(1), 254–259. doi: 10.21608/bvmj.2016.31370.
  • Hernández Torres, M.E., Egea González, F.J., Castro Cano, M.L., Moreno Frías, M. and Martínez Vidal, J.L., 2002, Residues of methamidofos, malathion, and methiocarb in greenhouse crops. Journal of Agricultural and Food Chemistry 50(5), 1172–1177. doi: 10.1021/jf0108112.
  • EL-Gohary, F., Sayed-Ahmed, A. and El-Baz, A., 2018, Prevalence of organochlorine and organophosphorus pesticide residues in farm bulk cow milk and butter from Dakahlia Governorate, Egypt. Egyptian Journal of Food Safety 5(1), 54–65. doi: 10.21608/ejfsj.2018.156872.
  • Vakili Saatloo, N., Mehdizadeh, T., Aliakbarlu, J. and Tahmasebi, R., 2021, Determination of organochlorine pesticide residues in the raw milk taken from milk collection centers in Urmia in 2020. Iranian Journal of Health and Environment 14(2), 215–224.
  • Pardío Sedas, V.T., López Hernández, K.M., Flores Primo, A. and Uscanga Serrano, R., 2021, Effect of pasteurization on the concentration of dichlorodiphenyltrichloroethane (DDT) and hexachlorocyclohexane (HCH) in bovine milk. Revista Mexicana de Ciencias Pecuarias 12(2), 318–336. doi: 10.22319/rmcp.v12i2.5483.
  • Mazrou, K., Labdelli, F., Bousmaha, F., Chelef, M. and Adamou-Djerbaouli, M., 2021, The efficacy of three different plant extracts on some biological features of the potato tuber moth, Phthorimaea operculella (Zeller) (Lepidoptera: Gelechiidae) by different application methods. International Journal of Environmental Studies 78(6), 1058–1069. doi: 10.1080/00207233.2021.1902248.
  • Chelef, M., Hemida, H., Hassani, A. and Mazrou, K., 2021, Efficacy of three vegetal powders against Sitophilus granarius in stored wheat and the evaluation of their effect on grain parameters. International Journal of Environmental Studies 78(4), 679–695. doi: 10.1080/00207233.2020.1845556.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.