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抗氧化和转录反应是否可用于区分铀对螯虾 Procambarus clarkii 的化学毒性和放射毒性?

Are antioxidant and transcriptional responses useful for discriminating between chemo- and radiotoxicity of uranium in the crayfish Procambarus clarkii?

机构信息

Laboratory of Radioecology and Ecotoxicology (LRE), Institute of Radioprotection and Nuclear Safety (IRSN), Bd 186, BP 3, 13115 Saint-Paul-Lez-Durance, France.

出版信息

Ecotoxicol Environ Saf. 2012 Jun;80:266-72. doi: 10.1016/j.ecoenv.2012.03.010. Epub 2012 Apr 11.

Abstract

The main objectives of this study were to evaluate uranium (U) toxicity in the crayfish Procambarus clarkii at a low dose of exposure and to discriminate between the chemotoxicity and radiotoxicity of U. We conducted two sets of experiments using either 30 μg L(-1) of depleted uranium (DU) or (233)U, which differ from each other only in their specific activity (DU=1.7×10(4)Bqg(-1), (233)U=3.57×10(8)Bqg(-1)). The endpoints were oxidative stress responses and mitochondrial functioning in the gills and hepatopancreas, which were measured in terms of enzyme activities and gene expression levels. U accumulation levels were measured in different organs (gills, hepatopancreas, stomach, intestine, green gland, muscles, and carapace), and internal dose rates in the hepatopancreas were compared after DU and (233)U exposures. Significant U accumulation occurred in the organs of P. clarkii, and mitochondrial damage and antioxidant responses were detected. Despite the huge difference (21,000×) in the specific activities of DU and (233)U, few significant differences in biological responses were detected in P. clarkii exposed to these two pollutants. This finding indicates that the radiotoxicity was low compared to the chemotoxicity under our exposure conditions. Finally, genes expression levels were more sensitive markers of U toxicity than enzyme activities.

摘要

本研究的主要目的是评估低剂量暴露下铀(U)对淡水小龙虾(Procambarus clarkii)的毒性,并区分 U 的化学毒性和放射性毒性。我们进行了两组实验,分别使用 30μg/L 的贫铀(DU)或(233)U,它们仅在比活度上有所不同(DU=1.7×10(4)Bqg(-1),(233)U=3.57×10(8)Bqg(-1))。终点是鳃和肝胰腺的氧化应激反应和线粒体功能,以酶活性和基因表达水平来衡量。测量了 U 在不同器官(鳃、肝胰腺、胃、肠、绿腺、肌肉和甲壳)中的积累水平,并比较了 DU 和(233)U 暴露后肝胰腺中的内剂量率。P. clarkii 各器官均有明显的 U 积累,检测到线粒体损伤和抗氧化反应。尽管 DU 和(233)U 的比活度差异巨大(21,000×),但在暴露于这两种污染物的 P. clarkii 中,生物反应差异很小。这一发现表明,在我们的暴露条件下,与化学毒性相比,放射性毒性较低。最后,基因表达水平是比酶活性更敏感的 U 毒性标志物。

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