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γ 射线辐射对斑马鱼胚胎-幼虫期的影响 - 与氚暴露的比较。

Effects of gamma ionizing radiation exposure on Danio rerio embryo-larval stages - comparison with tritium exposure.

机构信息

Institut de Radioprotection et de Sureté Nucléaire (IRSN), PSE-ENV/SRTE/LECO, Cadarache, Saint-Paul-lez-Durance 13115, France.

Institut de Radioprotection et de Sureté Nucléaire (IRSN), PSE-ENV/SRTE/LECO, Cadarache, Saint-Paul-lez-Durance 13115, France.

出版信息

J Hazard Mater. 2021 Apr 15;408:124866. doi: 10.1016/j.jhazmat.2020.124866. Epub 2020 Dec 17.

Abstract

The objective was to investigate the effects of ionizing radiation induced in zebrafish early life stages by coupling responses obtained at the molecular (genotoxicity, ROS production, gene expression) and phenotypic (tissue alteration, embryo-larval development) levels. Here we present results obtained after exposure of 3 hpf larvae to 10 days of gamma irradiation at 3.3 × 10, 1.3 × 10 and 1.2 × 10 µGy/h, close to and higher than the benchmark for protection of ecosystems towards ionizing radiations of 10 µGy/h. Dose rates used in these studies were chosen to be in the 'derived consideration reference level' (DCRL) for gamma irradiation where deleterious effects can appear in freshwater fish. Also, these dose rates were similar to the ones already tested on tritium (beta ionizing radiation) in our previous work, in order to compare both types of ionizing radiation. Results showed that gamma irradiation did not induce any effect on survival and hatching. No effect was observed on DNA damages, but ROS production was increased. Muscle damages were observed for all tested dose rates, similarly to previous results obtained with tritium (beta ionizing radiation) at similar dose rates. Some molecular responses therefore appeared to be relevant for the study of gamma ionizing radiation effects in zebrafish.

摘要

目的是研究在斑马鱼早期生命阶段通过结合分子水平(遗传毒性、ROS 产生、基因表达)和表型水平(组织改变、胚胎-幼虫发育)的反应所获得的电离辐射的影响。在这里,我们展示了在 3 hpf 幼虫暴露于 3.3×10、1.3×10 和 1.2×10 µGy/h 的 γ 辐射 10 天后获得的结果,接近和高于保护生态系统免受 10 µGy/h 电离辐射的基准。在这些研究中使用的剂量率被选择为在淡水鱼类中可能出现有害影响的“推导考虑参考水平”(DCRL)。此外,这些剂量率与我们之前的工作中已经在氚(β电离辐射)上测试过的剂量率相似,以便比较两种类型的电离辐射。结果表明,γ 辐射对存活率和孵化率没有任何影响。没有观察到 DNA 损伤的影响,但 ROS 产生增加了。所有测试的剂量率都观察到肌肉损伤,与以前用氚(β电离辐射)在相似剂量率下获得的结果相似。因此,一些分子反应似乎与研究斑马鱼γ电离辐射的影响有关。

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