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铜和金纳米颗粒在节段中的转运特征

Features of Copper and Gold Nanoparticle Translocation in Segments.

作者信息

Peshkova Alexandra, Zinicovscaia Inga, Cepoi Liliana, Rudi Ludmila, Chiriac Tatiana, Yushin Nikita, Sohatsky Alexander

机构信息

Joint Institute for Nuclear Research, 6 Joliot-Curie Str., 141980 Dubna, Russia.

Doctoral School Biological, Geonomic, Chemical and Technological Science, State University of Moldova, 60 Alexei Mateevici Str., MD-2009 Chisinau, Moldova.

出版信息

Nanomaterials (Basel). 2023 May 28;13(11):1754. doi: 10.3390/nano13111754.

Abstract

The application of metal nanoparticles in industry and medicine results in their release into the environment, which can have a negative impact on human health. The effects of gold (AuNPs) and copper (CuNPs) nanoparticles at the concentration range of 1-200 mg/L on parsley () under conditions of root exposure and their translocation in roots and leaves were investigated in a 10-day experiment. The content of copper and gold in soil and plant segments was determined using ICP-OES and ICP-MS techniques, while the morphology of nanoparticles was analyzed using transmission electron microscopy. Differences in the nanoparticle uptake and translocation were observed: CuNPs mainly accumulated in soil (4.4-465 mg/kg), while accumulation in the leaves were at the control level. AuNPs mainly accumulated in soil (0.04-108 mg/kg), followed by roots (0.05-45 mg/kg) and leaves (0.16-53 mg/kg). The influence of AuNPs and CuNPs on the biochemical parameters of parsley was on the content of carotenoids, the levels of chlorophyll, and antioxidant activity. Application of CuNPs even at the lowest concentration led to a significant reduction in carotenoids and total chlorophyll content. AuNPs at low concentrations promoted an increase in the content of carotenoids; however, they also significantly reduced it at concentrations higher than 10 mg/L. To our knowledge, this is the first study of the effect of metal nanoparticles on parsley.

摘要

金属纳米颗粒在工业和医学中的应用导致其释放到环境中,这可能对人类健康产生负面影响。在一项为期10天的实验中,研究了浓度范围为1-200mg/L的金(AuNPs)和铜(CuNPs)纳米颗粒在根部暴露条件下对欧芹()的影响及其在根和叶中的转运。使用ICP-OES和ICP-MS技术测定土壤和植物部分中铜和金的含量,同时使用透射电子显微镜分析纳米颗粒的形态。观察到纳米颗粒吸收和转运的差异:CuNPs主要积累在土壤中(4.4-465mg/kg),而叶片中的积累处于对照水平。AuNPs主要积累在土壤中(0.04-108mg/kg),其次是根(0.05-45mg/kg)和叶(0.16-53mg/kg)。AuNPs和CuNPs对欧芹生化参数的影响在于类胡萝卜素含量、叶绿素水平和抗氧化活性。即使是最低浓度的CuNPs应用也导致类胡萝卜素和总叶绿素含量显著降低。低浓度的AuNPs促进类胡萝卜素含量增加;然而,在高于10mg/L的浓度下,它们也会显著降低其含量。据我们所知,这是第一项关于金属纳米颗粒对欧芹影响的研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/15b4/10254482/0226aeabcc78/nanomaterials-13-01754-g001.jpg

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