Il'ichev Pacific Oceanological Institute, Far Eastern Branch, Russian Academy of Sciences (POI FEB RAS), Vladivostok, Russia.
Il'ichev Pacific Oceanological Institute, Far Eastern Branch, Russian Academy of Sciences (POI FEB RAS), Vladivostok, Russia.
Environ Toxicol Pharmacol. 2019 Aug;70:103189. doi: 10.1016/j.etap.2019.04.010. Epub 2019 Apr 30.
The aim of this study was to investigate the sensitivity of the marine scallop Mizuhopecten yessoensis to different copper concentrations (10 and 30 μgl-1) in the prespawning period. Reaction of the scallop to this effect was evaluated by a set of biomarkers, including general metabolism enzymes (acid and alkaline phosphatase activities - AcPase, ALP), and oxidative stress parameters (catalase antioxidant enzyme activity - CAT and levels of damage for DNA, lipids and proteins). Experiment results show that when copper is accumulated in tissues, enzyme activity changes are similar and have phasic character. The dynamics of these changes depends on the copper accumulation levels in tissues. Unlike enzyme reaction to copper accumulation, oxidative damage of biologic molecules changes in tissues in different ways. Copper enters into a scallop's organism, mainly through the gills, where there is a more expressed reaction of biomarkers compared to the digestive gland.
本研究旨在探讨海洋扇贝 M. yessoensis 在产卵前期对不同铜浓度(10 和 30μg/L)的敏感性。通过一系列生物标志物评估扇贝对此影响的反应,包括一般代谢酶(酸性和碱性磷酸酶活性 - AcPase、ALP)和氧化应激参数(过氧化氢酶抗氧化酶活性 - CAT 以及 DNA、脂质和蛋白质损伤水平)。实验结果表明,当铜在组织中积累时,酶活性变化相似且具有阶段性特征。这些变化的动态取决于组织中铜的积累水平。与酶对铜积累的反应不同,生物分子的氧化损伤在组织中的变化方式不同。铜主要通过鳃进入扇贝体内,与消化腺相比,鳃中的生物标志物反应更为明显。