Bruzaite Ingrida, Rozene Juste, Morkvenaite-Vilkonciene Inga, Ramanavicius Arunas
Department of Chemistry and Bioengineering, Faculty of Fundamental Sciences, Vilnius Gediminas Technical University, 10223 Vilnius, Lithuania.
Department of Mechatronics, Robotics, and Digital Manufacturing, Faculty of Mechanics, Vilnius Gediminas Technical University, 03109 Vilnius, Lithuania.
Nanomaterials (Basel). 2020 May 17;10(5):954. doi: 10.3390/nano10050954.
This research aimed to evaluate the toxic effect of multi-walled carbon nanotubes (MW-CNTs) on yeast cells in order to apply MW-CNTs for possible improvement of the efficiency of microbial biofuel cells. The SEM and XRD analysis suggested that here used MW-CNTs are in the range of 10-25 nm in diameter and their structure was confirmed by Raman spectroscopy. In this study, we evaluated the viability of the yeast cells, affected by MW-CNTs, by cell count, culture optical density and atomic force microscopy. The yeast cells were exposed towards MW-CNTs (of 2, 50, 100 μg/mL concentrations in water-based solution) for 24 h. A mathematical model was applied for the evaluation of relative growth and relative death rates of yeast cells. We calculated that both of the rates are two times higher in the case if yeasts were treated by 50, 100 μg/mL of MW-CNTs containing solution, comparing to that treated by 0 and 2 μg/mL c of MW-CNTs containing solution. It was determined that the MW-CNTs have some observable effect upon the incubation of the yeast cells. The viability of yeast has decreased together with MW-CNTs concentration only after 5 h of the treatment. Therefore, we predict that the MW-CNTs can be applied for the modification of yeast cells in order to improve electrical charge transfer through the yeast cell membrane and/or the cell wall.
本研究旨在评估多壁碳纳米管(MW-CNTs)对酵母细胞的毒性作用,以便将MW-CNTs应用于可能提高微生物生物燃料电池的效率。扫描电子显微镜(SEM)和X射线衍射(XRD)分析表明,这里使用的MW-CNTs直径在10-25纳米范围内,其结构通过拉曼光谱得到证实。在本研究中,我们通过细胞计数、培养物光密度和原子力显微镜评估了受MW-CNTs影响的酵母细胞的活力。将酵母细胞暴露于水基溶液中浓度为2、50、100μg/mL的MW-CNTs中24小时。应用数学模型评估酵母细胞的相对生长率和相对死亡率。我们计算得出,与用0和2μg/mL MW-CNTs溶液处理的情况相比,用50、100μg/mL MW-CNTs溶液处理酵母时,这两个比率都高出两倍。已确定MW-CNTs对酵母细胞的培养有一些可观察到的影响。仅在处理5小时后,酵母的活力才随着MW-CNTs浓度的增加而下降。因此,我们预测MW-CNTs可用于修饰酵母细胞,以改善通过酵母细胞膜和/或细胞壁的电荷转移。