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首页> 外文期刊>Fish & Shellfish Immunology >Acute and sublethal effects in an Indian major carp Cirrhinus mrigalaTI Acute and sublethal effects in an Indian major carp Cirrhinus mrigala exposed to silver nitrate: Gill Na+/K+-ATPase, plasma electrolytes and biochemical alterations
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Acute and sublethal effects in an Indian major carp Cirrhinus mrigalaTI Acute and sublethal effects in an Indian major carp Cirrhinus mrigala exposed to silver nitrate: Gill Na+/K+-ATPase, plasma electrolytes and biochemical alterations

机译:暴露于硝酸银的印度大鲤鱼Cirrhinus mrigala的急性和亚致死作用:illNa + / K + -ATPase,血浆电解质和生化改变

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摘要

Due to prolonged use of silver in many applications, it enters into the freshwater and affects the aquatic organisms. Fingerlings of Cirrhinus mrigala were exposed to acute and sublethal concentrations of silver nitrate and the alterations of gill Na+/K+-ATPase, plasma electrolytes and biochemical parameters were assessed. The median lethal concentration of silver nitrate to the fish C. mrigala for 96 h was found to be 0.107 mg/l (with 95% confidence limits). 1/10th of LC 50 96 h value (0.0107 mg/l) was selected for sublethal study. During acute treatment branchial Na+/K+-LATPase activity was inhibited approximately 44.34% after 96 h of exposure. In sublethal treatment, silver nitrate could not produce a significant change in the activity of the enzyme at the end of 7th day. However, after 14th day, significant (p < 0.05) decrease was noted showing 22.52%-49.11% in rest of the study period. Silver intoxication resulted hyponatremia, hypokalemia, hypochloremia, and hypoproteinemia in both the treatments. Despite the decrease in these parameters, plasma glucose level was found to be increased in both the treatments to endure the silver toxicity. We suggest that the alterations in branchial Na+/K+-ATPase activity, plasma electrolytes, and biochemical parameters of fish may be useful in environmental biomonitoring and to assess the health of fish in freshwater habitat contaminated with silver
机译:由于在许多应用中长期使用银,银会进入淡水并影响水生生物。 rig鱼的鱼种暴露于急性和亚致死浓度的硝酸银中,并评估ill Na + / K + -ATPase,血浆电解质和生化参数的变化。发现在96个小时内,鱼类C. mrigala的硝酸银的致死浓度中值为0.107 mg / l(置信限为95%)。 LC 1 50 96 h值(0.0107 mg / l)的1/10被选择用于亚致死研究。在急性治疗过程中,暴露96小时后,Na + / K + -LATPase的分支酶活性被抑制约44.34%。在亚致死处理中,硝酸银在第7天结束时不会产生明显的酶活性变化。然而,在第14天后,注意到显着(p <0.05)下降,在其余研究期间显示为22.52%-49.11%。在两种治疗中,银中毒均导致低钠血症,低钾血症,低氯血症和低蛋白血症。尽管这些参数降低,但是在两种治疗中发现血浆葡萄糖水平均增加,以忍受银毒性。我们建议鱼类Na + / K + -ATPase活性,血浆电解质和生化参数的改变可能对环境生物监测和评估受银污染的淡水生境中鱼类的健康有用。

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