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吡虫啉、镉及其组合对大型溞的氧化和渗透调节作用。

Oxidative and osmoregulatory effects of imidacloprid, cadmium, and their combinations on Daphnia magna.

机构信息

Çukurova University, Biotechnology Center, Adana, Turkey.

Çukurova University, Biotechnology Center, Adana, Turkey; Çukurova University, Vocational School of Imamoglu, Adana, Turkey.

出版信息

Environ Toxicol Pharmacol. 2022 Oct;95:103963. doi: 10.1016/j.etap.2022.103963. Epub 2022 Aug 24.

Abstract

Oxidative stress and osmoregulatory system damage-inducing potential of binary mixtures of neonicotinoid insecticide imidacloprid (IMI) and Cd in Daphnia magna were evaluated. Animals were subjected to subchronic (7 days) and acute (48 h) of IMI and Cd effects with single and binary mixtures. ATPase and antioxidant enzyme activities with lipid peroxidation were measured. Morphometric characteristics were also evaluated. Response patterns showed variability due to the duration, concentration, and toxicant type. While the enzyme activities mostly showed a decreasing trend upon the subchronic IMI effect, there was an increasing trend after the Cd. Declined enzyme activities were more pronounced with the acute higher IMI+Cd exposure. Ca-ATPase and CAT were the most sensitive biomarkers in the toxicity response. IMI+Cd exposures are appeared to increase their toxic effects due to their oxidative potential. ATPase inhibition and antioxidant enzyme alterations with a decrease in morphometric characteristics in Daphnia even at their low concentrations of IMI and Cd show evidence of their toxicities on aquatic life. It was emphasized that investigating the combined effects of toxicants at their environmental level based on the multi-biomarker approach is essential in toxicity evaluation.

摘要

评估了新烟碱类杀虫剂吡虫啉(IMI)和 Cd 在大型溞(Daphnia magna)中二元混合物的氧化应激和渗透调节系统损伤诱导潜力。用单一和二元混合物对动物进行亚慢性(7 天)和急性(48 h)的 IMI 和 Cd 作用。测量了 ATP 酶和抗氧化酶活性以及脂质过氧化。形态特征也进行了评估。由于持续时间、浓度和毒物类型的不同,反应模式表现出可变性。虽然亚慢性 IMI 作用下大多数酶活性呈下降趋势,但 Cd 后呈上升趋势。急性高 IMI+Cd 暴露后,酶活性下降更为明显。Ca-ATP 酶和 CAT 是毒性反应中最敏感的生物标志物。由于其氧化潜力,IMI+Cd 暴露似乎增加了它们的毒性作用。即使在低浓度的 IMI 和 Cd 下,ATP 酶抑制和抗氧化酶改变以及大型溞形态特征的减少表明它们对水生生物具有毒性。强调指出,基于多生物标志物方法,在环境水平上研究有毒物质的联合效应对于毒性评估至关重要。

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