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杂食性和肉食性鱼类物种暴露于多组分金属(Cd、Cr、Cu、Ni、Pb 和 Zn)混合物中生物标志物的反应模式。第三部分。

Response patterns of biomarkers in omnivorous and carnivorous fish species exposed to multicomponent metal (Cd, Cr, Cu, Ni, Pb and Zn) mixture. Part III.

机构信息

Nature Research Centre, Akademijos St. 2, LT-08412, Vilnius, Lithuania.

Department of Biochemistry and Molecular Biology, Vilnius University, Life Sciences Center, Saulėtekio av. 7, LT-10223, Vilnius, Lithuania.

出版信息

Ecotoxicology. 2020 Apr;29(3):258-274. doi: 10.1007/s10646-020-02170-y. Epub 2020 Feb 12.

Abstract

Toxicity to fish of multicomponent metal mixtures at maximum-permissible-concentrations (MPC: Cd-0.005, Cr-0.01, Cu-0.01, Ni-0.01, Pb-0.005 and Zn-0.1 mg/L) set for EU inland waters was evaluated using the whole-mixture approach. An extended follow-up study on the biological effects of multicomponent metal mixtures on three ecologically different fish species, i.e. Perca fluviatilis, Rutilus rutilus, and Salmo salar is reported. The aim of this study was to assess response patterns of biomarkers (erythrocytic nuclear abnormalities (ENAs), metal accumulation and metallothioneins) in tissues of fish species after 14-day treatment with multicomponent metal mixtures at MPC and metal mixtures with one of its components at reduced MPC (↓). After treatments with Cu↓ and Cr↓, the lowest amount of Ni was found in all tissues (except the liver) of all fish species tested. After Zn↓ and Pb↓ treatments, the amount of Ni in muscle of all the tested fish species significantly decreased. The highest amounts of Cr in gills and Pb in muscle were detected in all fish species after treatments with Ni↓ and Cd↓ mixtures, respectively. R. rutilus accumulated significantly larger amounts of metals than P. fluviatilis and S. salar. The data obtained show that tissues of the omnivorous R. rutilus exposed to metal mixtures accumulated higher amounts of Cr, Cu, Ni and Zn, while tissues of carnivorous S. salar and P. fluviatilis higher amounts of Cd and Pb. The analysis of ENAs revealed concentration-dependent responses, indicating Cu↓ and Cr↓ treatments as causes of higher geno- and cytotoxicity levels.

摘要

采用全混合物方法评估了在欧盟内陆水域设定的最大允许浓度(MPC:Cd-0.005、Cr-0.01、Cu-0.01、Ni-0.01、Pb-0.005 和 Zn-0.1 mg/L)下多组分金属混合物对鱼类的毒性。本研究报告了一项关于多组分金属混合物对三种生态差异鱼类(即河鲈、虹鳟和大西洋鲑)的生物效应的扩展后续研究。本研究的目的是评估在 MPC 下多组分金属混合物以及金属混合物中一种成分的 MPC 降低(↓)下处理 14 天后,鱼类组织中生物标志物(红细胞核异常(ENAs)、金属积累和金属硫蛋白)的反应模式。在用 Cu↓和 Cr↓处理后,所有测试鱼类的所有组织(肝脏除外)中 Ni 的含量最低。在用 Zn↓和 Pb↓处理后,所有测试鱼类肌肉中的 Ni 含量均显著降低。在用 Ni↓和 Cd↓混合物处理后,所有鱼类的鳃中 Cr 和肌肉中的 Pb 含量最高。与 P. fluviatilis 和 S. salar 相比,杂食性的 R. rutilus 积累的金属量明显更多。获得的数据表明,暴露于金属混合物中的杂食性 R. rutilus 组织积累了更多的 Cr、Cu、Ni 和 Zn,而肉食性 S. salar 和 P. fluviatilis 组织积累了更多的 Cd 和 Pb。ENAs 的分析显示出浓度依赖性的反应,表明 Cu↓和 Cr↓处理是导致更高遗传毒性和细胞毒性水平的原因。

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