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The Effect of Endocrine-disrupting Chemicals on Placental Development

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Specialty Endocrinology
Date 2023 Mar 10
PMID 36896182
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Abstract

Endocrine-disrupting chemicals (EDCs) or endocrine disruptors are substances that are either naturally occurring or artificial and are released into the natural environment. Humans are exposed to EDCs through ingestion, inhalation, and skin contact. Many everyday household items, such as plastic bottles and containers, the liners of metal food cans, detergents, flame retardants, food, gadgets, cosmetics, and pesticides, contain endocrine disruptors. Each hormone has a unique chemical makeup and structural attributes. The way that endocrine hormones connect to receptors is described as a "lock and key" mechanism, with each hormone serving as the key (lock). This mechanism is enabled by the complementary shape of receptors to their hormone, which allows the hormone to activate the receptors. EDCs are described as exogenous chemicals or compounds that have a negative impact on organisms' health by interacting with the functioning of the endocrine system. EDCs are associated with cancer, cardiovascular risk, behavioural disorders, autoimmune abnormalities, and reproductive disorders. EDCs exposure in humans is highly harmful during critical life stages. Nonetheless, the effect of EDCs on the placenta is often underestimated. The placenta is especially sensitive to EDCs due to its abundance of hormone receptors. In this review, we evaluated the most recent data on the effects of EDCs on placental development and function, including heavy metals, plasticizers, pesticides, flame retardants, UV filters and preservatives. The EDCs under evaluation have evidence from human biomonitoring and are found in nature. Additionally, this study indicates important knowledge gaps that will direct future research on the topic.

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References
1.
Wang J, Pan L, Wu S, Lu L, Xu Y, Zhu Y . Recent Advances on Endocrine Disrupting Effects of UV Filters. Int J Environ Res Public Health. 2016; 13(8). PMC: 4997468. DOI: 10.3390/ijerph13080782. View

2.
Ndaw S, Remy A, Jargot D, Robert A . Occupational exposure of cashiers to Bisphenol A via thermal paper: urinary biomonitoring study. Int Arch Occup Environ Health. 2016; 89(6):935-46. PMC: 4927604. DOI: 10.1007/s00420-016-1132-8. View

3.
Forte M, Mita L, Cobellis L, Merafina V, Specchio R, Rossi S . Triclosan and bisphenol a affect decidualization of human endometrial stromal cells. Mol Cell Endocrinol. 2015; 422:74-83. DOI: 10.1016/j.mce.2015.11.017. View

4.
Helmestam M, Stavreus-Evers A, Olovsson M . Cadmium chloride alters mRNA levels of angiogenesis related genes in primary human endometrial endothelial cells grown in vitro. Reprod Toxicol. 2010; 30(3):370-6. DOI: 10.1016/j.reprotox.2010.05.003. View

5.
Nakamura M, Yamanaka H, Oguro A, Imaoka S . Bisphenol A induces Nrf2-dependent drug-metabolizing enzymes through nitrosylation of Keap1. Drug Metab Pharmacokinet. 2018; 33(4):194-202. DOI: 10.1016/j.dmpk.2018.04.003. View