Ganzhou Key Laboratory for Drug Screening and Discovery, School of Geography and Environmental Engineering, Gannan Normal University, Ganzhou, 341000, Jiangxi, China.
Ganzhou Key Laboratory for Drug Screening and Discovery, School of Geography and Environmental Engineering, Gannan Normal University, Ganzhou, 341000, Jiangxi, China; College of Chemistry and Chemical Engineering, Gannan Normal University, Ganzhou, 341000 Jiangxi, China.
Environ Pollut. 2021 Apr 1;274:116539. doi: 10.1016/j.envpol.2021.116539. Epub 2021 Jan 23.
Bifenazate is a novel acaricide for selective foliar spraying and is widely used to control mites in agricultural production. However, its toxicity to aquatic organisms is unknown. Here, a zebrafish model was used to study bifenazate toxicity to aquatic organisms. Exposure to bifenazate was found to cause severe cardiotoxicity in zebrafish embryos, along with disorders in the gene expression related to heart development. Bifenazate also caused oxidative stress. Cardiotoxicity caused by bifenazate was partially rescued by astaxanthin (an antioxidant), accompanied by cardiac genes and oxidative stress-related indicators becoming normalized. Our results showed that exposure to bifenazate can significantly change the ATPase activity and gene expression levels of the calcium signaling pathway. These led to heart failure, in which the blood accumulated outside the heart without entering it, eventually leading to death. The results indicated that bifenazate exposure caused cardiotoxicity in zebrafish embryos through the induction of oxidative stress and inhibition of the calcium signaling pathway.
双甲脒是一种新型的叶面选择性杀螨剂,广泛用于农业生产中防治螨虫。然而,其对水生生物的毒性尚不清楚。在这里,我们使用斑马鱼模型来研究双甲脒对水生生物的毒性。研究发现,双甲脒暴露会导致斑马鱼胚胎严重的心脏毒性,并扰乱与心脏发育相关的基因表达。双甲脒还会引起氧化应激。抗氧化剂虾青素部分挽救了双甲脒引起的心脏毒性,同时心脏基因和氧化应激相关指标恢复正常。我们的结果表明,双甲脒暴露会显著改变钙信号通路的 ATP 酶活性和基因表达水平。这导致心力衰竭,血液积聚在心脏外部而无法进入心脏,最终导致死亡。结果表明,双甲脒通过诱导氧化应激和抑制钙信号通路导致斑马鱼胚胎心脏毒性。