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Article ? AI-assigned paper type based on the abstract. Classification may not be perfect — flag errors using the feedback button. Tier 2 ? Original research — experimental, observational, or case-control study. Direct primary evidence. Environmental Sources Food & Water Marine & Wildlife Policy & Risk Sign in to save

Ingestion of Microplastics by Freshwater Tubifex Worms

Environmental Science & Technology 2017 271 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 45 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Rachel Hurley Rachel Hurley Jamie Woodward, Jamie Woodward, Rachel Hurley Rachel Hurley Rachel Hurley Rachel Hurley Rachel Hurley Rachel Hurley Rachel Hurley Rachel Hurley Rachel Hurley Rachel Hurley Rachel Hurley Rachel Hurley Rachel Hurley Rachel Hurley Jamie Woodward, Jamie Woodward, Jamie Woodward, Rachel Hurley Rachel Hurley Rachel Hurley Rachel Hurley Rachel Hurley Rachel Hurley Rachel Hurley Rachel Hurley Rachel Hurley James Rothwell, Rachel Hurley Rachel Hurley Rachel Hurley Rachel Hurley Rachel Hurley Rachel Hurley Rachel Hurley Rachel Hurley Rachel Hurley Rachel Hurley James Rothwell, Rachel Hurley James Rothwell, James Rothwell, James Rothwell, Rachel Hurley Rachel Hurley Rachel Hurley Rachel Hurley Rachel Hurley Rachel Hurley Rachel Hurley Rachel Hurley James Rothwell, James Rothwell, Rachel Hurley Rachel Hurley Rachel Hurley Rachel Hurley Rachel Hurley Rachel Hurley Rachel Hurley Rachel Hurley Rachel Hurley Rachel Hurley Rachel Hurley Rachel Hurley Rachel Hurley Rachel Hurley Rachel Hurley Rachel Hurley Rachel Hurley Rachel Hurley Rachel Hurley Rachel Hurley Rachel Hurley Rachel Hurley

Summary

This study found that Tubifex worms living in the sediments of an urban waterway had ingested microplastic particles, providing one of the first field-based (rather than lab-based) demonstrations of microplastic ingestion by freshwater invertebrates. The finding suggests that sediment-dwelling organisms are exposed to microplastics in real-world polluted environments.

Study Type Environmental

Microplastic contamination of the aquatic environment is a global issue. Microplastics can be ingested by organisms leading to negative physiological impacts. The ingestion of microplastics by freshwater invertebrates has not been reported outside the laboratory. Here we demonstrate the ingestion of microplastic particles by Tubifex tubifex from bottom sediments in a major urban waterbody fed by the River Irwell, Manchester, UK. The host sediments had microplastic concentrations ranging from 56 to 2543 particles kg<sup>-1</sup>. 87% of the Tubifex-ingested microplastic particles were microfibers (55-4100 μm in length), while the remaining 13% were microplastic fragments (50-4500 μm in length). FT-IR analysis revealed ingestion of a range of polymers, including polyester and acrylic fibers. While microbeads were present in the host sediment matrix, they were not detected in Tubifex worm tissue. The mean concentration of ingested microplastics was 129 ± 65.4 particles g<sup>-1</sup> tissue. We also show that Tubifex worms retain microplastics for longer than they retain other particulate components of the ingested sediment matrix. Microplastic ingestion by Tubifex worms poses a significant risk for trophic transfer and biomagnification of microplastics up the aquatic food chain.

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