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二氧化铈纳米颗粒对生菜植物的物种特异性毒性。

Species-specific toxicity of ceria nanoparticles to Lactuca plants.

作者信息

Zhang Peng, Ma Yuhui, Zhang Zhiyong, He Xiao, Li Yuanyuan, Zhang Jing, Zheng Lirong, Zhao Yuliang

机构信息

Key Laboratory of Nuclear Analytical Techniques, Key Laboratory for Biological Effects of Nanomaterials and Nanosafety , Beijing , China and.

出版信息

Nanotoxicology. 2015 Feb;9(1):1-8. doi: 10.3109/17435390.2013.855829. Epub 2013 Nov 21.

Abstract

Species-specific differences in the toxicity of manufactured nanoparticles (MNPs) have been reported, but the underlying mechanisms are unknown. We previously found that CeO2 NPs inhibited root elongation of head lettuce, whereas no toxic effect was observed on other plants (such as wheat, cucumber and radish). In this study, interactions between Lactuca plants and three types of CeO2 NPs (lab-synthesized 7 and 25 nm CeO2 NPs, and a commercial CeO2 NPs) were investigated. It was found that CeO2 NPs were toxic to three kinds of Lactuca genus plants and different CeO2 NPs showed different degrees of toxicity. The results of X-ray absorption near edge fine structure indicate that small parts of CeO2 NPs were transformed from Ce(IV) to Ce(III) in roots of the plants that were treated with CeO2 NPs during the seed germination stage. But the high sensitivity of Lactuca plants to the released Ce(3+) ions caused the species-specific phytotoxicity of CeO2 NPs. Differences in sizes and zeta potentials among three types of CeO2 NPs resulted in their different degrees of biotransformation which accounted for the discrepancy in the toxicity to Lactuca plants. This study is among the few, and may indeed the first, that addresses the relation between the physicochemical properties of nanoparticles and its species-specific phytotoxicity.

摘要

已有报道称人造纳米颗粒(MNPs)的毒性存在物种特异性差异,但其潜在机制尚不清楚。我们之前发现二氧化铈纳米颗粒(CeO2 NPs)会抑制生菜的根伸长,而对其他植物(如小麦、黄瓜和萝卜)未观察到毒性作用。在本研究中,研究了生菜植株与三种类型的CeO2 NPs(实验室合成的7和25纳米CeO2 NPs以及一种商业CeO2 NPs)之间的相互作用。发现CeO2 NPs对三种生菜属植物有毒,且不同的CeO2 NPs表现出不同程度的毒性。X射线吸收近边精细结构结果表明,在种子萌发阶段用CeO2 NPs处理的植物根中,一小部分CeO2 NPs从Ce(IV)转化为Ce(III)。但生菜植株对释放的Ce(3+)离子的高敏感性导致了CeO2 NPs的物种特异性植物毒性。三种类型的CeO2 NPs在尺寸和zeta电位上的差异导致了它们不同程度的生物转化,这解释了对生菜植株毒性的差异。本研究是为数不多的,甚至可能是首个探讨纳米颗粒物理化学性质与其物种特异性植物毒性之间关系的研究。

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