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Effects of Polyester Fibers and Car Tire Particles on Freshwater Invertebrates

Environmental Toxicology and Chemistry 2022 43 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 55 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Marco Vighi Theresa Schell, Theresa Schell, Theresa Schell, Theresa Schell, Theresa Schell, Rachel Hurley, Rachel Hurley, Rachel Hurley, Rachel Hurley, Rachel Hurley, Rachel Hurley, Rachel Hurley, Rachel Hurley, Rachel Hurley, Sara Martínez-Pérez, Sara Martínez-Pérez, Andreu Rico, Sara Martínez-Pérez, Sara Martínez-Pérez, Rachel Hurley, Andreu Rico, Rachel Hurley, Marco Vighi Rachel Hurley, Andreu Rico, Rachel Hurley, Rachel Hurley, Rachel Hurley, Rachel Hurley, Andreu Rico, Rachel Hurley, Sara Martínez-Pérez, Andreu Rico, Rachel Hurley, Rachel Hurley, Andreu Rico, Andreu Rico, Rachel Hurley, Rachel Hurley, Rachel Hurley, Rachel Hurley, Rachel Hurley, Rachel Hurley, Theresa Schell, Theresa Schell, Theresa Schell, Theresa Schell, Theresa Schell, Theresa Schell, Rachel Hurley, Theresa Schell, Rachel Hurley, Andreu Rico, Rachel Hurley, Andreu Rico, Theresa Schell, Rachel Hurley, Rachel Hurley, Andreu Rico, Andreu Rico, Rachel Hurley, Marco Vighi Raquel Dafouz, Marco Vighi Rachel Hurley, Rachel Hurley, Rachel Hurley, Rachel Hurley, Rachel Hurley, Rachel Hurley, Rachel Hurley, Theresa Schell, Rachel Hurley, Rachel Hurley, Rachel Hurley, Rachel Hurley, Rachel Hurley, Rachel Hurley, Andreu Rico, Andreu Rico, Andreu Rico, Theresa Schell, Andreu Rico, Raquel Dafouz, Rachel Hurley, Marco Vighi Rachel Hurley, Andreu Rico, Marco Vighi Rachel Hurley, Andreu Rico, Marco Vighi Rachel Hurley, Rachel Hurley, Rachel Hurley, Rachel Hurley, Rachel Hurley, Rachel Hurley, Marco Vighi Rachel Hurley, Marco Vighi Andreu Rico, Andreu Rico, Andreu Rico, Rachel Hurley, Marco Vighi Andreu Rico, Andreu Rico, Marco Vighi Rachel Hurley, Marco Vighi Marco Vighi Andreu Rico, Rachel Hurley, Rachel Hurley, Rachel Hurley, Rachel Hurley, Andreu Rico, Andreu Rico, Andreu Rico, Rachel Hurley, Rachel Hurley, Rachel Hurley, Theresa Schell, Andreu Rico, Andreu Rico, Andreu Rico, Rachel Hurley, Rachel Hurley, Andreu Rico, Marco Vighi Rachel Hurley, Marco Vighi

Summary

Researchers assessed the ingestion and effects of polyester fibers and car tire particles on four freshwater invertebrate species under acute and chronic exposure conditions. The study found that while both microplastic types were ingested by all species tested, car tire particles caused greater mortality in Daphnia magna and Hyalella azteca. The results suggest that the chemical composition of microplastics plays an important role in their toxicity to freshwater organisms.

Polymers
Body Systems
Models
Study Type Environmental

Microplastic ingestion has been shown for various organisms, but knowledge of the potential adverse effects on freshwater invertebrates remains limited. We assessed the ingestion capacity and the associated effects of polyester fibers (26-5761 µm) and car tire particles (25-75 µm) on freshwater invertebrates under acute and chronic exposure conditions. A range of microplastic concentrations was tested on Daphnia magna, Hyalella azteca, Asellus aquaticus, and Lumbriculus variegatus using water only (up to 0.15 g/L) or spiked sediment (up to 2 g/kg dry wt), depending on the habitat of the species. Daphnia magna did not ingest any fibers, but low levels of fibers were ingested by all tested benthic invertebrate species. Car tire particle ingestion rose with increasing exposure concentration for all tested invertebrates and was highest in D. magna and L. variegatus. In most cases, no statistically significant effects on mobility, survival, or reproductive output were observed after acute and chronic exposure at the tested concentrations. However, fibers affected the reproduction and survival of D. magna (no-observed-effect concentration [NOEC]: 0.15 mg/L) due to entanglement and limited mobility under chronic conditions. Car tire particles affected the reproduction (NOEC: 1.5 mg/L) and survival (NOEC: 0.15 mg/L) of D. magna after chronic exposure at concentrations in the same order of magnitude as modeled river water concentrations, suggesting that refined exposure and effect studies should be performed with these microplastics. Our results confirm that microplastic ingestion by freshwater invertebrates depends on particle shape and size and that ingestion quantity depends on the exposure pathway and the feeding strategy of the test organism. Environ Toxicol Chem 2022;41:1555-1567. © 2022 The Authors. Environmental Toxicology and Chemistry published by Wiley Periodicals LLC on behalf of SETAC.

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