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Mechanism of concentration addition toxicity: they are different for nonpolar narcotic chemicals, polar narcotic chemicals and reactive chemicals

机译:mechanism of concentration addition toxicity: they are different for nonpolar narcotic chemicals, polar narcotic chemicals and reactive chemicals

摘要

According to the toxicity mechanism of the individual chemicals, the concentration addition toxicity mechanism is revealed for nonpolar-narcotic-chemical mixtures, polar-narcotic-chemical mixtures and reactive-chemical mixtures, respectively. For nonpolar-narcotic-chemical mixtures, the partitioning of individual chemicals from water to biophase was determined, and the result shows that their concentration additive effect results from no competitive partitioning among individual chemicals. For polar-narcotic-chemical mixtures, their toxicity are contributed by two factors (the total baseline toxicity and the hydrogen bond donor activity of individual chemicals), and it is the concentration additive effect for either of these two factors that leads to their concentration addition toxicity. In addition, the interactions between the reactive chemicals and the biological macromolecules are discussed thoroughly. The results suggest that the net effect of these interactions is zero, and it is this zero net effect that leads to the concentration addition toxicity mechanism for reactive-chemical mixtures. (C) 2003 Elsevier Ltd. All rights reserved.
机译:根据各化学物质的毒性机理,揭示了非极性-化学-化学混合物,极性-化学-化学混合物和反应性-化学混合物的浓度加成毒性机理。对于非极性麻醉药品混合物,确定了各个化学药品从水到生物相的分配,结果表明,它们的浓度加和效应是由于各个化学药品之间没有竞争性分配而产生的。对于极性麻醉剂-化学混合物,其毒性由两个因素(总基线毒性和各个化学物质的氢键供体活性)共同作用,并且这两个因素之一的浓度加和效应导致其浓度增加毒性。此外,对反应性化学物质与生物大分子之间的相互作用进行了详尽的讨论。结果表明,这些相互作用的净效应为零,正是这种零净效应导致了反应性化学混合物的浓度增加毒性机制。 (C)2003 Elsevier Ltd.保留所有权利。

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