Xu Ting, Liu Fan, He Jiaxuan, Xu Peiye, Qu Junying, Wang Hanbing, Yue Jinghui, Yang Qinsi, Wu Wei, Zeng Guoming, Sun Da, Chen Xia
Institute of Life Sciences & Biomedical Collaborative Innovation Center of Zhejiang Province, Wenzhou University, Wenzhou, 325035, China; Department of Endocrinology, Yiwu Central Hospital, The Affiliated Yiwu Hospital of Wenzhou Medical University, Yiwu, 322000, China.
State and Local Joint Engineering Research Center for Ecological Treatment Technology of Urban Water Pollution, School of Life and Environmental Science, Wenzhou University, Wenzhou, 325035, China.
Environ Res. 2025 Feb 1;266:120504. doi: 10.1016/j.envres.2024.120504. Epub 2024 Dec 3.
Ionizing radiation (IR) represents a significant risk to human health and societal stability. To effectively analyze the mechanisms of IR and enhance protective strategies, the development of more sophisticated animal models is imperative. The zebrafish, with its high degree of genomic homology to humans and the capacity for whole-body optical visualization and high-throughput screening, represents an invaluable model for the study of IR. This review examines the benefits of utilizing zebrafish as a model organism for research on IR, emphasizing recent advancements and applications. It presents a comprehensive overview of the methodologies for establishing IR models in zebrafish, addresses current challenges, and discusses future development trends. This paper provide theoretical support for elucidating the mechanisms of IR injury and developing effective treatment strategies.
电离辐射(IR)对人类健康和社会稳定构成重大风险。为了有效分析电离辐射的机制并加强防护策略,开发更复杂的动物模型势在必行。斑马鱼与人类具有高度的基因组同源性,具备全身光学可视化和高通量筛选能力,是研究电离辐射的宝贵模型。本综述探讨了利用斑马鱼作为电离辐射研究模型生物的益处,强调了近期的进展和应用。它全面概述了在斑马鱼中建立电离辐射模型的方法,阐述了当前面临的挑战,并讨论了未来的发展趋势。本文为阐明电离辐射损伤机制和制定有效的治疗策略提供了理论支持。