Interuniversity Consortium of Marine Biology of Leghorn "G. Bacci", 57128 Livorno, Italy.
Department of Biology & Centre for Environmental and Marine Studies (CESAM), University of Aveiro, 3810-193 Aveiro, Portugal.
Comp Biochem Physiol C Toxicol Pharmacol. 2019 Sep;223:71-77. doi: 10.1016/j.cbpc.2019.05.007. Epub 2019 May 23.
The importance of trace elements in ecotoxicological investigations is a well-known issue when monitoring polluted areas such as commercial harbors. Copper represents one of the most common metal contaminants, often detected in these areas as it is widely employed in various fields and has many sources of inflow in the marine environment. Pachygrapsus marmoratus is a widespread intertidal crab species that has been extensively studied in ecology, ethology and population genetics. Ecotoxicological studies have also been performed, exclusively on the adult stage. In the present study we investigated the mortality and biochemical (oxidative stress and neurotoxicity) responses of P. marmoratus larvae exposure to environmental relevant concentration of copper. Results showed dose-dependent responses in terms of larval mortality, with a calculated LC value of 0.5 mg/L of Cu. The LC concentration was used as the starting point for subsequent biochemical response evaluation. Results also demonstrated dose-dependent activation of antioxidant systems assuming a compensatory antioxidant activity to prevent higher cellular damage when larvae were exposed to the highest concentrations of copper. Moreover, a significant enhancement of neurotransmitter activities was observed, assuming a possible direct interaction of copper with the enzymes or an increase of free copper ion aliquot into the cells.
在监测商业港口等污染地区时,微量元素在生态毒理学研究中的重要性是一个众所周知的问题。铜是最常见的金属污染物之一,由于它在许多领域被广泛应用,并且在海洋环境中有许多流入的来源,因此经常在这些地区被检测到。大理石关公蟹是一种广泛分布的潮间带蟹类,在生态学、行为学和种群遗传学方面已经得到了广泛的研究。生态毒理学研究也仅在成体阶段进行过。在本研究中,我们研究了环境相关浓度铜对大理石关公蟹幼虫的死亡率和生化(氧化应激和神经毒性)反应的影响。结果表明,幼虫死亡率呈剂量依赖性,铜的 LC 值为 0.5mg/L。LC 浓度被用作随后生化反应评估的起点。结果还表明,抗氧化系统的激活呈剂量依赖性,假设当幼虫暴露于最高浓度的铜时,抗氧化活性的增强是一种补偿性的抗氧化活性,以防止更高的细胞损伤。此外,还观察到神经递质活性的显著增强,这可能假设铜与酶的直接相互作用或细胞内游离铜离子份额的增加。