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原位暴露于氚化自然环境的影响:使用黑头呆鱼(Pimephales promelas)的多生物标志物方法。

Effects of in situ exposure to tritiated natural environments: A multi-biomarker approach using the fathead minnow, Pimephales promelas.

机构信息

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

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

出版信息

Sci Total Environ. 2017 Dec 1;599-600:597-611. doi: 10.1016/j.scitotenv.2017.04.210. Epub 2017 May 8.

Abstract

Aquatic ecosystems are chronically exposed to radionuclides as well as other pollutants. Increased concentrations of pollutants in aquatic environments can present a risk to exposed organisms, including fish. The goal of this study was to characterize the effects of tritium, in the context of natural environments, on the health of fathead minnow, Pimephales promelas. Fish were exposed to tritium (activity concentrations ranging from 2 to 23,000Bq/L) and also to various concentrations of several metals to replicate multiple-stressor environments. Fish were exposed for 60days, then transferred to the tritium background site where they stayed for another 60days. Tritium, in the forms of tritiated water (HTO) and organically bound tritium (OBT), and a series of fish health indicators were measured in fish tissues at seven time points throughout the 120days required to complete the exposure and the depuration phases. Results showed effects of environmental exposure following the increase of tritium activity and metals concentrations in water. The internal dose rates of tritium, estimated from tissue HTO and OBT activity concentrations, were consistently low (maximum of 0.2μGy/h) compared to levels at which population effects may be expected (>100μGy/h) and no effects were observed on survival, fish condition, gonado-somatic, hepato-somatic, spleno-somatic and metabolic indices (RNA/DNA, proteins/DNA and protein carbonylation (in gonads and kidneys)). Using multivariate analyses, we showed that several biomarkers (DNA damages, MN frequency, gamma-H2AX, SFA/MUFA ratios, lysosomal membrane integrity, AChE, SOD, phagocytosis and esterase activities) were exclusively correlated with fish tritium internal dose rate, showing that tritium induced genotoxicity, DNA repair activity, changes in fatty acid composition, and immune, neural and antioxidant responses. Some biomarkers were responding to the presence of metals, but overall, more biomarkers were linked to internalized tritium. The results are discussed in the context of multiple stressors involving metals and tritium.

摘要

水生生态系统长期受到放射性核素和其他污染物的影响。水生环境中污染物浓度的增加会对暴露于其中的生物,包括鱼类,造成风险。本研究的目的是描述氚(在自然环境中)对食蚊鱼(Pimephales promelas)健康的影响。研究中,鱼被暴露于氚(活度浓度范围为 2 至 23000Bq/L)以及各种浓度的多种金属,以模拟多压力环境。鱼被暴露 60 天,然后转移到氚本底站点,在那里又停留了 60 天。在完成暴露和净化阶段所需的 120 天内,在鱼组织中测量了氚(以氚化水(HTO)和有机结合氚(OBT)的形式)和一系列鱼类健康指标。结果表明,随着水中氚活度和金属浓度的增加,暴露后的环境效应显现出来。从组织 HTO 和 OBT 活度浓度估算的氚内剂量率一直很低(最高为 0.2μGy/h),与可能预期产生种群效应的水平(>100μGy/h)相比,没有观察到任何影响,存活率、鱼的状况、性腺-体比、肝-体比、脾-体比和代谢指数(RNA/DNA、蛋白质/DNA 和蛋白质羰基化(在性腺和肾脏中))没有变化。使用多元分析,我们表明,一些生物标志物(DNA 损伤、MN 频率、γ-H2AX、SFA/MUFA 比值、溶酶体膜完整性、乙酰胆碱酯酶、SOD、吞噬作用和酯酶活性)仅与鱼的氚内剂量率相关,表明氚诱导了遗传毒性、DNA 修复活性、脂肪酸组成的变化,以及免疫、神经和抗氧化反应。一些生物标志物对金属的存在有反应,但总的来说,更多的生物标志物与内源性氚有关。研究结果在涉及金属和氚的多压力源背景下进行了讨论。

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