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影响水生植物对金纳米颗粒生物利用度的非生物和生物因素。

Abiotic and biotic factors that influence the bioavailability of gold nanoparticles to aquatic macrophytes.

机构信息

Clemson Institute of Environmental Toxicology, Clemson University , Clemson, South Carolina, 29634 United States.

出版信息

Environ Sci Technol. 2013 Sep 17;47(18):10223-30. doi: 10.1021/es4020508. Epub 2013 Aug 28.

Abstract

This research identified and characterized factors that influenced nanomaterial bioavailability to three aquatic plants: Azolla caroliniana Willd, Egeria densa Planch., and Myriophyllum simulans Orch. Plants were exposed to 4-, 18-, and 30-nm gold nanoparticles. Uptake was influenced by nanoparticle size, the presence of roots on the plant, and dissolved organic carbon in the media. Statistical analysis of the data also revealed that particle uptake was influenced by a 4-way (plant species, plant roots, particle size, and dissolved organic carbon) interaction suggesting nanoparticle bioavailability was a complex result of multiple parameters. Size and species dependent absorption was observed that was dependent on the presence of roots and nanoparticle size. The presence of dissolved organic carbon was found to associate with 4- and 18-nm gold nanoparticles in suspension and form a nanoparticle/organic matter complex that resulted in (1) minimized particle aggregation and (2) a decrease of nanoparticle absorption by the aquatic plants. The same effect was not observed with the 30-nm nanoparticle treatment. These results indicate that multiple factors, both biotic and abiotic, must be taken into account when predicting bioavailability of nanomaterials to aquatic plants.

摘要

本研究确定并描述了影响三种水生植物(浮萍、水蕴草和竹叶眼子菜)对纳米材料生物利用度的因素。这些植物被暴露在 4nm、18nm 和 30nm 的金纳米粒子中。纳米颗粒的大小、植物根系的存在以及介质中溶解的有机碳都会影响吸收。对数据的统计分析还表明,颗粒的吸收受到 4 种因素(植物种类、植物根系、颗粒大小和溶解的有机碳)相互作用的影响,这表明纳米材料的生物利用度是多种参数的复杂结果。观察到了大小和物种依赖的吸收,这取决于根系的存在和纳米颗粒的大小。发现溶解的有机碳与悬浮液中的 4nm 和 18nm 金纳米颗粒结合,并形成纳米颗粒/有机物复合物,从而导致:(1)最小化颗粒聚集;(2)水生植物对纳米颗粒的吸收减少。而 30nm 纳米颗粒处理则没有观察到相同的效果。这些结果表明,在预测纳米材料对水生植物的生物利用度时,必须考虑多种生物和非生物因素。

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