Neural System Impairment and Involved Microglia-Neuron Regulation of Broflanilide in Zebrafish Larvae

小胶质细胞 斑马鱼 神经毒性 神经炎症 生物 中枢神经系统 体内 神经科学 神经元 神经系统 髓鞘 毒性 炎症 免疫学 内科学 医学 基因 生物化学 生物技术
作者
Xiyan Mu,Kai Wang,Lu H,Zaiteng Liu,Yining Zhang,Ru Zhang,Manman Duan,Chengju Wang
出处
期刊:Environmental Science & Technology [American Chemical Society]
卷期号:57 (38): 14138-14149 被引量:25
标识
DOI:10.1021/acs.est.3c03626
摘要

Broflanilide is widely used to control pests and has attracted attention due to its adverse effects on aquatic organisms. Our previous study showed that broflanilide has a negative impact on the central nervous system (CNS) at lethal dosages; however, its neural effects under practical situations and the underlying mechanisms remain unknown. To elucidate how broflanilide affects the CNS, we exposed zebrafish larvae to broflanilide at 16.9 and 88.0 μg/L (the environmentally relevant concentrations) for 120 h. Zebrafish locomotion was significantly disturbed at 88.0 μg/L, with a decreased moving distance and velocity accompanied by an inhibited neurotransmitter level. In vivo neuroimaging analysis indicated that the nerves of zebrafish larvae, including the axons, myelin sheaths, and neurons, were impaired. The number of neurons was significantly reduced after exposure, with an impaired morphological structure. These changes were accompanied by the abnormal transcription of genes involved in early CNS development. In addition, an increased total number of microglia and an elevated proportion of amoeboid microglia were observed after 88.0 μg/L broflanilide exposure, pointing out to an upstream role of microglia activation in mediating broflanilide neurotoxicity. Meanwhile, increased inflammatory cytokine levels and brain neutrophil numbers were observed, implicating significant inflammatory response and immune toxicity. Our findings indicate that broflanilide interferes with microglia-neuron regulation and induces neurodevelopmental disorders.
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