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Bioaccumulation-based silver nanoparticle toxicity in Daphnia magna and maternal impacts

机译:基于生物积累的水蚤中银纳米颗粒的毒性及其对母体的影响

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In the present study, we tested whether bioaccumulation in specific tissues of Daphnia magna could explain silver nanoparticle (AgNP) toxicity. Daphnids were exposed to different concentrations of well-suspended AgNPs and AgNO3. The accumulations of Ag in the whole body, gut, and nongut tissues, as well as the mortality of daphnids, were recorded over a period of 7d. Regression analysis showed a higher degree of positive correlation between the concentration of Ag in the nongut tissues than gut tissues and the mortality of daphnids. The results strongly suggested that the toxicity of AgNPs could be better explained in terms of bioaccumulation of AgNPs in the nongut tissues. We further tested the maternal transfer of AgNPs in daphnids into the next generation using radioactive tracers, which were able to detect as low as 1.0 to 3.2% of total accumulated Ag transferred to the neonates. The AgNPs significantly affected the reproduction process during the first 2 broods after exposure, whereas AgNO3 only had significant effects on the first brood. It is possible that AgNPs have longer adverse effects than AgNO3 on the reproduction of Daphnia. The present study identified the sensitive site of AgNP toxic action in daphnids and documented the extent of maternal transfer and the significant influence of AgNPs on the reproduction of daphnids. Environ Toxicol Chem 2017;36:3359-3366. (c) 2017 SETAC
机译:在本研究中,我们测试了大型蚤(Daphnia magna)在特定组织中的生物积累是否可以解释银纳米颗粒(AgNP)的毒性。瑞香鱼暴露于不同浓度的悬浮良好的AgNPs和AgNO3。在7天的时间内记录了Ag在全身,肠道和非肠道组织中的积累,以及水蚤的死亡率。回归分析表明,非肠道组织中的Ag浓度高于肠道组织中的Ag浓度与蚤类动物的死亡率之间具有较高的正相关度。结果强烈表明,AgNPs的毒性可以通过非肠道组织中AgNPs的生物蓄积更好地解释。我们使用放射性示踪剂进一步测试了母亲在水蚤中将AgNPs转移至下一代的能力,该放射性示踪剂能够检测到转移至新生儿的总Ag的低至1.0%至3.2%。 AgNPs在暴露后的前2个育雏中显着影响繁殖过程,而AgNO3仅对第一个育雏有显着影响。 AgNPs对水蚤繁殖的不良影响可能要比AgNO3长。本研究确定了豚鼠中AgNP毒性作用的敏感部位,并记录了母体转移的程度以及AgNPs对豚鼠繁殖的重大影响。 Environ Toxicol Chem 2017; 36:3359-3366。 (c)2017年SETAC

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