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纳米银的分级:对确定水生测试生物毒性的重要性。

Fractionating nanosilver: importance for determining toxicity to aquatic test organisms.

机构信息

US Army Engineer Research and Development Center, Vicksburg, Mississippi 39180, United States.

出版信息

Environ Sci Technol. 2010 Dec 15;44(24):9571-7. doi: 10.1021/es1025382. Epub 2010 Nov 17.

Abstract

This investigation applied novel techniques for characterizing and fractionating nanosilver particles and aggregates and relating these measurements to toxicological endpoints. The acute toxicity of eight nanosilver suspensions of varying primary particle sizes (10-80 nm) and coatings (citrate, polyvinylpyrrolidone, EDTA, proprietary) was assessed using three aquatic test organisms (Daphnia magna, Pimephales promelas, Pseudokirchneriella subcapitata). When 48-h lethal median concentrations (LC50) were expressed as total silver, both D. magna and P. promelas were significantly more sensitive to ionic silver (Ag(+)) as AgNO(3) (mean LC50 = 1.2 and 6.3 μg/L, respectively) relative to a wide range in LC50 values determined for the nanosilver suspensions (2 -126 μg/L). However, when LC50 values for nanosilver suspensions were expressed as fractionated nanosilver (Ag(+) and/or <4 nm particles), determined by ultracentrifugation of particles and confirmed field-flow-fractograms, the LC50 values (0.3-5.6 μg/L) were comparable to the values obtained for ionic Ag(+) as AgNO(3). These results suggest that dissolved Ag(+) plays a critical role in acute toxicity and underscores the importance of characterizing dissolved fractions in nanometal suspensions.

摘要

本研究应用了新型技术来对纳米银颗粒和聚集体进行特征描述和分级,并将这些测量结果与毒理学终点相关联。使用三种水生测试生物(大型溞、褐鳟和斜生栅藻)来评估八种不同原始粒径(10-80nm)和涂层(柠檬酸盐、聚乙烯吡咯烷酮、EDTA、专利)的纳米银悬浮液的急性毒性。当以总银表示 48 小时致死中浓度(LC50)时,大型溞和褐鳟对离子银(Ag(+))作为 AgNO3(分别为 1.2 和 6.3μg/L)的敏感性明显高于纳米银悬浮液的 LC50 值范围(2-126μg/L)。然而,当以超离心法对颗粒进行分级,并通过场流分级图谱进行确认后,纳米银悬浮液的 LC50 值(0.3-5.6μg/L)以纳米银(Ag(+)和/或<4nm 颗粒)的形式表示时,与作为 AgNO3 的离子 Ag(+)的 LC50 值相当。这些结果表明,溶解的 Ag(+) 在急性毒性中起着关键作用,并强调了在纳米金属悬浮液中对溶解部分进行特征描述的重要性。

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