发育毒性
斑马鱼
毒性
生物
神经毒性
氧化应激
胚胎发生
细胞凋亡
胚胎
细胞生物学
男科
胎儿
生物化学
内科学
医学
怀孕
遗传学
基因
作者
Xiang-Ning He,Pei Wu,Wei‐Dan Jiang,Yang Liu,Sheng‐Yao Kuang,Ling Tang,Jun Ren,Hua Li,Lin Feng,Xiao‐Qiu Zhou
标识
DOI:10.1016/j.scitotenv.2023.163170
摘要
The prevalence of aflatoxin B1 (AFB1), one of the most toxic mycotoxins that contaminates feedstock and food is increasing worldwide. AFB1 can cause various health problems in humans and animals, as well as direct embryotoxicity. However, the direct toxicity of AFB1 on embryonic development, especially foetal foetus muscle development, has not been studied in depth. In the present study, we used zebrafish embryos as a model to study the mechanism of the direct toxicity of AFB1 to the foetus, including muscle development and developmental toxicity. Our results showed that AFB1 caused motor dysfunction in zebrafish embryos. In addition, AFB1 induces abnormalities in muscle tissue architecture, which in turn causes abnormal muscle development in larvae. Further studies found that AFB1 destroyed the antioxidant capacity and tight junction complexes (TJs), causing apoptosis in zebrafish larvae. In summary, AFB1 may induce developmental toxicity and inhibit muscle development through oxidative damage, apoptosis and disruption of TJs in zebrafish larvae. Our results revealed the direct toxicity effects of AFB1 on the development of embryos and larvae, including inhibition of muscle development and triggering neurotoxicity, induction of oxidative damage, apoptosis and disruption of TJs, and fills the gap in the toxicity mechanism of AFB1 on foetal development.
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