Title: The effect of endocrine disruptors on endometrial cells: A Systematic Review

Authors: Muna Omer Alamoudi, Nada Ibrahim Alaqah, Ebtisam Ahmad Alrshedy, Latifa Ghazi Alshaya

 DOI: https://dx.doi.org/10.18535/jmscr/v9i2.29

Abstract

Endocrine disruptor plays a role as natural hormones in the body like estrogens or androgens, or thyroid hormones. It may act as the interaction of natural hormones with their receptor, or bind to a receptor and prevent the endogenous hormone from binding with their receptors. Endometrial tissue finds in uterus has gland, cells, and connective tissue. This tissue prepares the uterus for ovulation. The objectives of this review were to identify the effect of endocrine disruptors on endometrial cells. Electronic searches of literature were performed. From 38 titles, Full-text versions of the 15 identified titles were obtained and evaluated independently by two reviewers 8 of the full-text articles were excluded based on the established criteria. This process identified 7 articles for inclusion and data extraction. According the existing literatures, this study concluded that endocrine disruptors can affect on endometrial cells by regulate the expression of decidualization genes. But it can also cause endometrial dysfunction, disrupt vascular development and play important roles in tumorigenesis. The existing literatures reporting on this are small in volume and can be considered of generally low quality.

Keyword: Endocrine, Disruptors, Endometrial Cells, Endometrial Decidualization, Bisphenol A.

References

  1. Aldad, T. S., Rahmani, N., Leranth, C., & Taylor, H. S. (2011). Bisphenol-A exposure alters endometrial progesterone receptor expression in the nonhuman primate. Fertility and Sterility, 96(1), 175–179. https://doi.org/10.1016/j.fertnstert.2011.04.010
  2. Chou, W. C., Lee, P. H., Tan, Y. Y., Lin, H. C., Yang, C. W., Chen, K. H., & Chuang, C. Y. (2017). An integrative transcriptomic analysis reveals bisphenol A exposure-induced dysregulation of micro RNA expression in human endometrial cells. Toxicology in Vitro, 41, 133–142. https://doi.org/10.1016/j.tiv.2017.02.012
  3. Chrousos, G. P. (2007). Organization and Integration of the Endocrine System: The Arousal and Sleep Perspective. In Sleep Medicine Clinics (Vol. 2, Issue 2, pp. 125–145). https://doi.org/10.1016/j.jsmc.2007.04.004
  4. Clark, T. J., Mann, C. H., Shah, N., Khan, K. S., Song, F., & Gupta, J. K. (2002). Accuracy of outpatient endometrial biopsy in the diagnosis of endometrial cancer: a systematic quantitative review. www.bjog-elsevier.com
  5. Colborn, T., vom Saal, F. S., & Soto, A. M. (1994). Developmental Effects of Endocrine-Disrupting Chemicals in Wildlife and Humans. In Environmental Health Perspectives (Vol. 14, Issue 5).
  6. Demeneix, B., National dHistoire Naturelle, M., Slama, R., Investigator, S., National Institute of Health, I., Research, M., Research Center, I., & of Environmental Epidemiology, T. (2019). Endocrine Disruptors: from Scientific Evidence to Human Health Protection Policy Department for Citizens’ Rights and Constitutional Affairs.
  7. Gellersen, B., &Brosens, J. J. (2014). Cyclic decidualization of the human endometrium in reproductive health and failure. In Endocrine Reviews (Vol. 35, Issue 6, pp. 851–905). Endocrine Society. https://doi.org/10.1210/er.2014-1045
  8. Gomez-Fernandez, C. R., Ganjei-Azar, P., Averette, H. E., & Nadji, M. (2000). Normal Endometrial Cells in Papanicolaou Smears: Prevalence in Women With and Without Endometrial Disease.
  9. Helmestam, M., Davey, E., Stavreus-Evers, A., &Olovsson, M. (2014). Bisphenol A affects human endometrial endothelial cell angiogenic activity in vitro. Reproductive Toxicology, 46, 69–76. https://doi.org/10.1016/j.reprotox.2014.03.002
  10. Hiller-Sturmhöfel, S., &Bartke, A. (1998). The Endocrine System An Overview.
  11. la Rocca, C., Tait, S., Guerranti, C., Busani, L., Ciardo, F., Bergamasco, B., Perra, G., Mancini, F. R., Marci, R., Bordi, G., Caserta, D., Focardi, S., Moscarini, M., &Mantovani, A. (2015). Exposure to endocrine disruptors and nuclear receptors gene expression in infertile and fertile men from Italian areas with different environmental features. International Journal of Environmental Research and Public Health, 12(10), 12426–12445. https://doi.org/10.3390/ijerph121012426
  12. Mallozzi, M., Leone, C., Manurita, F., Bellati, F., & Caserta, D. (2017). Endocrine disrupting chemicals and endometrial cancer: An overview of recent laboratory evidence and epidemiological studies. In International Journal of Environmental Research and Public Health (Vol. 14, Issue 3). MDPI AG. https://doi.org/10.3390/ijerph14030334
  13. Mannelli, C., Szóstek, A. Z., Lukasik, K., Carotenuto, C., Ietta, F., Romagnoli, R., Ferretti, C., Paulesu, L., Wołczynski, S., Jan Skarzynski, D., & Author, C. (2015). Bisphenol-A modulates receptivity and secretory function of human decidual cells: an in vitro study. http://www.pan.olsztyn.pl/en/drip
  14. Markey, C. M., Rubin, B. S., Soto, A. M., &Sonnenschein, C. (2002). Endocrine disruptors: From Wingspread to environmental developmental biology. Journal of Steroid Biochemistry and Molecular Biology, 83(1–5), 235–244. https://doi.org/10.1016/S0960-0760(02)00272-8
  15. Monneret, C. (2017). What is an endocrine disruptor? In Comptes Rendus - Biologies (Vol. 340, Issues 9–10, pp. 403–405). Elsevier Masson SAS. https://doi.org/10.1016/j.crvi.2017.07.004
  16. Reed, B. G., Babayev, S. N., Chen, L. X., Carr, B. R., Word, R. A., & Jimenez, P. T. (2018). Estrogen-Regulated miRNA-27b Is Altered By Bisphenol A In Endometrial Stromal Cells.
  17. Tyler, C. R., Jobling, S., Sumpter, J. P., & Tyler, C. (1998). Endocrine Disruption in Wildlife: A Critical Review of the Evidence. In Critical Reviews in Toxicology (Vol. 28, Issue 4).
  18. WHO | World Health Organization. (2002). Retrieved January 9, 2021, from https://www.who.int/ipcs/publications/new_issues/endocrine_disruptors/en/
  19. Xiong, Y., Wen, X., Liu, H., Zhang, M., & Zhang, Y. (2020). Bisphenol a affects endometrial stromal cells decidualization, involvement of epigenetic regulation. Journal of Steroid Biochemistry and Molecular Biology, 200. https://doi.org/10.1016/j.jsbmb.2020.105640
  20. Yao, S., Wei, W., Cao, R., Lu, L., Liang, S., Xiong, M., Zhang, C., Liang, X., & Ma, Y. (2021). Resveratrol alleviates zea-induced decidualization disturbance in human endometrial stromal cells. Ecotoxicology and Environmental Safety, 207. https://doi.org/10.1016/j.ecoenv.2020.111511

Corresponding Author

Muna Omer Alamoudi

Biology Department, Faculty of Science, University of Hail PO Box 2240, Hai'l 81451, Saudi Arabia