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在大型溞体内立方和八面体 Cu2O 微/纳米晶体的生物累积和生物标志物反应。

Bioaccumulation and biomarker responses of cubic and octahedral Cu2O micro/nanocrystals in Daphnia magna.

机构信息

Key Laboratory of Bio-Inspired Smart Interfacial Science and Technology of Ministry of Education, School of Chemistry and Environment, Beihang University, XueYuan Road No. 37, Haidian District, Beijing 100191, PR China.

出版信息

Water Res. 2012 Nov 15;46(18):5981-8. doi: 10.1016/j.watres.2012.08.019. Epub 2012 Sep 7.

Abstract

Great progress has been made in the controlled fabrication of nanomaterials with given sizes, shapes, and geometries. However, how such changes in structure potentially affect the bioavailability and toxicity of metal nanoparticles to aquatic organisms remains mostly unknown. The present study reports the different behaviors of two types of Cu(2)O micro/nanocrystals (micro/nano-Cu(2)O) with different shapes (cubic and octahedral) and crystallographies (with exposed surfaces as {100} or {111}). The bioaccumulation, median lethal concentration, and biomarker responses of Daphnia magna exposed to the two micro/nanocrystals are also investigated. The Cu accumulation, production of metallothionein (MT), and inhibition ratio of D. magna increased gradually with increasing micro/nano-Cu(2)O concentration. The two crystals showed slight Cu accumulation differences toward D. magna, and their biomarker responses and toxicities to D. magna differed significantly as well. The octahedral Cu(2)O micro/nanocrystals were more toxic to D. magna compared with the cubic micro/nanocrystals probably because of the higher surface activities of the {111} facets compared with those of the {100} facets for cuprites. Food ingestion was the main entry pathway of the micro/nanocrystals into organisms, and toxicity was consequently determined based on the dissolution behavior of the micro/nanocrystals in vivo.

摘要

在控制纳米材料的尺寸、形状和几何形状方面已经取得了很大的进展。然而,结构的这种变化如何潜在地影响金属纳米粒子对水生生物的生物利用度和毒性,在很大程度上仍然未知。本研究报告了两种具有不同形状(立方和八面体)和晶体学(暴露表面为{100}或{111})的 Cu2O 微/纳晶体(微/纳 Cu2O)的不同行为。还研究了暴露于两种微/纳晶体的大型溞(Daphnia magna)的生物累积、半数致死浓度和生物标志物反应。Cu 的积累、金属硫蛋白(MT)的产生以及 D. magna 的抑制率随着微/纳 Cu2O 浓度的增加而逐渐增加。两种晶体对 D. magna 的 Cu 积累差异很小,它们对 D. magna 的生物标志物反应和毒性也有明显差异。与立方微/纳晶体相比,八面体 Cu2O 微/纳晶体对 D. magna 的毒性更大,这可能是因为对于氧化亚铜来说,{111}面的表面活性比{100}面高。摄食是微/纳晶体进入生物体的主要途径,因此毒性取决于微/纳晶体在体内的溶解行为。

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