Pikula Konstantin, Chaika Vladimir, Zakharenko Alexander, Markina Zhanna, Vedyagin Aleksey, Kuznetsov Vladimir, Gusev Alexander, Park Soojin, Golokhvast Kirill
Far Eastern Federal University, Sukhanova 8, 690950 Vladivostok, Russian.
National Scientific Center of Marine Biology, Far Eastern Branch, Russian Academy of Sciences, Palchevsky 17, 690041 Vladivostok, Russian.
Nanomaterials (Basel). 2020 Mar 8;10(3):485. doi: 10.3390/nano10030485.
Nanoparticles (NPs) have various applications in medicine, cosmetics, optics, catalysis, environmental purification, and other areas nowadays. With an increasing annual production of NPs, the risks of their harmful influence to the environment and human health is rising. Currently, our knowledge about the mechanisms of interaction between NPs and living organisms is limited. Additionally, poor understanding of how physical and chemical characteristic and different conditions influence the toxicity of NPs restrict our attempts to develop the standards and regulations which might allow us to maintain safe living conditions. The marine species and their habitat environment are under continuous stress due to anthropogenic activities which result in the appearance of NPs in the aquatic environment. Our study aimed to evaluate and compare biochemical effects caused by the influence of different types of carbon nanotubes, carbon nanofibers, and silica nanotubes on four marine microalgae species. We evaluated the changes in growth-rate, esterase activity, membrane polarization, and size changes of microalgae cells using flow cytometry method. Our results demonstrated that toxic effects caused by the carbon nanotubes strongly correlated with the content of heavy metal impurities in the NPs. More hydrophobic carbon NPs with less ordered structure had a higher impact on the red microalgae because of higher adherence between the particles and mucous covering of the algae. Silica NPs caused significant inhibition of microalgae growth-rate predominantly produced by mechanical influence.
如今,纳米颗粒(NPs)在医学、化妆品、光学、催化、环境净化及其他领域有着广泛应用。随着纳米颗粒年产量的增加,其对环境和人类健康产生有害影响的风险也在上升。目前,我们对纳米颗粒与生物体相互作用机制的了解有限。此外,对物理和化学特性以及不同条件如何影响纳米颗粒毒性的认识不足,限制了我们制定相关标准和法规的尝试,而这些标准和法规或许能让我们维持安全的生活条件。由于人为活动,海洋物种及其栖息地环境持续受到压力,这导致纳米颗粒出现在水生环境中。我们的研究旨在评估和比较不同类型的碳纳米管、碳纳米纤维和二氧化硅纳米管对四种海洋微藻物种的影响所引起的生化效应。我们使用流式细胞术方法评估了微藻细胞的生长速率、酯酶活性、膜极化和大小变化。我们的结果表明,碳纳米管引起的毒性效应与纳米颗粒中重金属杂质的含量密切相关。结构无序且疏水性更强的碳纳米颗粒对红色微藻的影响更大,这是因为颗粒与藻类黏液覆盖层之间的附着力更强。二氧化硅纳米颗粒主要通过机械作用显著抑制了微藻的生长速率。