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低剂量γ辐射对大型溞繁殖影响的综合评估:毒性途径构建和 AOP 开发。

Integrative assessment of low-dose gamma radiation effects on Daphnia magna reproduction: Toxicity pathway assembly and AOP development.

机构信息

Norwegian Institute for Water Research (NIVA), Gaustadalléen 21, N-0349 OSLO, Norway; Centre for Environmental Radioactivity (CERAD), Norwegian University of Life Sciences (NMBU), Post box 5003, N-1432 Ås, Norway.

Norwegian Institute for Water Research (NIVA), Gaustadalléen 21, N-0349 OSLO, Norway; Centre for Environmental Radioactivity (CERAD), Norwegian University of Life Sciences (NMBU), Post box 5003, N-1432 Ås, Norway; Norwegian University of Life Sciences (NMBU), Faculty of Environmental Sciences and Natural Resource Management (MINA), P.O. Box 5003, N-1432 Ås, Norway.

出版信息

Sci Total Environ. 2020 Feb 25;705:135912. doi: 10.1016/j.scitotenv.2019.135912. Epub 2019 Dec 5.

Abstract

High energy gamma radiation is potentially hazardous to organisms, including aquatic invertebrates. Although extensively studied in a number of invertebrate species, knowledge on effects induced by gamma radiation is to a large extent limited to the induction of oxidative stress and DNA damage at the molecular/cellular level, or survival, growth and reproduction at the organismal level. As the knowledge of causal relationships between effects occurring at different levels of biological organization is scarce, the ability to provide mechanistic explanation for observed adverse effects is limited, and thus development of Adverse Outcome Pathways (AOPs) and larger scale implementation into next generation hazard and risk predictions is restricted. The present study was therefore conducted to assess the effects of high-energy gamma radiation from cobalt-60 across multiple levels of biological organization (i.e., molecular, cellular, tissue, organ and individual) and characterize the major toxicity pathways leading to impaired reproduction in the model freshwater crustacean Daphnia magna (water flea). Following gamma exposure, a number of bioassays were integrated to measure relevant toxicological endpoints such as gene expression, reactive oxygen species (ROS), lipid peroxidation (LPO), neutral lipid storage, adenosine triphosphate (ATP) content, apoptosis, ovary histology and reproduction. A non-monotonic pattern was consistently observed across the levels of biological organization, albeit with some variation at the lower end of the dose-rate scale, indicating a complex response to radiation doses. By integrating results from different bioassays, a novel pathway network describing the key toxicity pathways involved in the reproductive effects of gamma radiation were proposed, such as DNA damage-oocyte apoptosis pathway, LPO-ATP depletion pathway, calcium influx-endocrine disruption pathway and DNA hypermethylation pathway. Three novel AOPs were proposed for oxidative stressor-mediated excessive ROS formation leading to reproductive effect, and thus introducing the world's first AOPs for non-chemical stressors in aquatic invertebrates.

摘要

高能伽马辐射对生物体具有潜在危害,包括水生无脊椎动物。尽管在许多无脊椎动物物种中进行了广泛研究,但关于伽马辐射引起的影响的知识在很大程度上仅限于分子/细胞水平的氧化应激和 DNA 损伤,或生物体水平的生存、生长和繁殖。由于对不同层次生物组织中发生的效应之间因果关系的了解甚少,因此对于观察到的不良效应提供机制解释的能力受到限制,从而限制了不良效应途径(AOP)的发展和更大规模地应用于下一代危害和风险预测。因此,本研究旨在评估钴-60 产生的高能伽马辐射对多个层次的生物组织(即分子、细胞、组织、器官和个体)的影响,并描述导致模式淡水甲壳类动物大型溞(水蚤)繁殖受损的主要毒性途径。在伽马辐射暴露后,整合了多项生物测定来测量相关的毒理学终点,如基因表达、活性氧(ROS)、脂质过氧化(LPO)、中性脂质储存、三磷酸腺苷(ATP)含量、细胞凋亡、卵巢组织学和繁殖。尽管在剂量率较低的范围内存在一些变化,但在不同的生物组织层次上观察到一致的非单调模式,表明对辐射剂量的复杂反应。通过整合来自不同生物测定的结果,提出了一个描述伽马辐射生殖效应涉及的关键毒性途径的新途径网络,例如 DNA 损伤-卵母细胞凋亡途径、LPO-ATP 耗竭途径、钙内流-内分泌干扰途径和 DNA 高甲基化途径。提出了三个新的 AOP,用于描述氧化应激介导的过量 ROS 形成导致生殖效应的途径,从而在水生无脊椎动物中引入了世界上第一个用于非化学应激源的 AOP。

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