Department of Chemistry and Environmental Science, New Jersey Institute of Technology, Newark, NJ, 07102, USA.
Department of Biomedical and Pharmaceutical Sciences, Center for Environmental Health Sciences, University of Montana, Missoula, MT, 59812, USA.
Sci Rep. 2018 Oct 17;8(1):15301. doi: 10.1038/s41598-018-33674-7.
We demonstrate for the first time the toxicity of carbon nanotube (CNT) metal hybrids on freshwater algae. Carbon nanotube-silver (CNT-Ag) and platinum hybrids (CNT-Pt) were synthesized and exposed to Chlamydomonas reinhardtii (C. reinhardtii), and their toxicity was compared to the pure metal salts. Interactions between CNT-metal and algae were studied using electron microscopy and it was observed that while outer membrane of the algal cell was damaged as a result of Ag toxicity from pure Ag, the CNT-Ag only caused the distortion of the cell wall. It was also observed that the CNT-Ag particles could be internalized and enclosed in internal vesicles in the algal cells. Long-term exposure of the CNT-metals showed delay in algal growth. CNT-Ag at a concentration of 5.0 mg/L showed 90% growth inhibition and also showed a significant effect on photosynthetic yield with a 21% drop compared to the control. It was observed that pure silver was more toxic compared with CNT-Ag for both growth and photosynthesis in the 96-hour exposure. In general, CNT-Pt showed significantly less toxic effects on the algae than CNT-Ag. Based on this study, it is postulated that the CNT suppressed the release of Ag from CNT-Ag hybrids, thus reducing overall toxicity.
我们首次证明了碳纳米管(CNT)金属混合物对淡水藻类的毒性。合成了碳纳米管-银(CNT-Ag)和铂混合物(CNT-Pt),并将其暴露于莱茵衣藻(Chlamydomonas reinhardtii,C. reinhardtii)中,将其毒性与纯金属盐进行了比较。使用电子显微镜研究了 CNT-金属与藻类之间的相互作用,结果表明,尽管由于纯 Ag 的 Ag 毒性导致藻类细胞的外膜受损,但 CNT-Ag 仅导致细胞壁变形。还观察到 CNT-Ag 颗粒可以被内化并封闭在藻类细胞的内部小泡中。CNT-金属的长期暴露显示出藻类生长的延迟。浓度为 5.0 mg/L 的 CNT-Ag 表现出 90%的生长抑制,并且与对照相比,光合作用产量也表现出显著的下降,下降了 21%。观察到在 96 小时暴露期间,纯银比 CNT-Ag 对生长和光合作用的毒性更大。一般来说,与 CNT-Ag 相比,CNT-Pt 对藻类的毒性作用较小。基于这项研究,我们假设 CNT 抑制了 CNT-Ag 混合物中 Ag 的释放,从而降低了整体毒性。