斑马鱼
少年
生物
氧化应激
毒性
卵黄囊
神经系统
发育毒性
细胞生物学
毒理
胚胎
男科
化学
生理学
内科学
神经科学
内分泌学
医学
生态学
生物化学
遗传学
胎儿
基因
怀孕
作者
Jiangfei Chen,Qiuju Liang,Yi Zheng,Yuhang Lei,Xiufeng Gan,Mei He,Chenglian Bai,Haiyan Wang,Jingjuan Ju,Qiaoxiang Dong,Yang Song
标识
DOI:10.1016/j.aquatox.2024.106842
摘要
Because of widespread environmental contamination, there is growing concern that nanoplastics may pose a risk to humans and the environment. Due to their small particle size, nanoplastics may cross the blood-nerve barrier and distribute within the nervous system. The present study systematically investigated the uptake/distribution and developmental/neurobehavioral toxicities of different sizes (80, 200, and 500 nm) of polystyrene nanoplastics (PS) in embryonic and juvenile zebrafish. The results indicate that all three sizes of PS could cross the chorion, adsorb by the yolk, and distribute into the intestinal tract, eye, brain, and dorsal trunk of zebrafish, but with different patterns. The organ distribution and observed developmental and neurobehavioral effects varied as a function of PS size. Although all PS exposures induced cell death and inflammation at the cellular level, only exposures to the larger PS resulted in oxidative stress. Meanwhile, exposure to the 80 nm PS increased the expression of neural and optical-specific mRNAs. Collectively, these studies indicate that early life-stage exposures to PS adversely affect zebrafish neurodevelopment and that the observed toxicities are influenced by particle size.
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