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Toxicity of TiO2 SiO2 ZnO CuO Au and Ag engineered nanoparticles on hatching and early nauplii of Artemia sp.

机译:TiO2SiO2ZnOCuOAu和Ag工程纳米颗粒对卤虫的孵化和早期幼体的毒性。

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摘要

The potential of environmental release enhances with increased commercial applications of the nanomaterials. In this work, a simple and efficient test to estimate the acute toxicity of nanoparticles is carried out on Artemia species and their hatching rates. We have tested six different engineered nanoparticles (silver, gold, copper oxide, zinc oxide, TiO2 and SiO2 nanoparticles) and three soluble salts (CuSO4, ZnSO4 and AgNO3) on Artemia sp. The physicochemical properties of the nanoparticles involved in this study were analyzed in normal water and marine water. Hydrated and bleached Artemia cysts were allowed to hatch in continuously aerated, filtered sterile salt water containing nanoparticles; hatching of viable nauplii and total hatchlings have been recorded. In parallel, standard Artemia toxicity test was conducted on the nauplii monitoring the viability. In hatching experiments, a reduction in hatching rate was observed along with mortality of newly hatched nauplii. The results of the hatching experiment and of the standard Artemia test showed a good correlation. The toxicity of the nanoparticles was compared and the order of toxicity was estimated as Ag>CuO>ZnO>Au>TiO2>SiO2. The study thus suggests that the hatching test itself is a reliable assay for determining the toxicity of nanomaterials.
机译:随着纳米材料商业应用的增加,释放环境的潜力增强。在这项工作中,进行了一种简单有效的测试来估计纳米颗粒对卤虫物种及其孵化率的急性毒性。我们已经在Artemia sp。上测试了六个不同的工程纳米颗粒(银,金,氧化铜,氧化锌,TiO2和SiO2纳米颗粒)和三种可溶性盐(CuSO4,ZnSO4和AgNO3)。在普通水和海水中分析了该研究涉及的纳米颗粒的理化性质。将经过水合和漂白的卤虫囊肿在连续充气,过滤的含有纳米颗粒的无菌盐水中孵化。记录了幼体和幼体的孵化率。同时,对无节幼体进行了标准的Artemia毒性试验,以监测其生存能力。在孵化实验中,观察到孵化率的降低以及新孵出的幼体的死亡率。孵化实验和标准Artemia测试的结果显示出良好的相关性。比较了纳米颗粒的毒性,并按Ag> CuO> ZnO> Au> TiO2> SiO2的顺序进行了毒性排序。因此,这项研究表明,孵化测试本身是确定纳米材料毒性的可靠方法。

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