Hazard of polystyrene micro-and nanospheres to selected aquatic and terrestrial organisms
Опасность полистирольных микро- и наносфер для отдельных водных и наземных организмов
2022-09-07
SCID: 54.1/ah9vs8x6
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aquatic and terrestrial organismsbioaccumulation assessmentmicroplastics and nanoplasticspolystyrene micro- and nanospherestoxicity assessment
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Abstract (AI)
Plastics contamination in the environment is a major concern. Risk assessment of micro- and nanoplastics (MPL and NPL) poses significant challenges due to MPL and NPL heterogeneity regarding compositional polymers, particle sizes and morphologies in the environment. Yet, there exists considerable toxicological literature on commercial polystyrene (PS) micro- and nanospheres. Although such particles do not directly represent the environmental MPL and NPL, their toxicity data should be used to advance the hazard assessment of plastics. Here, toxicity data of PS micro- and nanospheres for microorganisms, aquatic and terrestrial invertebrates, fish, and higher plants was collected and analyzed. The evaluation of 294 papers revealed that aquatic invertebrates were the most studied organisms, nanosized PS was studied more often than microsized PS, acute exposures prevailed over chronic exposures, the toxicity of PS suspension additives was rarely addressed, and ∼40 % of data indicated no organismal effects of PS. Toxicity mechanisms were mainly studied in fish and nematode Caenorhabditis elegans, providing guidance for relevant studies in higher organisms. Future studies should focus on environmentally relevant plastics concentrations, wide range of organisms, co-exposures with other pollutants, and method development for plastics identification and quantification to fill the gap of bioaccumulation assessment of plastics.
Key Findings
1
Acute exposures predominated over chronic exposures, and toxicity from suspension additives was rarely assessed.
2
Approximately 40% of reported data indicated no organismal effects from polystyrene particles.
3
Aquatic invertebrates were the most frequently studied organisms, while nanosized polystyrene was investigated more often than microsized polystyrene.
4
Future research should prioritize environmentally relevant concentrations, broader organism coverage, pollutant co-exposures, and methods for identifying and quantifying plastics to assess bioaccumulation.
5
The review analyzed toxicity data from 294 papers on polystyrene micro- and nanospheres across microorganisms, aquatic and terrestrial organisms, fish, and higher plants.
Research Object
Commercial polystyrene (PS) micro- and nanospheres and their effects on selected microorganisms, aquatic and terrestrial invertebrates, fish, and higher plants
Research Subject
Toxicity and toxicity mechanisms of PS micro- and nanospheres, including organismal effects across exposure durations, particle sizes, and taxonomic groups
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2022-09-07
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