Projects per year
Abstract
Plastic pollution has become a major concern on a global scale. The plastic is broken down into minuscule particles, which have an impact on the biosystems, however long-term impacts through an entire generation is largely unknown. Here, we present the first whole generation study exposing fish to a 500 nm polystyrene plastic particle at environmentally relevant concentrations. Short- and long-term adverse effects were investigated in the zebrafish model organism using a holistic multi-omics approach. The particles accumulated in the yolk sac of young larvae and short-term biological impacts included immune-relevant gene regulation related to inflammation and tolerance as well as disruption of metabolic processes, such as the fatty acid and lipid pathways. The long-term effects comprised gene regulations pointing towards skin and/or gill inflammation, dysbiosis of the gut microbiota, a tendency towards decreased condition factor in adult males as well as a lowered reproductive capability. From this study, it can be concluded that exposures to plastic nanoparticles have an impact on population as well as ecosystem level in fish and likely also in other vertebrates.
Original language | English |
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Article number | 127705 |
Journal | Journal of Hazardous Materials |
Volume | 424 |
Issue number | Part D |
ISSN | 0304-3894 |
DOIs | |
Publication status | Published - 15 Feb 2022 |
Keywords
- Immune effects
- Metabolic disruption
- Microbiota dysbiosis
- Nutritional condition
- Polystyrene
Projects
- 1 Active
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Roskilde Environmental Plastic Society
Syberg, K., Oturai, N. G., Thomsen, T. P., Jensen, A. T. B., Ramos, T. M., Palmqvist, A., Sandgaard, M. H., Jepsen, P. M., Christensen, T. B., Hooge, A., Hauggaard-Nielsen, H., Johansen, J. L., Lyngsie, G. & Lorenz, C.
01/04/2021 → …
Project: Research