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生物合成纳米材料对环境有毒吗?珍珠岩和 CuO/珍珠岩纳米粒子对单细胞藻类雨生红球藻的影响。

Are biosynthesized nanomaterials toxic for the environment? Effects of perlite and CuO/perlite nanoparticles on unicellular algae Haematococcus pluvialis.

机构信息

Department of Plant Sciences, Faculty of Natural Sciences, University of Tabriz, Tabriz, Iran.

Research institute of bioscience and biotechnology, University of Tabriz, Tabriz, Iran.

出版信息

Ecotoxicology. 2021 Jul;30(5):899-913. doi: 10.1007/s10646-021-02406-5. Epub 2021 Apr 19.

DOI:10.1007/s10646-021-02406-5
PMID:33871747
Abstract

The properties of nanomaterials such as perlite nanoparticles and their increased application have raised concerns about their probable toxic impacts on the aquatic ecosystems and algae. Here, a novel biochemical synthesis and immobilization of CuO is reported on perlite nanoparticles (CuO/Per-NPs) and its toxic effect on alga has been compared with nanoperlites. This biosynthesis of CuO/Per-NPs performed using phytochemicals of Haematococcus pluvialis, Sargassum angustifolium, and walnut leaves in the aqueous extract. The structural, morphological, and colloidal properties of the as-synthesized nanoparticles have been confirmed by various methods. According to the obtained results, the morphology of the synthesized CuO/Per-NPs was spherical with sizes ranging from about 13 to 24 nm. Besides, the effects of Per-NPs and CuO/Per-NPs on unicellular algae H. pluvialis were studied. The changes in the amount of chlorophyll a, chlorophyll b, and Carotenoids in the presence of different concentrations of Per-NPs (25, 50, 100 mg/L) were more than CuO/Per-NPs. Also, decreased growth rate and efficiency of photosystem II confirmed the toxic effects of Per-NPs. However, the toxicity of CuO/Per-NPs appears to be lower than that of Per-NPs, which can be due to the changes in the surface and cationic charge of modified nanoperlit. These changes lead to a decrease in the interaction of nanoparticles with H. pluvilalis and a reduction in ROS production. Finally, the results of GC-MS used to evaluate volatile compounds, indicated an increase in the number of phenolic compounds in comparison to the control samples in 25, 50, and 100 mg/L treatments of nano-perlite.

摘要

珍珠岩纳米粒子等纳米材料的特性及其应用的增加引起了人们对其可能对水生生态系统和藻类产生毒性影响的关注。在这里,我们报道了一种新型的生化合成方法,即用珍珠岩纳米粒子(CuO/Per-NPs)固定氧化铜,并将其对藻类的毒性作用与纳米珍珠岩进行了比较。这种用海水小球藻、狭叶马尾藻和核桃叶中的植物化学物质在水溶液中合成 CuO/Per-NPs 的方法。通过各种方法证实了所合成的纳米粒子的结构、形态和胶体性质。根据获得的结果,合成的 CuO/Per-NPs 的形态为球形,尺寸范围约为 13 至 24nm。此外,还研究了 Per-NPs 和 CuO/Per-NPs 对单细胞藻类 H. pluvialis 的影响。在不同浓度的 Per-NPs(25、50、100mg/L)存在下,叶绿素 a、叶绿素 b 和类胡萝卜素的含量变化大于 CuO/Per-NPs。此外,光系统 II 的生长率和效率降低证实了 Per-NPs 的毒性作用。然而,CuO/Per-NPs 的毒性似乎低于 Per-NPs,这可能是由于改性纳米珍珠岩表面和阳离子电荷的变化所致。这些变化导致纳米粒子与 H. pluvilalis 的相互作用减少,ROS 产生减少。最后,用 GC-MS 评估挥发性化合物的结果表明,与对照样品相比,在纳米珍珠岩的 25、50 和 100mg/L 处理中,酚类化合物的数量增加。

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