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大型溞体内 TiO2 纳米颗粒聚集体的毒性和生物累积。

Toxicity and bioaccumulation of TiO2 nanoparticle aggregates in Daphnia magna.

机构信息

Department of Civil, Environmental, and Sustainable Engineering, Arizona State University, USA.

出版信息

Chemosphere. 2010 Jan;78(3):209-15. doi: 10.1016/j.chemosphere.2009.11.013. Epub 2009 Dec 5.

Abstract

Little is known about the potential ecotoxicity of engineered nanoparticles (NPs) to aquatic organisms. To carefully address this issue, we conducted a comprehensive toxicity assessment, including modified acute (72h) and chronic (21d) toxicity tests as well as nTiO(2) accumulation analysis using Daphnia magna as a model organism. We found that nTiO(2) exerted minimal toxicity to daphnia within the traditional 48h exposure time, but caused high toxicity when the exposure time was extended to 72h. This demonstrated that exposure duration may be a contributing factor in NP-mediated toxicity. Moreover, upon chronic exposure to nTiO(2) for 21d, daphnia displayed severe growth retardation and mortality, as well as reproductive defects. Interestingly, a significant amount of nTiO(2) was found accumulated in daphnia. However, these daphnia displayed difficulty in eliminating nTiO(2) from their body, presenting increased bioconcentration factor (BCF) values. This high level of bioaccumulation may interfere with food intake and ultimately affect growth and reproduction. In summary, long-term exposure of aquatic organisms to nTiO(2) may alter the growing status of these organisms at both individual and population levels, posing risks to aquatic ecosystems.

摘要

目前对于工程纳米粒子(NPs)对水生生物的潜在生态毒性知之甚少。为了仔细研究这个问题,我们进行了全面的毒性评估,包括使用大型溞作为模式生物进行改良的急性(72h)和慢性(21d)毒性测试以及 nTiO(2) 积累分析。我们发现 nTiO(2) 在传统的 48h 暴露时间内对大型溞几乎没有毒性,但暴露时间延长至 72h 时会产生高毒性。这表明暴露时间可能是 NP 介导的毒性的一个影响因素。此外,在慢性暴露于 nTiO(2) 21d 后,大型溞表现出严重的生长迟缓、死亡率和生殖缺陷。有趣的是,发现大量的 nTiO(2) 在大型溞体内积累。然而,这些大型溞难以将 nTiO(2)从体内排出,呈现出增加的生物浓缩系数(BCF)值。这种高水平的生物积累可能会干扰食物摄入,最终影响生长和繁殖。总之,水生生物长期暴露于 nTiO(2)可能会改变这些生物在个体和种群水平上的生长状况,对水生生态系统构成风险。

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