神经毒性
爪蟾
电离辐射
生物
细胞生物学
神经管
神经递质受体
受体
药理学
胚胎
神经科学
毒性
化学
遗传学
医学
内科学
基因
辐照
物理
核物理学
作者
Yue Hou,Yue Shang,Feifei Xu,T. Li,Min Li,Wei Ling,Saijun Fan,Hou Wen-bin,Wenfeng Gou,Haihua Shang,Yiliang Li
标识
DOI:10.1016/j.envres.2024.119237
摘要
Ionizing radiation (IR) poses a significant threat to both the natural environment and biological health. Exposure to specific doses of ionizing radiation early in an organism's development can lead to developmental toxicity, particularly neurotoxicity. Through experimentation with Xenopus laevis (X. laevis), we examined the effects of radiation on early development and neurotoxicity. Our findings revealed that radiation led to developmental abnormalities and mortality in X. laevis embryos in a dose-dependent manner, disrupting redox homeostasis and inducing cell apoptosis. Additionally, radiation caused neurotoxic effects, resulting in abnormal behavior and neural tube damage in the embryos. Further investigation into the underlying mechanisms of radiation-induced neurotoxicity indicated the potential involvement of the neuroactive ligand-receptor reaction pathway, which was supported by RNA-seq analysis. Validation of gene expression associated with this pathway and analysis of neurotransmitter levels confirmed our hypothesis. In addition, we further validated the important role of this signaling pathway in radiation-induced neurotoxicity through edaravone rescue experiments. This research establishes a valuable model for radiation damage studying and provides some insight into radiation-induced neurotoxicity mechanisms.
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