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Impacts of Cetylpyridinium Chloride on the Survival, Development, Behavior, and Oxidative Stress of Early-Life-Stage Zebrafish (Danio rerio)

Antioxidants 2022 17 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.
Kun Chen, Xuchun Qiu Xuchun Qiu Xuchun Qiu Xiangyang Wu, Kun Chen, Yanhong Shi, Yanhong Shi, Michaela Sia Tengbe, Michaela Sia Tengbe, Xuchun Qiu Chen Chen, Xuchun Qiu Xingyi Xia, Kun Chen, Kun Chen, Chen Chen, Xingyi Xia, Ming Li, Xuchun Qiu Kejun Dong, Xuchun Qiu Hai Xu, Kejun Dong, Chen Chen, Xiangyang Wu, Xuchun Qiu Xuchun Qiu Xiangyang Wu, Xiangyang Wu, Xuchun Qiu Yanhong Shi, Xuchun Qiu Ming Li, Xuchun Qiu Ming Li, Kun Chen, Hai Xu, Xuchun Qiu Xiangyang Wu, Kun Chen, Xuchun Qiu

Summary

Zebrafish embryos and larvae exposed to cetylpyridinium chloride, a surfactant found in water ecosystems, showed reduced survival, developmental abnormalities, altered behavior, and elevated oxidative stress markers in a concentration-dependent manner. The findings identify this widely used antiseptic compound as a developmental toxicant to early-life-stage fish.

Cetylpyridinium chloride (CPC) is a widely used surfactant that has been detected in various water ecosystems. However, knowledge on the toxicity of CPC to fish remains scarce. Here, we examined the survival, development, behavior, and oxidative stress in the early life stages of zebrafish exposed to CPC (0, 4, 40, 400, and 1200 μg/L) until 120 h post-fertilization (hpf). Results showed that CPC induced significant mortality at 400 and 1200 μg/L, with a 120 h-EC<sub>50</sub> value of 175.9 μg/L. CPC significantly decreased the heart rate of embryos (48 hpf; 4-400 μg/L) and larvae (72 hpf; 40 and 400 μg/L). At 120 hpf, CPC exhibited a dual effect on the locomotion activity (decreased at 400 μg/L and increased at 4 and 40 μg/L) and elevated the reactive oxygen species, superoxide dismutase, and glutathione levels in zebrafish larvae at 400 µg/L. In addition, a correlation analysis revealed that CPC-induced oxidative stress might play a critical role in mediating the cardiac and behavioral toxicity of CPC to zebrafish larvae. Our findings suggest that CPC may disturb the fish's development, behavior, and oxidative status at environmentally relevant concentrations, which should not be ignored when assessing its potential risks to aquatic ecosystems.

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