4.7 Article

Surgical face masks as a source of emergent pollutants in aquatic systems: Analysis of their degradation product effects in Danio rerio through RNA-Seq.

期刊

JOURNAL OF HAZARDOUS MATERIALS
卷 428, 期 -, 页码 -

出版社

ELSEVIER
DOI: 10.1016/j.jhazmat.2021.128186

关键词

Face mask; Degradation; Danio rerio; Transcriptome; Reproductive processes; Endocrine disruptors

资金

  1. Ministerio de Ciencia e Innovacion [PID2020-119532RB-I00]
  2. EU FEDER Programa Interreg Espana-Portugal [0474_BLUEBIOLAB]
  3. Conselleria de Economia, Emprego e Industria (GAIN), Xunta de Galicia [IN607B 2019/01]

向作者/读者索取更多资源

This study analyzed the toxicogenomic effects of face masks at different stages of degradation in zebrafish larvae. The results showed that degradation products from face masks could act as endocrine disruptors, affecting reproduction, immune-related genes, and metabolic processes.
Surgical face masks are the most popularised and effective personal equipment for protecting public health during the COVID-19 pandemic. They are composed of plastic polymer fibres with a large amount of inorganic and organic compounds that can be released into aquatic environments through degradation processes. This source of microplastics and inorganic and organic substances could potentially impact aquatic organisms. In this study, the toxicogenomic effects of face masks at different stages of degradation in water were analysed in zebrafish larvae (Danio rerio) through RNA-Seq. Larvae were exposed for 10 days to three treatments: 1) face mask fragments in an initial stage of degradation (poorly degraded masks -PDM- products) with the corresponding water; 2) face mask fragments in an advanced stage of degradation (highly degraded masks -HDMproducts) with the corresponding water; and 3) water derived from HDM (W-HDM). Transcriptome analyses revealed that the three treatments provoked the down-regulation of genes related to reproduction, especially the HDM products, suggesting that degradation products derived from face masks could act as endocrine disruptors. The affected genes are involved in different steps of reproduction, including gametogenesis, sperm-egg recognition and binding or fertilisation. Immune-related genes and metabolic processes were also differentially affected by the treatments.

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