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A multiple biomarker approach to investigate the effects of copper on the marine bivalve mollusc, Mytilus edulis

机译:多种生物标记物方法研究铜对海洋双壳贝类(Mytilus edulis)的影响

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摘要

While copper (Cu) is considered to be an essential trace element for many organisms, overexposure to this metal can induce a wide spectrum of effects including DNA damage. Given that Cu is a highly relevant contaminant in the marine environment, we aimed to evaluate the induction of DNA strand breaks (using the comet assay) in haemocytes and concurrently also determined biological responses at higher levels of biological organisation in bivalve molluscs, Mytilus edulis, following exposure for 5 days to a range of environmentally realistic levels of Cu (18-56 μg 1~(-1)). Prior to evaluation of genetic damage, the maximum tolerated concentration (MTC) was also determined, which was found to be (100 ug 1~(-1)) above which complete mortality over the exposure period was observed. In addition to DNA damage, levels of glutathione in adductor muscle extracts, histopathological examination of various organs (viz., adductor muscle, gills and digestive glands) and clearance rates as a physiological measure at individual level were also determined. Furthermore, tissue-specific accumulation and levels of Cu in water samples were also determined using ICP-MS. There was a strong concentration-dependant induction for DNA damage and total glutathione levels increased by 1.8-fold at 56 ug 1~(-1)Cu. Histological examination of the organs showed qualitatively distinct abnormalities. Clearance rate also showed a significant decrease compared to controls even at the lowest concentration (i.e. 18 ug l~(-1); P=0.003). Cu levels in adductor muscle (P=0.012), digestive gland (P=0.008) and gills (P=0.002) were significantly higher than in the control. The multi-biomarker approach used here suggests that in some cases clear relationships exist between genotoxic and higher level effects, which could be adopted as an integrated tool to evaluate different short and long-term toxic effects of pollutants.
机译:尽管铜(Cu)被认为是许多生物必不可少的微量元素,但过度暴露于这种金属会引起包括DNA损伤在内的广泛影响。鉴于铜是海洋环境中高度相关的污染物,我们旨在评估血红细胞中DNA链断裂的诱导(使用彗星分析),同时还确定了双壳贝类,Mytilus edulis,暴露于一系列环境现实水平的Cu(18-56μg1〜(-1))5天后。在评估遗传损伤之前,还确定了最大耐受浓度(MTC),发现其最大耐受浓度为(100 ug 1〜(-1)),高于该浓度,可以观察到暴露期间的完全死亡率。除DNA损伤外,还确定了内收肌提取物中谷胱甘肽的水平,各种器官的组织病理学检查(即内收肌,腮和消化腺)以及作为个体水平的生理指标的清除率。此外,还使用ICP-MS测定了水样中组织特异性的积累和铜含量。 56 ug 1〜(-1)Cu对DNA的损伤具有很强的浓度依赖性,谷胱甘肽总量增加了1.8倍。器官的组织学检查显示出性质上明显不同的异常。即使在最低浓度下(即18 ug l〜(-1); P = 0.003),清除率也比对照组显着降低。内收肌(P = 0.012),消化腺(P = 0.008)和腮(P = 0.002)中的铜水平显着高于对照组。这里使用的多生物标志物方法表明,在某些情况下,遗传毒性和较高水平的影响之间存在明确的关系,可以将其用作评估污染物不同短期和长期毒性影响的综合工具。

著录项

  • 来源
    《Ecotoxicology and Environmental Safety》 |2011年第7期|p.1913-1920|共8页
  • 作者单位

    Ecotoxkology Research and Innovation Centre, School of Biomedical and Biological Sciences, University of Plymouth, Plymouth, PL4 8AA, UK;

    Ecotoxkology Research and Innovation Centre, School of Biomedical and Biological Sciences, University of Plymouth, Plymouth, PL4 8AA, UK;

    Ecotoxkology Research and Innovation Centre, School of Biomedical and Biological Sciences, University of Plymouth, Plymouth, PL4 8AA, UK;

    Ecotoxkology Research and Innovation Centre, School of Biomedical and Biological Sciences, University of Plymouth, Plymouth, PL4 8AA, UK;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    copper; genotoxicity; total glutathione; histopathology; clearance rate; biomarkers; bivalve mollusc;

    机译:铜;遗传毒性总谷胱甘肽组织病理学清除率;生物标志物双壳软体动物;
  • 入库时间 2022-08-17 13:26:53

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