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Influence of microplastics on the accumulation and chronic toxic effects of cadmium in zebrafish (Danio rerio)

Chemosphere 2018 461 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 60 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Ruxia Qiao, Yan Zhang Yan Zhang Yan Zhang Kai Lü, Ruxia Qiao, Ruxia Qiao, Ruxia Qiao, Ruxia Qiao, Kai Lü, Ruxia Qiao, Yan Zhang Ruxia Qiao, Ruxia Qiao, Ruxia Qiao, Yan Zhang Ruxia Qiao, Yan Zhang Yan Zhang Ruxia Qiao, Kai Lü, Ruxia Qiao, Yan Zhang Yan Zhang Yan Zhang Yan Zhang Kai Lü, Hao An, Yan Zhang Yan Zhang Yan Zhang Ruxia Qiao, Hao An, Ruxia Qiao, Yan Zhang Yan Zhang Yan Zhang Yan Zhang Yan Zhang Yan Zhang Yan Zhang Yan Zhang Yan Zhang Ruxia Qiao, Yan Zhang Yan Zhang Ruxia Qiao, Yan Zhang Yan Zhang Yan Zhang Yan Zhang Yan Zhang Yan Zhang Yan Zhang Yan Zhang Yan Zhang Yan Zhang Yan Zhang Yan Zhang Yan Zhang Yan Zhang

Summary

Researchers exposed zebrafish to polystyrene microplastics combined with cadmium for three weeks and found that the presence of microplastics significantly increased cadmium accumulation in the liver, gut, and gills. The combined exposure caused greater oxidative damage, tissue inflammation, and disruption of protective gene activity than either pollutant alone. The study demonstrates that microplastics can enhance the toxicity of heavy metals in fish by acting as carriers that increase the body's uptake of harmful substances.

As the accumulation of microplastics (MPs) in the environment continues to rise, more concerns focus on the health risk of combined exposure to MPs and other contaminants. The aim of this study is to investigate the influences of MPs on the tissue-accumulation of cadmium (Cd) in zebrafish and explore the related chronic toxic effects induced by combined exposure of Cd and MPs. After co-exposure to MPs and Cd for 3 weeks, 20 and 200 μg/L MPs increased the accumulation of Cd in zebrafish livers (46% and 184%), guts (10% and 25%) and gills (9% and 46%). The Cd accumulation was gill > gut > liver. Comprehensive analyzes of biochemical biomarkers, histopathological observation and functional gene expression firstly demonstrated that the presence of MPs enhanced the toxicity of Cd on zebrafish and the combined exposure caused oxidative damage and inflammation in zebrafish tissues. Collectively, our results highlight the chronic effects of combined exposure to MPs and heavy metals.

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