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成年和幼体海湾鲱鱼中富勒烯水溶液的毒性

Toxicity of aqueous fullerene in adult and larval Fundulus heteroclitus.

作者信息

Blickley Twyla Michelle, McClellan-Green Patricia

机构信息

Division of Marine Sciences and Conservation, Duke University Marine Lab, Beaufort, North Carolina 28516, USA.

出版信息

Environ Toxicol Chem. 2008 Sep;27(9):1964-71. doi: 10.1897/07-632.1.

Abstract

Aqueous suspensions of fullerene aggregates (aqua-nC60) were used to investigate the movement of carbon-based nanomaterials in a marine water column and to determine their effects on different life stages of a marine teleost. Fullerene aggregates formed precipitates as a result of mixing in natural seawater, and levels of aqua-nC60 were significantly increased in bottom waters after 24 h. Exposure of Fundulus heteroclitus embryos, larvae, and adults to increasing concentrations of aqua-nC60 resulted in very little mortality, and no median lethal concentrations could be calculated at < or = 10 mg/L. Aggregates of aqua-nC60 did adhere to the chorion but did not affect development of the embryos or their hatching success. Movements of aqua-nC60 through the chorion and into the embryo tended to increase with higher exposure levels; however, the concentrations were extremely low and did not differ significantly. Larvae exposed to increasing concentrations of aqua-nC60 exhibited a significant dose-dependent increase in total glutathione (GSH). This was accompanied by a decreasing trend in lipid peroxidation (LPO), but LPO was not statistically different between treatments. Adult F. heteroclitus exposed to increasing concentrations of aqua-nC60 exhibited an increase in total GSH in liver tissue but not in the gill. No significant effects on LPO were observed in either tissue. Thus, we conclude that aqua-nC60 affects the oxidative stress response of F. heteroclitus and that increased antioxidant defenses provide some physiological tolerance for these materials. Environmental factors influencing uptake, metabolism, and physiological response following exposure, however, need further investigation.

摘要

富勒烯聚集体水悬浮液(水相纳米碳管C60)被用于研究碳基纳米材料在海水水柱中的移动情况,并确定它们对一种海洋硬骨鱼不同生命阶段的影响。富勒烯聚集体在天然海水中混合后形成沉淀,24小时后底层水中水相纳米碳管C60的含量显著增加。将底鳉的胚胎、幼体和成体暴露于浓度不断增加的水相纳米碳管C60中,结果死亡率极低,在≤10毫克/升时无法计算出半数致死浓度。水相纳米碳管C60聚集体确实附着在卵膜上,但并未影响胚胎发育或孵化成功率。随着暴露水平的提高,水相纳米碳管C60穿过卵膜进入胚胎的移动趋势有所增加;然而,其浓度极低且差异不显著。暴露于浓度不断增加的水相纳米碳管C60中的幼体,其总谷胱甘肽(GSH)呈现出显著的剂量依赖性增加。同时脂质过氧化(LPO)呈下降趋势,但各处理组之间的LPO在统计学上并无差异。暴露于浓度不断增加的水相纳米碳管C60中的成年底鳉,其肝脏组织中的总GSH增加,但鳃中未增加。在这两种组织中均未观察到对LPO有显著影响。因此,我们得出结论,水相纳米碳管C60会影响底鳉的氧化应激反应,而抗氧化防御能力的增强为这些物质提供了一定的生理耐受性。然而,影响暴露后吸收、代谢和生理反应的环境因素仍需进一步研究。

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