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三疣梭子蟹作为生态毒理学实验模型的适用性。

The crab Carcinus maenas as a suitable experimental model in ecotoxicology.

机构信息

Centre for Functional Ecology, Department of Life Sciences, University of Coimbra, Calçada Martim de Freitas, 3000-456 Coimbra, Portugal.

出版信息

Environ Int. 2014 Sep;70:158-82. doi: 10.1016/j.envint.2014.05.018. Epub 2014 Jun 14.

Abstract

Aquatic ecotoxicology broadly focuses on how aquatic organisms interact with pollutants in their environment in order to determine environmental hazard and potential risks to humans. Research has produced increasing evidence on the pivotal role of aquatic invertebrates in the assessment of the impact of pollutants on the environment. Its potential use to replace fish bioassays, which offers ethical advantages, has already been widely studied. Nevertheless, the selection of adequate invertebrate experimental models, appropriate experimental designs and bioassays, as well as the control of potential confounding factors in toxicity testing are of major importance to obtain scientifically valid results. Therefore, the present study reviews more than four decades of published research papers in which the Green crab Carcinus maenas was used as an experimental test organism. In general, the surveyed literature indicates that C. maenas is sensitive to a wide range of aquatic pollutants and that its biological responses are linked to exposure concentrations or doses. Current scientific knowledge regarding the biology and ecology of C. maenas and the extensive studies on toxicology found for the present review recognise the Green crab as a reliable estuarine/marine model for routine testing in ecotoxicology research and environmental quality assessment, especially in what concerns the application of the biomarker approach. Data gathered provide valuable information for the selection of adequate and trustworthy bioassays to be used in C. maenas toxicity testing. Since the final expression of high quality testing is a reliable outcome, the present review recommends gender, size and morphotype separation in C. maenas experimental designs and data evaluation. Moreover, the organisms' nutritional status should be taken into account, especially in long-term studies. Studies should also consider the crabs' resilience when facing historical and concurrent contamination. Finally, experimental temperature and salinity should be harmonised so as to obtain reliable comparisons between different studies. Concerning future reaserch areas, data gathered in the present review reveals that in vitro assays derived from C. maenas are still lacking. Also, a complete C. maenas genome sequencing programme will be essencial for cutting-edge reseach.

摘要

水生生态毒理学广泛关注水生生物与环境污染物相互作用的方式,以确定环境危害和对人类的潜在风险。研究已经提供了越来越多的证据,证明水生无脊椎动物在评估污染物对环境的影响方面起着关键作用。它具有替代鱼类生物测定的潜力,具有伦理优势,已经得到了广泛的研究。然而,选择适当的无脊椎动物实验模型、适当的实验设计和生物测定,以及控制毒性测试中的潜在混杂因素,对于获得科学有效的结果非常重要。因此,本研究回顾了四十多年来发表的研究论文,其中使用绿蟹 Carcinus maenas 作为实验测试生物。一般来说,调查文献表明,绿蟹对广泛的水生污染物敏感,其生物反应与暴露浓度或剂量有关。目前关于绿蟹的生物学和生态学的科学知识以及本综述中发现的大量毒理学研究将绿蟹视为可靠的河口/海洋模型,可用于生态毒理学研究和环境质量评估中的常规测试,特别是在应用生物标志物方法方面。收集的数据为选择在绿蟹毒性测试中使用的适当和可靠的生物测定提供了有价值的信息。由于高质量测试的最终表达是可靠的结果,因此本综述建议在绿蟹实验设计和数据评估中进行性别、大小和形态型分离。此外,应考虑生物体的营养状况,特别是在长期研究中。研究还应考虑到螃蟹在面对历史和同时存在的污染时的恢复能力。最后,应协调实验温度和盐度,以便在不同研究之间进行可靠的比较。关于未来的研究领域,本综述中收集的数据表明,仍然缺乏源自绿蟹的体外测定。此外,完整的绿蟹基因组测序计划对于前沿研究至关重要。

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