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通过多效应残留分析(MERA)表征二甲基亚砜(DMSO)与农药二元混合物的毒性相互作用

[Characterizing the toxicity interaction of the binary mixture between DMSO and pesticide by the multi-effect residual analysis (MERA)].

作者信息

Huo Xiang-Chen, Liu Shu-Shen, Zhang Jing, Zhang Jin

机构信息

Key Laboratory of Yangtze River Water Environment, Ministry of Education, College of Environmental Science and Engineering, Tongji University, Shanghai 200092, China.

出版信息

Huan Jing Ke Xue. 2013 Jan;34(1):257-62.

Abstract

Three groups of binary mixtures between dimethylsulfoxide (DMSO) and three widely used pesticides, dimethoate (DIM), dichlorvos (DIC), and metalaxyl (MET), were respectively constructed by using the direct equipartition ray design (EquRay). The luminescent inhibition toxicities of single chemical and binary mixtures to Vibrio qinghaiensis sp. -Q67 were determined by the microplate toxicity analysis (MTA). Selecting the concentration addition (CA) model as an additive reference, we developed a new multi-effect residual analysis (MERA) to quantitatively characterize the deviation of the observed toxicity from that predicted by the CA model, i. e. the degree of toxicity interaction. It was shown that the toxicity interactions between DMSO and pesticide were dominated by antagonism, and the highest antagonism distributed between -23% and -15%. The concentration ranges where antagonism existed and the degree of antagonism were influenced by the components in the mixture, the concentration ratios of the components, and the effect level. A comparison of the MERA with the conventional isobologram and the extended toxic unit summation revealed that the MERA characterizes the degree of toxicity interaction in the view of effect, with less limitation by different concentration ratios or effect levels. Therefore, the MERA can be used to evaluate the complex toxicity interactions taking place in binary mixtures.

摘要

采用直接等份射线设计(EquRay)分别构建了二甲基亚砜(DMSO)与三种广泛使用的农药(乐果(DIM)、敌敌畏(DIC)和甲霜灵(MET))的三组二元混合物。通过微孔板毒性分析(MTA)测定了单一化学品和二元混合物对青海弧菌sp.-Q67的发光抑制毒性。选择浓度相加(CA)模型作为加性参考,我们开发了一种新的多效应残留分析(MERA),以定量表征观察到的毒性与CA模型预测的毒性之间的偏差,即毒性相互作用程度。结果表明,DMSO与农药之间的毒性相互作用以拮抗作用为主,最高拮抗作用分布在-23%至-15%之间。拮抗作用存在的浓度范围和拮抗程度受混合物中的成分、成分的浓度比和效应水平的影响。将MERA与传统的等效线图和扩展毒性单位总和进行比较,结果表明,MERA从效应角度表征了毒性相互作用程度,受不同浓度比或效应水平的限制较小。因此,MERA可用于评估二元混合物中发生的复杂毒性相互作用。

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