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Shrimp and microplastics: A case study with the Atlantic ditch shrimp Palaemon varians

Ecotoxicology and Environmental Safety 2022 55 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.
Špela Korez, Špela Korez, Reinhard Saborowski Reinhard Saborowski Špela Korez, Špela Korez, Reinhard Saborowski Špela Korez, Reinhard Saborowski Reinhard Saborowski Lars Gutow, Špela Korez, Špela Korez, Špela Korez, Špela Korez, Špela Korez, Špela Korez, Špela Korez, Lars Gutow, Lars Gutow, Lars Gutow, Lars Gutow, Lars Gutow, Lars Gutow, Lars Gutow, Lars Gutow, Sarah Riesbeck, Sarah Riesbeck, Sarah Riesbeck, Sarah Riesbeck, Sarah Riesbeck, Sarah Riesbeck, Špela Korez, Špela Korez, Špela Korez, Lars Gutow, Lars Gutow, Lars Gutow, Lars Gutow, Lars Gutow, Lars Gutow, Lars Gutow, Lars Gutow, Lars Gutow, Lars Gutow, Lars Gutow, Lars Gutow, Lars Gutow, Lars Gutow, Lars Gutow, Lars Gutow, Špela Korez, Lars Gutow, Lars Gutow, Lars Gutow, Lars Gutow, Reinhard Saborowski Lars Gutow, Špela Korez, Lars Gutow, Ulf Bickmeyer, Lars Gutow, Reinhard Saborowski Lars Gutow, Lars Gutow, Lars Gutow, Lars Gutow, Lars Gutow, Lars Gutow, Lars Gutow, Reinhard Saborowski Reinhard Saborowski Lars Gutow, Lars Gutow, Reinhard Saborowski Lars Gutow, Lars Gutow, Reinhard Saborowski Lars Gutow, Reinhard Saborowski Lars Gutow, Lars Gutow, Lars Gutow, Lars Gutow, Lars Gutow, Lars Gutow, Lars Gutow, Reinhard Saborowski Reinhard Saborowski Reinhard Saborowski Reinhard Saborowski Reinhard Saborowski Reinhard Saborowski Reinhard Saborowski Reinhard Saborowski Reinhard Saborowski Reinhard Saborowski Reinhard Saborowski Reinhard Saborowski Reinhard Saborowski Reinhard Saborowski Reinhard Saborowski Reinhard Saborowski Reinhard Saborowski Reinhard Saborowski Reinhard Saborowski Reinhard Saborowski Sarah Riesbeck, Sarah Riesbeck, Lars Gutow, Mara Weidung, Mara Weidung, Reinhard Saborowski Reinhard Saborowski Reinhard Saborowski Reinhard Saborowski Lars Gutow, Reinhard Saborowski Lars Gutow, Reinhard Saborowski Reinhard Saborowski Reinhard Saborowski Lars Gutow, Lars Gutow, Ulf Bickmeyer, Lars Gutow, Reinhard Saborowski Lars Gutow, Reinhard Saborowski Lars Gutow, Reinhard Saborowski

Summary

The Atlantic ditch shrimp Palaemon varians was exposed to microplastics in the laboratory, with the study documenting ingestion, egestion, and retention of particles along with physiological responses. The case study illustrates the processes by which coastal invertebrates interact with microplastics and highlights shrimp as informative model organisms for plastic pollution research.

Polymers
Body Systems

Many invertebrate species inhabit coastal areas where loads of plastic debris and microplastics are high. In the current case study, we exemplarily illustrate the principal processes taking place in the Atlantic ditch shrimp, Palaemon varians, upon ingestion of microplastics. In the laboratory, shrimp readily ingested fluorescent polystyrene microbeads of 0.1-9.9 µm, which could be tracked within the widely translucent body. Ingested food items as well as micro-particles cumulate in the stomach where they are macerated and mixed with digestive enzymes. Inside the stomach, ingested particles are segregated by size by a complex fine-meshed filter system. Liquids and some of the smallest particles (0.1 µm) pass the filter and enter the midgut gland where resorption of nutrients as well as synthesis and release of digestive enzymes take place. Large particles and most of the small particles are egested with the feces through the hindgut. Small particles, which enter the midgut gland, may interact with the epithelial cells and induce oxidative stress, as indicated by elevated activities of superoxide dismutase and cellular markers of reactive oxygen species. The shrimp indiscriminately ingest microparticles but possess efficient mechanisms to protect their organs from overloading with microplastics and other indigestible particles. These include an efficient sorting mechanism within the stomach and the protection of the midgut gland by the pyloric filter. Formation of detrimental radical oxygen species is counteracted by the induction of enzymatic antioxidants.

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