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Journal of Environmental Science and Health, Part B
Pesticides, Food Contaminants, and Agricultural Wastes
Volume 58, 2023 - Issue 1
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Research Article

Endosulfan use and the risk of thyroid cancer: an ecological study

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References

  • Fiore, M. O.; Conti, G.; Caltabiano, R.; et al. Role of Emerging Environmental Risk Factors in Thyroid Cancer: A Brief Review. Int. J. Environ. Res. Public Health 2019, 16, 1185. DOI: 10.3390/ijerph16071185.
  • van Gerwen, M.; Gold, B.; Alsen, M.; Khan, M. N.; Petrick, L.; Genden, E. High Thyroid Cancer Incidence Rate in a Community near a Landfill: A Descriptive Epidemiological Assessment. Toxics 2021, 9, 325. DOI: 10.3390/toxics9120325.
  • Kitahara, C. M.; Sosa, J. A. The Changing Incidence of Thyroid Cancer. Nat. Rev. Endocrinol. 2016, 12, 646–653. DOI: 10.1038/nrendo.2016.110.
  • Lim, H.; Devesa, S. S.; Sosa, J. A.; Check, D.; Kitahara, C. M. Trends in Thyroid Cancer Incidence and Mortality in the United States, 1974–2013. JAMA 2017, 317, 1338–1348. DOI: 10.1001/jama.2017.2719.
  • Alsen, M.; Sinclair, C.; Cooke, P.; Ziadkhanpour, K.; Genden, E.; van Gerwen, M. Endocrine Disrupting Chemicals and Thyroid Cancer: An Overview. Toxics 2021, 9, 14. DOI: 10.3390/toxics9010014.
  • Deziel, N. C.; Warren, J. L.; Huang, H.; Zhou, H.; Sjodin, A.; Zhang, Y. Exposure to Polychlorinated Biphenyls and Organochlorine Pesticides and Thyroid Cancer in Connecticut Women. Environ. Res. 2021, 192, 110333. DOI: 10.1016/j.envres.2020.110333.
  • Clark, H. A.; Snedeker, S. M. Critical Evaluation of the Cancer Risk of Dibromochloropropane (DBCP). J. Environ. Sci. Health. C Environ. Carcinog. Ecotoxicol. Rev. 2005, 23, 215–260. DOI: 10.1080/10590500500234996.
  • Zahm, S. H.; Ward, M. H. Pesticides and Childhood Cancer. Environ. Health Perspect. 1998, 106 Suppl 3, 893–908. DOI: 10.1289/ehp.98106893.
  • Dharmani, C.; Jaga, K. Epidemiology of Acute Organophosphate Poisoning in Hospital Emergency Room Patients. Rev. Environ. Health 2005, 20, 215–232. DOI: 10.1515/reveh.2005.20.3.215.
  • Freire, C.; Koifman, R. J.; Sarcinelli, P. N.; Simões Rosa, A. C.; Clapauch, R.; Koifman, S. Long-Term Exposure to Organochlorine Pesticides and Thyroid Status in Adults in a Heavily Contaminated Area in Brazil. Environ. Res. 2013, 127, 7–15. DOI: 10.1016/j.envres.2013.09.001.
  • Han, M. A.; Kim, J. H.; Song, H. S. Persistent Organic Pollutants, Pesticides, and the Risk of Thyroid Cancer: Systematic Review and Meta-Analysis. Eur. J. Cancer Prev. 2019, 28, 344–349. DOI: 10.1097/CEJ.0000000000000481.
  • CDC. Endosulfan|Public Health Statement|ATSDR. https://wwwn.cdc.gov/TSP/PHS/PHS.aspx?phsid=607&toxid=113 (accessed June 18, 2022).
  • Attaullah, M.; Yousuf, M. J.; Shaukat, S.; et al. Serum Organochlorine Pesticides Residues and Risk of Cancer: A Case-Control Study. Saudi J. Biol. Sci. 2018, 25, 1284–1290. DOI: 10.1016/j.sjbs.2017.10.023.
  • Freire, C.; Lopez-Espinosa, M. J.; Fernández, M.; Molina-Molina, J. M.; Prada, R.; Olea, N. Prenatal Exposure to Organochlorine Pesticides and TSH Status in Newborns from Southern Spain. Sci. Total Environ. 2011, 409, 3281–3287. DOI: 10.1016/j.scitotenv.2011.05.037.
  • Caride, A.; Lafuente, A.; Cabaleiro, T. Endosulfan Effects on Pituitary Hormone and Both Nitrosative and Oxidative Stress in Pubertal Male Rats. Toxicol. Lett. 2010, 197, 106–112. DOI: 10.1016/j.toxlet.2010.05.006.
  • Coskun, R.; Gundogan, K.; Tanriverdi, F.; Guven, M.; Sungur, M. Effects of Endosulfan Intoxication on Pituitary Functions. Clin. Toxicol. 2012, 50, 441–443. DOI: 10.3109/15563650.2012.676647.
  • CDC. USCS Data Visualizations. https://gis.cdc.gov/grasp/USCS/DataViz.html (accessed June 18, 2022).
  • Thelin, G. Scientific Investigations Report; 2013.
  • GIS Mapping Software, Location Intelligence & Spatial Analytics|Esri. https://www.esri.com/en-us/home (accessed July 8, 2022).
  • Alonso-Trujillo, M.; Muñiz-González, A. B.; Martínez-Guitarte, J. L. Endosulfan Exposure Alters Transcription of Genes Involved in the Detoxification and Stress Responses in Physella acuta. Sci. Rep. 2020, 10, 7847. DOI: 10.1038/s41598-020-64554-8.
