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三氯生毒性改变了 Pangasianodon hypophthalmus(Sauvage,1878)的行为和血液学参数以及重要的抗氧化和神经酶。

Triclosan toxicity alters behavioral and hematological parameters and vital antioxidant and neurological enzymes in Pangasianodon hypophthalmus (Sauvage, 1878).

机构信息

Aquatic Environment and Health Management Division, ICAR-Central Institute of Fisheries Education, Mumbai, 400061, India.

Aquatic Environment and Health Management Division, ICAR-Central Institute of Fisheries Education, Mumbai, 400061, India.

出版信息

Aquat Toxicol. 2018 Sep;202:145-152. doi: 10.1016/j.aquatox.2018.07.009. Epub 2018 Jul 20.

Abstract

Triclosan and its metabolites are detected in a diverse aquatic environment and are major concerns for various aquatic organisms. The present study investigated the impact of acute and sub-lethal exposure of triclosan on behaviour, activities of acetylcholinesterase and selected antioxidant enzymes, haematological and serum gas-electrolyte parameters of Pangasianodon hypophthalmus. The 96 h LC of triclosan for P. hypophthalmus was estimated as 1458 μg L. Further, sub-lethal triclosan exposure to 1/15th (97 μg L), 1/10th (145 μg L) and 1/5th (291 μg L) of 96 h LC concentration for a period of 45 days lead to decrease in total erythrocyte count, haemoglobin content and packed cell volume of blood while total leukocyte count increased significantly (p < 0.05) as compared to control. A concentration-dependent increase in the serum chloride and decrease in partial pressure of oxygen in blood serum was noted on 45th day. An increased activity of catalase and superoxide dismutase in gill and liver tissues and inhibition of acetylcholinesterase activity in brain was observed on 15th, 30th and 45th day of exposure which was dependent on both - concentration of triclosan and duration of exposure. A significant high activity of glutathione-S-transferase in gill and liver tissue was observed in triclosan exposed groups in comparison to control during the experimental period. The study shows that long-term sub-lethal exposure of triclosan to fish can lead to several physiological alterations such as enzymatic scavenging of oxygen radicals and the normal neurological functions mediated by the enzyme acetylcholinesterase. With increasing anthropogenic activity, the study provides a convincing evidence for the necessity of a regulated use and safer disposal of triclosan to the environment.

摘要

三氯生及其代谢物在各种水生环境中被检测到,是各种水生生物的主要关注点。本研究调查了急性和亚致死暴露于三氯生对 Pangasianodon hypophthalmus 行为、乙酰胆碱酯酶和选定抗氧化酶活性、血液学和血清气体电解质参数的影响。P. hypophthalmus 的三氯生 96 小时 LC 估计为 1458μg/L。此外,亚致死浓度的三氯生暴露于 1/15(97μg/L)、1/10(145μg/L)和 1/5(291μg/L)的 96 小时 LC 浓度,暴露时间为 45 天,导致总红细胞计数、血红蛋白含量和血液红细胞压积下降,而总白细胞计数显著增加(p<0.05)与对照组相比。第 45 天,血清氯浓度增加,血清中氧气分压降低。在第 15、30 和 45 天暴露期间,鳃和肝组织中过氧化氢酶和超氧化物歧化酶的活性增加,大脑中乙酰胆碱酯酶的活性受到抑制,这取决于三氯生的浓度和暴露时间。在暴露期间,与对照组相比,鳃和肝组织中谷胱甘肽-S-转移酶的活性显著升高。研究表明,鱼类长期亚致死暴露于三氯生会导致多种生理变化,如氧自由基的酶促清除和酶乙酰胆碱酯酶介导的正常神经功能。随着人为活动的增加,本研究为有必要对三氯生进行规范使用和更安全的处置以保护环境提供了令人信服的证据。

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