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Oxidative stress status and antioxidative responses in neonate versus adult Daphnia magna exposed to polystyrene leachate

Toxicology and Environmental Health Sciences 2024 6 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.
Stephan Pflugmacher, Sang‐Ah Lee, Maranda Esterhuizen‐Londt, Maranda Esterhuizen‐Londt, Maranda Esterhuizen‐Londt, Maranda Esterhuizen‐Londt, Maranda Esterhuizen‐Londt, Maranda Esterhuizen‐Londt, Stephan Pflugmacher, Maranda Esterhuizen‐Londt, Sang‐Ah Lee, Stephan Pflugmacher, Maranda Esterhuizen‐Londt, Maranda Esterhuizen‐Londt, Stephan Pflugmacher, Young Jun Kim, Sang‐Ah Lee, Sang‐Ah Lee, Sang‐Ah Lee, Maranda Esterhuizen‐Londt, Maranda Esterhuizen‐Londt, Michela Monticelli, Young Jun Kim, Maranda Esterhuizen‐Londt, Maranda Esterhuizen‐Londt, Maranda Esterhuizen‐Londt, Youngsam Kim Michela Monticelli, Stephan Pflugmacher, Stephan Pflugmacher, Sang‐Ah Lee, Sang‐Ah Lee, Youngsam Kim Maranda Esterhuizen‐Londt, Youngsam Kim Young Jun Kim, Stephan Pflugmacher, Youngsam Kim Young Jun Kim, Stephan Pflugmacher, Maranda Esterhuizen‐Londt, Youngsam Kim Maranda Esterhuizen‐Londt, Young Jun Kim, Youngsam Kim Young Jun Kim, Youngsam Kim Stephan Pflugmacher, Stephan Pflugmacher, Stephan Pflugmacher, Maranda Esterhuizen‐Londt, Maranda Esterhuizen‐Londt, Young Jun Kim, Stephan Pflugmacher, Stephan Pflugmacher, Young Jun Kim, Young Jun Kim, Stephan Pflugmacher, Young Jun Kim, Sang‐Ah Lee, Young Jun Kim, Young Jun Kim, Youngsam Kim Stephan Pflugmacher, Young Jun Kim, Stephan Pflugmacher, Maranda Esterhuizen‐Londt, Maranda Esterhuizen‐Londt, Maranda Esterhuizen‐Londt, Youngsam Kim

Summary

Researchers studied how chemical leachates from polystyrene plastic affect water fleas at different life stages. The study found that while short-term exposure triggered protective antioxidant responses in adults, prolonged exposure reduced the ability of both young and adult organisms to defend against oxidative stress, highlighting how plastic pollution can weaken aquatic species over time.

Polymers
Models
Study Type Environmental

Abstract Objective Plastic pollution, particularly polystyrene, significantly threatens aquatic ecosystems worldwide. Furthermore, plastic leachates have been documented to be detrimental to some aquatic organisms; however, understanding the toxicity mechanism remains limited. This study aimed to investigate the ecotoxicological effects of polystyrene leachate on neonate and adult Daphnia magna , a keystone species in freshwater ecosystems. Methods The effects of the leachate were studied by employing the novel technique of separating daphnids from the polystyrene microplastic fragments via dialysis tubing, which was prepared 24 and 72 h before organism exposure. Acute toxicity was assessed as effects on organism mobility, oxidative stress (reactive oxygen species), antioxidative enzyme responses (superoxide dismutase and catalase), as well as the effects on the biotransformation enzyme glutathione S-transferase’s activity. Results Under the experimental conditions, the mobility and oxidative status of the daphnids were unaffected, irrespective of the organisms’ age or leaching time. In adults exposed for 24 h, the antioxidant defense enzyme activities were elevated, contributing to cellular homeostasis maintenance. However, the catalase activity was reduced for neonates and adults exposed to the prolonged pre-leached treatment, thus making them less capable of retaining homeostasis when exposed to toxicant mixtures. Conclusion This study highlights the vulnerability of D. magna to polystyrene leachate and underscores the need for continued research on the ecotoxicological effects of plastic pollution in aquatic ecosystems. Findings from this investigation contribute to understanding the ecological consequences of plastic pollution, which can inform mitigation strategies and policy decisions to preserve the health and integrity of freshwater ecosystems.

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