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采用多生物标志物方法研究石化污染对笼养海洋贻贝的影响:组织学变化、神经毒性和缺氧应激

Effects of petrochemical contamination on caged marine mussels using a multi-biomarker approach: Histological changes, neurotoxicity and hypoxic stress.

作者信息

Maisano Maria, Cappello Tiziana, Natalotto Antonino, Vitale Valeria, Parrino Vincenzo, Giannetto Alessia, Oliva Sabrina, Mancini Giuseppe, Cappello Simone, Mauceri Angela, Fasulo Salvatore

机构信息

Department of Chemical, Biological, Pharmaceutical and Environmental Sciences, University of Messina, Messina, Italy.

Department of Chemical, Biological, Pharmaceutical and Environmental Sciences, University of Messina, Messina, Italy.

出版信息

Mar Environ Res. 2017 Jul;128:114-123. doi: 10.1016/j.marenvres.2016.03.008. Epub 2016 Mar 31.

Abstract

This work was designed to evaluate the biological effects of petrochemical contamination on marine mussels. Mytilus galloprovincialis, widely used as sentinel organisms in biomonitoring studies, were caged at the "Augusta-Melilli-Priolo" industrial site (eastern Sicily, Italy), chosen as one of the largest petrochemical areas in Europe, and Brucoli, chosen as reference site. Chemical analyses of sediments at the polluted site revealed high levels of PAHs and mercury, exceeding the national and international guideline limits. In mussels from the polluted site, severe morphological alterations were observed in gills, mainly involved in nutrient uptake and gas exchange. Changes in serotonergic and cholinergic systems, investigated through immunohistochemical, metabolomics and enzymatic approaches, were highlighted in gills, as well as onset of hypoxic adaptive responses with up-regulation of hypoxia-inducible factor transcript. Overall, the application of a multi-biomarker panel results effective in assessing the biological effects of petrochemical contamination on the health of aquatic organisms.

摘要

这项工作旨在评估石化污染对海洋贻贝的生物学效应。在生物监测研究中广泛用作指示生物的地中海贻贝,被放置在“奥古斯塔-梅利利-普廖洛”工业场地(意大利西西里岛东部),该场地被选为欧洲最大的石化区域之一,以及被选为参考场地的布鲁科利。对污染场地沉积物的化学分析显示,多环芳烃和汞含量很高,超过了国家和国际指导限值。在来自污染场地的贻贝中,鳃出现了严重的形态改变,主要涉及营养吸收和气体交换。通过免疫组织化学、代谢组学和酶学方法研究发现,鳃中的血清素能和胆碱能系统发生了变化,同时出现了缺氧适应性反应,缺氧诱导因子转录本上调。总体而言,应用多生物标志物组合有效地评估了石化污染对水生生物健康的生物学效应。

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