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首页> 外文期刊>Environmental Science & Technology >Mixture Toxicity of Reactive Chemicals by Using Two Bacterial Growth Assays as Indicators of Protein and DNA Damage
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Mixture Toxicity of Reactive Chemicals by Using Two Bacterial Growth Assays as Indicators of Protein and DNA Damage

机译:通过两种细菌生长试验作为蛋白质和DNA损伤的指示剂,对活性化学品的混合毒性

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摘要

The mixture toxicity of reactive chemicals was investigated with a set of bioanalytical tests that quantify not only the toxic effects but also allow the identification of the preferred target of reactive chemicals in bacterial cells.Softer electrophiles such as acrylates react preferentially with thiol groups in proteins and peptides,and harder electrophiles such as epoxides preferentially attack DNA.In addition,some compounds,e.g.,benzyl chloride,have no preference for a biological target and damage both DNA and proteins.A thiophenol was used as a model compound representing nucleophiles.We explored if the paradigms of mixture toxicity also hold true for reactive chemicals.Compounds with the same targets and the same modes of action should act concentration additive in mixtures,and compounds with different modes of action should act according to the concept of independent action.In addition,we investigated the potential for interaction of compounds of mixtures of electrophiles or electrophiles plus nucleophiles,which might lead to synergistic or antagonistic effects.The toxicity of mixtures of electrophiles with a single preferred target was consistent with the prediction for concentration addition.Unfortunately,the predictions for independent action did not differ much from those for concentration addition; therefore it was not possible to differentiate between these two models.Mixtures of two groups with different preferred target sites clearly showed concentration addition.In contrast,mixtures of compounds with multiple targets,i.e.,compounds that show nonspecific reactivity toward any biological nucleophile,exhibited effects that lay distinctly between the predictions for concentration addition and independent action.We observed neither synergism (higher toxicity than predicted by concentration addition) nor antagonism (lower toxicity than predicted by independent action) for mixtures of electrophiles.Binary combinations of different electrophiles with the nucleophile 4-chlorothiophenol yielded smaller effects than those expected from the prediction for independent action.The degree of antagonism was correlated with the reaction rate constant of the electrophile with the thiol group of glutathione,which indicates that the interaction between the mixture components occur in the toxicokinetic phase and is purely a result of chemical reactivity between the mixture components.Overall,we conclude that the concepts of mixture toxicity apply not only for baseline toxicity and receptor-mediated mechanisms,as has been shown in a large number of studies,but also for reactive mechanisms of toxicity,provided that one has checked beforehand that no chemical reactions occur between the mixture components.
机译:通过一系列生物分析测试研究了反应性化学品的混合物毒性,该试验不仅量化了毒性作用,而且还可以确定细菌细胞中反应性化学品的首选靶标。较软的亲电子试剂(例如丙烯酸酯)优先与蛋白质和蛋白质中的巯基反应。肽和更坚硬的亲电试剂(例如环氧化物)会优先攻击DNA。此外,某些化合物(例如苄基氯)对生物学目标没有偏爱,并且会破坏DNA和蛋白质。苯酚被用作代表亲核试剂的模型化合物。如果混合物毒性的范例也适用于反应性化学品,具有相同目标和相同作用方式的化合物应在混合物中起浓度添加剂的作用,而具有不同作用方式的化合物应根据独立作用的概念起作用。 ,我们研究了亲电子或电子混合物的化合物相互作用的潜力亲核试剂与亲核试剂可能会产生协同或拮抗作用。具有单个优选靶标的亲电试剂混合物的毒性与添加浓度的预测一致。不幸的是,独立作用的预测与添加浓度的预测并没有太大差异;因此,不可能区分这两种模型。具有不同优选靶位的两组混合物明显显示出浓度增加。相反,具有多个靶的化合物(即对任何生物亲核试剂显示非特异性反应性的化合物)的混合物均表现出了作用。在亲电试剂的混合物中,我们既未观察到协同作用(毒性高于通过浓度添加剂预测的毒性),也未观察到拮抗作用(毒性低于通过独立作用预测的毒性)。不同亲电试剂与亲核试剂的二元组合4-氯苯硫酚产生的作用小于独立作用预测所预期的作用。拮抗程度与亲电试剂与谷胱甘肽硫醇基的反应速率常数相关,这表明混合物组分之间的相互作用发生在毒藤中。总的来说,我们得出的结论是,混合物毒性的概念不仅适用于基线毒性和受体介导的机制,正如许多研究表明的那样,对于毒性的反应机理,只要事先检查混合物成分之间不发生化学反应即可。

著录项

  • 来源
    《Environmental Science & Technology》 |2005年第22期|p.8753-8761|共9页
  • 作者单位

    Department of Environmental Toxicology,Swiss Federal Institute for Aquatic Sciences and Technology Eawag,CH-8600 Dubendorf,Switzerland;

    Department of Environmental Toxicology,Swiss Federal Institute for Aquatic Sciences and Technology Eawag,CH-8600 Dubendorf,Switzerland;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 环境化学;
  • 关键词

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