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硫酸铜会影响尼罗罗非鱼(Oreochromis niloticus)心肌细胞的结构和收缩功能。

Copper sulfate affects Nile tilapia (Oreochromis niloticus) cardiomyocytes structure and contractile function.

机构信息

Laboratory of Zoophysiology and Comparative Biochemistry, Department of Physiological Sciences, Center of Biological Sciences and Health, Federal University of São Carlos- UFSCar, Via Washington Luís km 235, São Carlos, SP 13.565-905, Brazil.

出版信息

Ecotoxicology. 2012 Apr;21(3):783-94. doi: 10.1007/s10646-011-0838-3. Epub 2011 Dec 10.

Abstract

Copper sulfate (CuSO(4))is an inorganic chemical product worldwide used as an algaecide and a fungicide in aquaculture and agriculture and being discharged into freshwater environments where it can affect the freshwater fauna, especially fishes. The impact of copper on fish cardiac function was analyzed in two groups of Nile tilapias, Oreochromis niloticus (control group and group exposed to 1 mg l(-1) of CuSO(4) for 96 h). Structural and ultra-structural changes were studied and related to perturbations of the inotropic and chronotropic responses of ventricle strips. Fish of Cu exposed group did not show significant alterations in the medium diameter and in the percentage of collagen in the cardiac myocytes when evaluated through the light microscope. However, the ultrastructural analysis revealed cellular swelling followed by mitochondrial swelling. The myofibrils did not show significant variations among groups. Force contraction was significantly decreased, and rates of time to tension increase (contraction) and decrease (relaxation) were significantly augmented after copper exposure. The results suggest that the copper sulfate impairs the oxidative mitochondrial function and consequently alters the cardiac performance of this species.

摘要

硫酸铜(CuSO4)是一种无机化学品,在全球范围内被用作水产养殖和农业中的杀藻剂和杀菌剂,并被排放到淡水环境中,从而影响淡水动物群,尤其是鱼类。本文分析了铜对两种尼罗罗非鱼(对照组和暴露于 1mg/L CuSO496h 的实验组)心脏功能的影响。研究了结构和超微结构的变化,并与心室条带的变力和变时反应的扰动相关。通过光学显微镜评估,暴露于铜的鱼的心肌细胞的中等直径和胶原百分比没有显示出明显的变化。然而,超微结构分析显示出细胞肿胀,随后是线粒体肿胀。各组的肌原纤维没有明显变化。铜暴露后,力收缩显著降低,张力增加(收缩)和减少(松弛)的速率显著增加。结果表明,硫酸铜会损害氧化线粒体功能,从而改变该物种的心脏功能。

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