斑马鱼
神经毒性
生物
达尼奥
神经发育
神经发生
轴突
Gap-43蛋白
轴突引导
细胞生物学
发育毒性
神经突
神经科学
解剖
毒性
遗传学
内科学
胎儿
免疫学
体外
基因
医学
免疫组织化学
怀孕
作者
Jin Kim,Hanseul Oh,Bokyeong Ryu,Ukjin Kim,Ji Min Lee,Cho‐Rok Jung,C‐Yoon Kim,Jae‐Hak Park
标识
DOI:10.1016/j.envpol.2017.12.110
摘要
Triclosan (TCS) is an organic compound with a wide range of antibiotic activity and has been widely used in items ranging from hygiene products to cosmetics; however, recent studies suggest that it has several adverse effects. In particular, TCS can be passed to both fetus and infants, and while some evidence suggests in vitro neurotoxicity, there are currently few studies concerning the mechanisms of TCS-induced developmental neurotoxicity. Therefore, this study aimed to clarify the effect of TCS on neural development using zebrafish models, by analyzing the morphological changes, the alterations observed in fluorescence using HuC-GFP and Olig2-dsRED transgenic zebrafish models, and neurodevelopmental gene expression. TCS exposure decreased the body length, head size, and eye size in a concentration-dependent manner in zebrafish embryos. It increased apoptosis in the central nervous system (CNS) and particularly affected the structure of the CNS, resulting in decreased synaptic density and shortened axon length. In addition, it significantly up-regulated the expression of genes related to axon extension and synapse formation such as α1-Tubulin and Gap43, while decreasing Gfap and Mbp related to axon guidance, myelination and maintenance. Collectively, these changes indicate that exposure to TCS during neurodevelopment, especially during axonogenesis, is toxic. This is the first study to demonstrate the toxicity of TCS during neurogenesis, and suggests a possible mechanism underlying the neurotoxic effects of TCS in developing vertebrates.
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