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Size Effects of Microplastics on Embryos and Observation of Toxicity Kinetics in Larvae of Grass Carp (Ctenopharyngodon idella)

Toxics 2022 30 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.
Chaonan Zhang, Chaonan Zhang, Chaonan Zhang, Chaonan Zhang, Chaonan Zhang, Chaonan Zhang, Qiujie Wang, Chaonan Zhang, Chaonan Zhang, Chaonan Zhang, Shaodan Wang, Shaodan Wang, Shaodan Wang, Zhiheng Zuo, Chaonan Zhang, Chaonan Zhang, Chaonan Zhang, Chaonan Zhang, Chaonan Zhang, Chaonan Zhang, Chaonan Zhang, Shaodan Wang, Shaodan Wang, Shaodan Wang, Chaonan Zhang, Chaonan Zhang, Chaonan Zhang, Zhiheng Zuo, Chaonan Zhang, Chaonan Zhang, Chaonan Zhang, Shaodan Wang, Shaodan Wang, Zhiheng Zuo, Zhiheng Zuo, Chaonan Zhang, Shaodan Wang, Qiujie Wang, Shaodan Wang, Shaodan Wang, Zhiheng Zuo, Zhiheng Zuo, Chaonan Zhang, Shaodan Wang, Chaonan Zhang, Chaonan Zhang, Qiujie Wang, Qiujie Wang, Qiujie Wang, Chaonan Zhang, Chaonan Zhang, Zhiheng Zuo, Chaonan Zhang, Chaonan Zhang, Chaonan Zhang, Chaonan Zhang, Qiujie Wang, Qiujie Wang, Zhiheng Zuo, Shaodan Wang, Shaodan Wang, Shaodan Wang, Zhiheng Zuo, Zhiheng Zuo, Shaodan Wang, Shaodan Wang, Shaodan Wang, Jixing Zou Shaodan Wang, Shaodan Wang, Chaonan Zhang, Chaonan Zhang, Shaodan Wang, Shaodan Wang, Jixing Zou Chaonan Zhang, Qiujie Wang, Shaodan Wang, Liqun Lv, Chaonan Zhang, Chaonan Zhang, Jixing Zou Jixing Zou Chaonan Zhang, Chaonan Zhang, Jixing Zou Shaodan Wang, Zhiheng Zuo, Liqun Lv, Jixing Zou Zhiheng Zuo, Jixing Zou Jixing Zou Jixing Zou Qiujie Wang, Jixing Zou Jixing Zou Shaodan Wang, Jixing Zou Jixing Zou Jixing Zou Jixing Zou Jixing Zou Jixing Zou Shaodan Wang, Jixing Zou Jixing Zou Jixing Zou Jixing Zou Jixing Zou Jixing Zou Jixing Zou Jixing Zou Jixing Zou Jixing Zou

Summary

Researchers examined size-dependent effects of microplastics on grass carp embryos and larvae, finding that nanoscale particles (80 nm) caused more severe developmental toxicity than microscale particles (8 micrometers) at the same concentrations.

Microplastics have caused great concern in recent years. However, few studies have compared the toxicity of different sizes of microplastics in fishes, especially commercial fishes, which are more related to human health. In the present study, we revealed the effects of varying sizes of microplastics on grass carp embryos and larvae using scanning electron microscopy (SEM) and fluorescence imaging. Embryos were exposed to 80 nm and 8 μm microplastics at concentrations of 5, 15, and 45 mg/L. Toxicity kinetics of various sizes of fluorescent microplastics were analyzed through microscopic observation in the larvae. Results found that nanoplastics could not penetrate the embryo's chorionic membrane, instead they conglutinated or aggregated on the chorion. Our results are the first to explore the defense mechanisms of commercial fish embryos against microplastics. Larvae were prone to ingesting their own excrement, resulting in microplastic flocculants winding around their mouth. For the first time, it was found that excreted microplastics could be reconsumed by fish and reaccumulated in the oral cavity. Microplastics of a certain size (1 μm) could be accumulated in the nasal cavity. We speculate that the presence of a special groove structure in the nasal cavity of grass carp larvae may manage to seize the microplastics with a particular size. As far as we know, this is the first report of microplastics being found in the nasal passages of fish. Fluorescence images clearly recorded the toxicity kinetics of microplastics in herbivorous fish.

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