Atmospheric endocrine disruptors: A systematic review on oestrogenic and androgenic activity of particulate matter

内分泌系统 生物测定 微粒 内分泌干扰物 人类健康 环境化学 环境卫生 环境科学 生理学 毒理 医学 激素 生物 化学 内分泌学 生态学
作者
Marta Gea,Elisabetta Fea,Letizia Racca,Giorgio Gilli,Paolo Gardois,Tiziana Schilirò
出处
期刊:Chemosphere [Elsevier]
卷期号:349: 140887-140887
标识
DOI:10.1016/j.chemosphere.2023.140887
摘要

The alarming human health effects induced by endocrine disruptors (ED) have raised the attention of public opinion and policy makers and have led worldwide to regulations that are continuously improved to reduce exposure to them. However, decreasing the exposure levels is challenging because EDs are ubiquitous and exposure occurs through multiple routes. The main exposure route is considered ingestion, but, recently, the inhalation has been hypothesized as an important additional route. To explore this scenario, some authors applied bioassays to assess the endocrine activity of air. This review summarizes for the first time the applied methods and the obtained evidences about the in vitro endocrine activity of airborne particulate matter (PM) collected outdoor. Among the bioassay endpoints, (anti)oestrogenic and (anti)androgenic activities were selected because are the most studied endocrine activities. A total of 24 articles were ultimately included in this review. Despite evidences are still scarce, the results showed that PM can induce oestrogenic, antioestrogenic, androgenic and antiandrogenic effects, suggesting that PM has an endocrine disrupting potential that should be considered because it could represent a further source of exposure to EDs. Although it is difficult to estimate how much inhalation can contribute to the total burden of EDs, endocrine activity of PM may increase the human health risk. Finally, the results pointed out that the overall endocrine activity is difficult to predict from the concentrations of individual pollutants, so the assessment using bioassays could be a valuable additional tool to quantify the health risk posed by EDs in air.
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