Experimental modeling of the acute toxicity and cytogenotoxic fate of composite mixtures of chromate, copper and arsenate oxides associated with CCA preservative using Clarias gariepinus (Burchell 1822)

Olukunle S. Fagbenro, C. Alimba, A. A. Bakare
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引用次数: 5

Abstract

Concurrent occurrence of chromium (Cr), copper (Cu) and arsenic (As) from chromated copper arsenate (CCA) wood preservative in aquatic ecosystems demands that their joint-actions in eliciting toxic effects be assessed for adequate understanding of the health risk they may pose to biota. Clarias gariepinus was exposed to As2O3 , CrO3 and CuO and their composite mixtures (1:1 and 1:1:1) at various concentrations (0 – 600 mg/L) for 96-h to determine the acute toxicity using OECD (1992) protocol. C. gariepinus was then exposed to sub-lethal concentrations corresponding to 6.25, 12.5, 25.0, 50.0 and 100% of the 96-h LC50 for 7 days to assess the cytogenotoxic effects using piscine micronucleus (MN) test. The 96-h LC50 showed that the metals/metalloid demonstrated differential interactions in a concentration dependent pattern. The 96-h LC50 showed that Cr was the most toxic while Cu and As:Cu were indeterminate (Cr > Cr:Cu > As:Cr > As > As:Cr:Cu > Cu = As:Cu indeterminate). Isobologram and synergistic ratio (SR) models predicted antagonistic interaction between Cu:Cr and As:Cr and synergism between As:Cu in the causation of morbidity and mortality of C. gariepinus. Interaction factor model predicted antagonism as common interactive mechanism among the metal/metalloid mixtures in the induction of MN and abnormal nuclear erythrocytes in C. gariepinus. Predicted interactions among the three metals/ metalloid were largely antagonism and synergism towards the induction of acute toxicity and cytogenotoxicity. The models employed herein may be useful in establishing environmental safe limits for mixtures of metals/metalloids against the induction of acute toxicity and DNA damage in lower aquatic vertebrates.
使用Clarias gariepinus对与CCA防腐剂相关的铬酸盐、铜和砷酸盐氧化物复合混合物的急性毒性和细胞基因毒性结局进行实验建模(Burchell 1822)
铬化砷酸铜(CCA)木材防腐剂在水生生态系统中同时存在铬(Cr)、铜(Cu)和砷(As),需要评估它们在引发毒性效应方面的联合作用,以充分了解它们可能对生物群构成的健康风险。采用OECD(1992)方案,将不同浓度(0 - 600 mg/L)的As2O3、CrO3和CuO及其复合混合物(1:1和1:1:1)暴露于Clarias gariepinus中96小时,以确定其急性毒性。分别以96 h LC50的6.25、12.5、25.0、50.0和100%亚致死浓度对加里滨棘鱼进行7 d的细胞基因毒性试验。96 h LC50表明,金属/类金属表现出浓度依赖模式的差异相互作用。96 h LC50显示Cr毒性最大,Cu和As:Cu不确定(Cr > Cr:Cu > As:Cr > As > As:Cr:Cu > Cu = As:Cu不确定)。等线图和协同比(SR)模型预测了Cu:Cr和As:Cr之间的拮抗相互作用以及As:Cu之间的协同作用在引起加里平螺旋体发病和死亡中的作用。相互作用因子模型预测了金属/类金属混合物在诱导鸡淋巴细胞MN和核红细胞异常中的共同相互作用机制为拮抗。预测三种金属/类金属之间的相互作用主要是拮抗和协同作用,以诱导急性毒性和细胞遗传毒性。本文采用的模型可能有助于建立金属/类金属混合物的环境安全限值,以防止在低等水生脊椎动物中诱发急性毒性和DNA损伤。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
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