4.7 Article

An integrative toxicogenomic analysis of plastic additives

期刊

JOURNAL OF HAZARDOUS MATERIALS
卷 409, 期 -, 页码 -

出版社

ELSEVIER
DOI: 10.1016/j.jhazmat.2020.124975

关键词

Plastic additives; Toxicogenomics; Diseases; Phenotypes and pathways

资金

  1. EU Feder Programa Interreg Espana-Portugal [0474_BLUEBIOLAB]
  2. Conselleria de Economia, Emprego e Industria (GAIN) [IN607B 2019/01]
  3. Xunta de Galicia
  4. Spanish Ministerio de Ciencia, Innovacion y Universidades [TJFI-2017-32493]
  5. Axencia Galega de Innovacion (GAIN, Xunta de Galicia) [IN606B-2018/010]

向作者/读者索取更多资源

Studies have shown that additives in plastics can impact human health by affecting genes, biological processes, and molecular functions, increasing the risk of diseases such as cancer, mental disorders, diabetes mellitus type II, and obesity.
In developed countries, contact with plastics is constant. Plastics contain a vast number of additives such as plasticisers, stabilisers, antioxidants, flame retardants, etc., that can impact human health. Most of them have been studied separately; however, an integrative approach to identify genes, biological processes, molecular functions, and diseases linked to exposure to these compounds has not been addressed until now. The genes most commonly affected by plastic additives are related to apoptosis, cell death, proliferation and differentiation, immunity and insulin-related processes, and are mainly associated with cancer, mental disorders, diabetes mellitus type II and obesity. The most commonly affected molecular functions included steroid hormone receptor activity implicated in cancer, mental disorders, immune signalling and gonadotropin-releasing hormones. These processes and functions affected by plastic additives are related to the diseases of the developed world, most of which are linked to the endocrine system, such as cancer, diabetes, infertility and obesity. The strong interconnection among the top 50 genes modulated by plastic additives shows that the pathways affected are strongly interrelated. Therefore, studying the effects of plastic additives through a single-compound approach cannot be sufficient and a holistic approach is more appropriate for evaluating the potential effects of plastics in human health.

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