  • Convention S. Technical Endosulfan. http://chm.pops.int/Implementation/Alternatives/AlternativestoPOPs/ChemicalslistedinAnnexA/TechnicalEndosulfan/tabid/5867/Default.aspx (accessed June 18, 2022).
  • Vegetables|Agricultural Marketing Resource Center. https://www.agmrc.org/commodities-products/vegetables (accessed December 15, 2022).
  • Randhawa, M. A.; Anjum, F. M.; Asi, M. R.; Ahmed, A.; Nawaz, H. Field Incurred Endosulfan Residues in Fresh and Processed Vegetables and Dietary Intake Assessment. Int. J. Food Prop. 2014, 17, 1109–1115. DOI: 10.1080/10942912.2012.694091.
  • Sathishkumar, P.; Mohan, K.; Ganesan, A. R.; Govarthanan, M.; Yusoff, A. R. M.; Gu, F. L. Persistence, Toxicological Effect and Ecological Issues of Endosulfan – A Review. J. Hazard. Mater. 2021, 416, 125779. DOI: 10.1016/j.jhazmat.2021.125779.
  • Das, K.; Bariki, R.; Majhi, D.; et al. Facile Synthesis and Application of CdS/Bi20TiO32/Bi4Ti3O12 Ternary Heterostructure: A Synergistic Multi-Heterojunction Photocatalyst for Enhanced Endosulfan Degradation and Hydrogen Evolution Reaction. Appl. Catal. B 2022, 303, 120902. DOI: 10.1016/j.apcatb.2021.120902.
  • Li, Y.; Xu, X.; Qiang, B.; Li, Y.; Lu, Y.; Li, C. Turn Hazardous Endosulfan into S-Doped Alkynyl Carbon Material for Energy Storage and Hg(II) Adsorption via a Green Mechanochemical Process. ACS Sustain. Chem. Eng. 2022, 10, 9216–9224. DOI: 10.1021/acssuschemeng.2c02414.
  • Cavalier, H.; Trasande, L.; Porta, M. Exposures to Pesticides and Risk of Cancer: Evaluation of Recent Epidemiological Evidence in Humans and Paths Forward. Int. J. Cancer 2023;152(5):879-912. DOI: 10.1002/ijc.34300.
  • IARC Working Group on the Evaluation of Carcinogenic Risks to Humans. Some Organophosphate Insecticides and Herbicides; International Agency for Research on Cancer: Lyon; 2017.
  • Pardo, L. A.; Beane Freeman, L. E.; Lerro, C. C.; Andreotti, G.; Hofmann, J. N.; Parks, C. G.; Sandler, D. P.; Lubin, J. H.; Blair, A.; Koutros, S.; et al. Pesticide Exposure and Risk of Aggressive Prostate Cancer among Private Pesticide Applicators. Environ. Health 2020, 19, 30. DOI: 10.1186/s12940-020-00583-0.
  • Xu, D.; Li, S.; Lin, L.; Qi, F.; Hang, X.; Sun, Y. Gene Expression Profiling to Identify the Toxicities and Potentially Relevant Disease Outcomes Due to Endosulfan Exposure. Toxicol. Res. 2016, 5, 621–632. DOI: 10.1039/c5tx00332f.
  • Wang, Y.; Guo, Y.; Hu, Y.; Sun, Y.; Xu, D. Endosulfan Triggers Epithelial-Mesenchymal Transition via PTP4A3-Mediated TGF-β Signaling Pathway in Prostate Cancer Cells. Sci. Total Environ. 2020, 731, 139234. DOI: 10.1016/j.scitotenv.2020.139234.
  • Wang, Y.; Guo, Y.; Lu, Y.; Sun, Y.; Xu, D. The Effects of Endosulfan on Cell Migration and Invasion in Prostate Cancer Cells via the KCNQ1OT1/miR-137-3p/PTP4A3 Axis. Sci. Total Environ. 2022, 845, 157252. DOI: 10.1016/j.scitotenv.2022.157252.
  • Kumar, V.; Yadav, C. S.; Banerjee, B. D. Xeno-Estrogenic Pesticides and the Risk of Related Human Cancers. J. Xenobiot. 2022, 12, 344–355. DOI: 10.3390/jox12040024.
  • Sinha, N.; Lal, B.; Singh, T. P. Effect of Endosulfan on Thyroid Physiology in the Freshwater Catfish, Clarias batrachus. Toxicology 1991, 67, 187–197. DOI: 10.1016/0300-483x(91)90142-n.
  • Wade, M. G.; Parent, S.; Finnson, K. W.; Foster, W.; Younglai, E.; McMahon, A.; Cyr, D. G.; Hughes, C. Thyroid Toxicity Due to Subchronic Exposure to a Complex Mixture of 16 Organochlorines, Lead, and Cadmium. Toxicol. Sci. 2002, 67, 207–218. DOI: 10.1093/toxsci/67.2.207.
  • Londoño, Á. L.; Restrepo, B.; Sánchez, J. F.; García-Ríos, A.; Bayona, A.; Landázuri, P. [Pesticides and Hypothyroidism in Farmers of Plantain and Coffee Growing Areas in Quindio, Colombia]. Rev. Salud Publica 2018, 20, 215–220. DOI: 10.15446/rsap.V20n2.57694.
  • Seo, S. H.; Choi, S. D.; Batterman, S.; Chang, Y. S. Health Risk Assessment of Exposure to Organochlorine Pesticides in the General Population in Seoul, Korea over 12 Years: A Cross-Sectional Epidemiological Study. J. Hazard. Mater. 2022, 424, 127381. DOI: 10.1016/j.jhazmat.2021.127381.

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