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以丹氏无须魮为模型,开展用于快速评估铜对淡水鱼毒性的潜在生物标志物的研究。

Studies on the development of potential biomarkers for rapid assessment of copper toxicity to freshwater fish using Esomus danricus as model.

作者信息

Vutukuru S S, Suma C, Radha Madhavi K, Smitha Pauleena J, Venkateswara Rao J, Anjaneyulu Y

机构信息

Environmental and Molecular Toxicology Laboratory, Centre for Environment, Institute of Science and Technology, Jawaharlal Nehru Technological University, Kukatpally, Hyderabad-500 072, Andhra Pradesh, India.

出版信息

Int J Environ Res Public Health. 2005 Apr;2(1):63-73. doi: 10.3390/ijerph2005010063.

Abstract

Living in an environment that has been altered considerably by anthropogenic activities, fish are often exposed to a multitude of stressors including heavy metals. Copper ions are quite toxic to fish when concentrations are increased in environmental exposures often resulting in physiological, histological, biochemical and enzymatic alterations in fish, which have a great potential to serve as biomarkers. Esomus danricus was chosen as model in the present study and the metabolic rate, gill morphology, total glycogen, total protein, superoxide dismutase and catalase were critically evaluated. The 96h LC50 value was found to be 5.5mg/L (Cu as 1.402 mg/L). Fish groups were separately exposed to lethal (5.5 mg/L) and sub lethal concentrations (0.55 mg/L) of copper sulphate over a period of 96h to examine the subtle effects caused at various functional levels. Controls were also maintained simultaneously. Significant decrease in the metabolic rate (p<0.001) of the fish was observed in both the concentrations studied. Studies employing Automated Video Tracking System revealed gross changes in the architecture of gill morphology like loss, fusion, clubbing of secondary gill lamellae, and detachment of gill rakers following softening of gill shaft in fish under lethal exposures indicating reduced respiratory surface area. Biochemical profiles like total glycogen and total protein in gills and muscle of fish exposed to 5.5 mg/L showed appreciable decrease (p<0.05 to 0.001) from control. Significant inhibition of superoxide dismutase (60.83%), catalase (71.57%) from control was observed in fish exposed to 5.5 mg/L at the end of 96h exposure only. Interestingly, in fish exposed to 0.55 mg/L enzyme activity is not affected except for catalase. Toxic responses evaluated at various functional levels are more pronounced in fish exposed to 5.5 mg/L and these can serve as potential biomarkers for rapid assessment of acute copper toxicity in environmental biomonitoring.

摘要

生活在因人类活动而发生显著改变的环境中,鱼类常常暴露于包括重金属在内的多种应激源。当环境暴露中铜离子浓度增加时,其对鱼类具有相当大的毒性,常常导致鱼类生理、组织学、生化及酶的改变,这些改变很有潜力用作生物标志物。在本研究中选用丹氏似野结鱼作为模型,对其代谢率、鳃形态、总糖原、总蛋白、超氧化物歧化酶和过氧化氢酶进行了严格评估。发现96小时半数致死浓度(LC50)值为5.5毫克/升(以铜计为1.402毫克/升)。将鱼群分别暴露于硫酸铜的致死浓度(5.5毫克/升)和亚致死浓度(0.55毫克/升)下96小时,以检查在各个功能水平上所造成的细微影响。同时也设置了对照组。在所研究的两种浓度下,均观察到鱼类代谢率显著下降(p<0.001)。采用自动视频跟踪系统的研究显示,在致死暴露下,鱼类鳃形态结构出现明显变化,如次级鳃小片缺失、融合、棒状化以及鳃耙在鳃轴软化后脱落,这表明呼吸表面积减小。暴露于5.5毫克/升的鱼类鳃和肌肉中的总糖原和总蛋白等生化指标相较于对照组呈现出明显下降(p<0.05至0.001)。仅在暴露96小时结束时,观察到暴露于5.5毫克/升的鱼类超氧化物歧化酶(60.83%)、过氧化氢酶(71.57%)相较于对照组有显著抑制。有趣的是,暴露于0.55毫克/升的鱼类中,除过氧化氢酶外,酶活性未受影响。在各个功能水平上评估的毒性反应在暴露于5.5毫克/升的鱼类中更为明显,这些反应可作为在环境生物监测中快速评估急性铜毒性的潜在生物标志物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0577/3814698/e1a7e7649c90/ijerph-02-00063f1.jpg

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