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Effect of size continuum from nanoplastics to microplastics on marine mussel Mytilus edulis: Comparison in vitro/in vivo exposure scenarios

Comparative Biochemistry and Physiology Part C Toxicology & Pharmacology 2022 33 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 50 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Oïhana Latchere, Coraline Roman, Julien Gigault, Oïhana Latchere, Julien Gigault, Julien Gigault, Isabelle Métais, Charlotte Catrouillet, Oïhana Latchere, Oïhana Latchere, Julien Gigault, Oïhana Latchere, Oïhana Latchere, Julien Gigault, Oïhana Latchere, Coraline Roman, Oïhana Latchere, Charlotte Catrouillet, Oïhana Latchere, Isabelle Métais, Isabelle Métais, Coraline Roman, Coraline Roman, Coraline Roman, Coraline Roman, Isabelle Métais, Isabelle Métais, Coraline Roman, Coraline Roman, Coraline Roman, Coraline Roman, Pauline Mahé, Coraline Roman, Coraline Roman, Coraline Roman, Coraline Roman, Isabelle Métais, Coraline Roman, Oïhana Latchere, Coraline Roman, Coraline Roman, Coraline Roman, Amélie Châtel Charlotte Catrouillet, Isabelle Métais, Charlotte Catrouillet, Oïhana Latchere, Amélie Châtel Amélie Châtel Amélie Châtel Isabelle Métais, Amélie Châtel Isabelle Métais, Isabelle Métais, Isabelle Métais, Isabelle Métais, Isabelle Métais, Julien Gigault, Julien Gigault, Julien Gigault, Julien Gigault, Pauline Mahé, Oïhana Latchere, Oïhana Latchere, Oïhana Latchere, Oïhana Latchere, Oïhana Latchere, Oïhana Latchere, Julien Gigault, Julien Gigault, Julien Gigault, Julien Gigault, Julien Gigault, Julien Gigault, Coraline Roman, Coraline Roman, Coraline Roman, Coraline Roman, Julien Gigault, Amélie Châtel Julien Gigault, Julien Gigault, Amélie Châtel Amélie Châtel Julien Gigault, Isabelle Métais, Isabelle Métais, Isabelle Métais, Isabelle Métais, Julien Gigault, Isabelle Métais, Isabelle Métais, Isabelle Métais, Oïhana Latchere, Oïhana Latchere, Coraline Roman, Coraline Roman, Coraline Roman, Julien Gigault, Julien Gigault, Julien Gigault, Julien Gigault, Julien Gigault, Julien Gigault, Julien Gigault, Julien Gigault, Julien Gigault, Julien Gigault, Julien Gigault, Isabelle Métais, Amélie Châtel Julien Gigault, Julien Gigault, Charlotte Catrouillet, Charlotte Catrouillet, Coraline Roman, Amélie Châtel Julien Gigault, Julien Gigault, Julien Gigault, Julien Gigault, Julien Gigault, Julien Gigault, Julien Gigault, Julien Gigault, Isabelle Métais, Amélie Châtel Amélie Châtel Amélie Châtel Amélie Châtel Amélie Châtel Charlotte Catrouillet, Amélie Châtel Julien Gigault, Julien Gigault, Isabelle Métais, Julien Gigault, Julien Gigault, Isabelle Métais, Oïhana Latchere, Oïhana Latchere, Julien Gigault, Julien Gigault, Julien Gigault, Julien Gigault, Julien Gigault, Julien Gigault, Amélie Châtel Amélie Châtel Julien Gigault, Amélie Châtel Julien Gigault, Julien Gigault, Julien Gigault, Julien Gigault, Julien Gigault, Julien Gigault, Julien Gigault, Julien Gigault, Julien Gigault, Julien Gigault, Julien Gigault, Julien Gigault, Julien Gigault, Charlotte Catrouillet, Charlotte Catrouillet, Julien Gigault, Amélie Châtel Amélie Châtel Julien Gigault, Amélie Châtel Julien Gigault, Julien Gigault, Amélie Châtel Julien Gigault, Amélie Châtel Julien Gigault, Amélie Châtel Julien Gigault, Charlotte Catrouillet, Charlotte Catrouillet, Charlotte Catrouillet, Charlotte Catrouillet, Julien Gigault, Julien Gigault, Julien Gigault, Julien Gigault, Amélie Châtel Julien Gigault, Amélie Châtel Julien Gigault, Amélie Châtel Julien Gigault, Julien Gigault, Amélie Châtel Julien Gigault, Charlotte Catrouillet, Julien Gigault, Amélie Châtel Charlotte Catrouillet, Amélie Châtel Amélie Châtel Amélie Châtel Charlotte Catrouillet, Amélie Châtel Julien Gigault, Charlotte Catrouillet, Charlotte Catrouillet, Charlotte Catrouillet, Julien Gigault, Amélie Châtel Amélie Châtel Amélie Châtel Amélie Châtel Amélie Châtel Amélie Châtel Amélie Châtel

Summary

Researchers compared the effects of nanoplastics versus microplastics on marine mussels using both in vivo and in vitro approaches, finding that smaller plastic particles caused greater cellular and physiological impacts across the size continuum.

Body Systems
Study Type In vivo

For several decades, plastic has been a global threat in terms of pollution. Plastic polymers, when introduce in the aquatic environment, are exposed to fragmentation processes into microplastics (MPs) and nanoplastics (NPs) which could potentially interact with living organisms. The objective of this work was to study the effects of plastic particles representative of those found in the environment, on the marine mussels Mytilus edulis, under two exposure scenarios: in vivo and in vitro. Whole mussels or cultured hemocytes were exposed for 24 h to NPs and MPs generated from macro-sized plastics collected in the field, but also to reference NPs, at concentrations found in the environment: 0.08, 10 μg and 100 μg·L. Results showed that immune response was only activated when mussels were exposed in vivo. However, cytotoxicity (hemocyte mortality) and genotoxicity (DNA damage) parameters were induced after both types of exposure, but in a dose-dependent manner after in vitro hemocyte exposure to all tested plastic conditions. These results indicate that in vitro approaches could be considered as potential predictors of in vivo exposures.

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