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首页> 外文期刊>Chemosphere >Uptake, accumulation and depuration of sodium perchlorate and sodium arsenate in zebrafish (Danio rerio)
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Uptake, accumulation and depuration of sodium perchlorate and sodium arsenate in zebrafish (Danio rerio)

机译:斑马鱼(Danio rerio)中高氯酸钠和砷酸钠的吸收,积累和净化

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In toxicokinetics studies, interactions between chemicals in mixtures has been largely neglected. This study examines a mixture of perchlorate and arsenate because (1) they have the potential to co-occur in contaminated aquatic habitats, and (2) a previous study by the authors found possible toxicological interactive effects. In the present study, zebrafish (Danio rerio) were exposed to two concentrations of sodium perchlorate (10 and 100 mg l~(-1)), sodium arsenate (1 and 10 mg l~(-1)), and the mixture-sodium perchlorate + sodium arsenate (10 + 1 mg l~(-1) and 100 + 10 mg l~(-1) Na_2HAsO_4-high mixture) for 90 d. Their uptake and accumulation by zebrafish was evaluated at 10, 30, 60, and 90 d. In addition, depuration was examined at 1, 3, and 5 d after cessation of the exposure. The uptake of either chemical was concentration-dependent, with significantly higher uptake at high concentrations at either exposure interval. In contrast, there was no significant difference in whole body residue between single chemicals and the corresponding mixture except for 100 mg l~(-1) sodium arsenate at 90 d. However, there was increasing accumulation over time at the high concentration of either chemical alone and their mixture, and this increasing trend was more pronounced in the single chemical exposures than in the mixture. At the concentrations tested in the current study, both chemicals reduced the uptake but enhanced the depuration of the other chemical from the zebrafish. This study represents the first examination of the interaction of two anions-perchlorate and arsenate with respect to toxicokinetics.
机译:在毒物动力学研究中,混合物中化学物质之间的相互作用已被大大忽略。这项研究检查了高氯酸盐和砷酸盐的混合物,因为(1)它们有可能在受污染的水生生境中共同存在,并且(2)作者先前的研究发现可能的毒理学相互作用。在本研究中,斑马鱼(Danio rerio)暴露于两种浓度的高氯酸钠(10和100 mg l〜(-1)),砷酸钠(1和10 mg l〜(-1)),以及以下混合物:高氯酸钠+砷酸钠(10 + 1 mg l〜(-1)和100 + 10 mg l〜(-1)Na_2HAsO_4-高混合物)90 d。在10、30、60和90 d时评估斑马鱼对它们的摄取和积累。另外,在停止暴露后1、3和5天检查净化。任一种化学物质的吸收都是浓度依赖性的,在任何一种暴露间隔的高浓度下,其吸收均明显较高。相反,在90 d时,除了100 mg l〜(-1)砷酸钠外,单一化学物质与相应混合物之间的全身残留量无显着差异。但是,在单独的一种化学品及其混合物的高浓度下,随着时间的推移积累的增加,并且这种增加的趋势在单一化学品暴露中比在混合物中更为明显。在当前研究中测试的浓度下,两种化学物质都减少了摄取,但增强了另一种化学物质从斑马鱼中的净化。这项研究代表了对两种高氯酸根和砷酸根在毒物动力学方面相互作用的首次检验。

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