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Shape, size, and polymer dependent effects of microplastics on Daphnia magna

Zenodo (CERN European Organization for Nuclear Research) 2022 1 citation ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count.
Michael Schwarzer, Brehm Julian, Vollmer Martina, Jasinski Julia, Xu Chengzhang, Zainuddin Shakir, Fröhlich Thomas, Schott Matthias, Greiner Andreas, Scheibel Thomas, Laforsch Christian

Summary

Researchers conducted chronic exposure experiments on Daphnia magna using polystyrene beads (6 and 20 µm), polystyrene fibers, polystyrene fragments, and non-plastic control particles of similar sizes and shapes to systematically disentangle whether observed toxic effects are driven by polymer type, particle shape, or particle size.

Polymers
Models

The effects of microplastic (MP) pollution on organisms are gaining increasing attention. To date, a variety of polymers of different shapes and sizes are used in ecotoxicology. Although polystyrene (PS) is the predominant polymer type used in effect studies, it is still unclear whether the observed effects derive from the polymer itself or from a certain particle shape and size. To elucidate whether the effects are polymer specific, we conducted a systematic study on Daphnia magna by comparing various PS-MPs to nonplastic control particles with similar properties. In chronic exposure experiments, we used PS beads (6 µm; 20 µm), fibers (Ø 3 µm, length: 75.5 µm), and fragments (5.7 µm; 17.7 µm) in two different size classes and two different concentrations (500 and 5000 particles ml-1) and in-house-produced control particles of comparable size, shape, concentration and, if possible, density. Although most PS properties did not elicit effects on the tested endpoints, we observed sublethal effects on D. magna life history and morphology for small PS beads and fragments. Interestingly, no adverse effects were detected for any of the control particles. Hence, the observed effects are polymer-specific, related to the size and shape of the polymer, and do not result from particle exposure per se. Also see: https://micro2022.sciencesconf.org/428208/document

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