Pikula Konstantin, Johari Seyed Ali, Santos-Oliveira Ralph, Golokhvast Kirill
Polytechnical Institute, Far Eastern Federal University, 10 Ajax Bay, Russky Island, Vladivostok 690922, Russia.
Department of Fisheries, Faculty of Natural Resources, University of Kurdistan, Pasdaran St, Sanandaj 66177-15175, Iran.
Toxics. 2023 May 30;11(6):491. doi: 10.3390/toxics11060491.
The growing production and application of carbon-based nanomaterials (CNMs) represent possible risks for aquatic systems. However, the variety of CNMs with different physical and chemical properties and different morphology complicate the understanding of their potential toxicity. This paper aims to evaluate and compare the toxic impact of the four most common CNMs, namely multiwalled carbon nanotubes (CNTs), fullerene (C60), graphene (Gr), and graphene oxide (GrO) on the marine microalgae . The microalgae cells were exposed to the CNMs for 96 h and measured by flow cytometry. Based on the obtained results, we determined no observed effect level (NOEL), and calculated EC10 and EC50 concentrations for growth rate inhibition, esterase activity, membrane potential, and reactive oxygen species (ROS) generation changes for each tested CNM. According to the sensitivity (growth rate inhibition) of , the used CNMs can be listed in the following order (EC50 in mg/L, 96 h): CNTs (2.08) > GrO (23.37) > Gr (94.88) > C60 (>131.0). The toxicity of CNTs was significantly higher than the toxic effect of the other used CNMs, and only this sample caused an increase in ROS generation in microalgae cells. This effect was apparently caused by the high affinity between particles and microalgae associated with the presence of exopolysaccharide coverage on cells.
碳基纳米材料(CNMs)产量的不断增长及其应用给水生系统带来了潜在风险。然而,具有不同物理化学性质和不同形态的多种碳基纳米材料使得对其潜在毒性的理解变得复杂。本文旨在评估和比较四种最常见的碳基纳米材料,即多壁碳纳米管(CNTs)、富勒烯(C60)、石墨烯(Gr)和氧化石墨烯(GrO)对海洋微藻的毒性影响。将微藻细胞暴露于碳基纳米材料中96小时,并通过流式细胞术进行测量。根据所得结果,我们确定了无观察到效应水平(NOEL),并计算了每种测试碳基纳米材料对生长速率抑制、酯酶活性、膜电位和活性氧(ROS)生成变化的EC10和EC50浓度。根据[某种敏感性(生长速率抑制)],所使用的碳基纳米材料可按以下顺序列出(96小时的EC50,单位为mg/L):CNTs(2.08)> GrO(23.37)> Gr(94.88)> C60(>131.0)。碳纳米管的毒性显著高于其他所使用的碳基纳米材料的毒性效应,并且只有该样品导致微藻细胞中ROS生成增加。这种效应显然是由颗粒与微藻之间的高亲和力引起的,这与细胞上存在胞外多糖覆盖有关。