Cañas Jaclyn E, Long Monique, Nations Shawna, Vadan Rodica, Dai Lenore, Luo Mingxiang, Ambikapathi Ramya, Lee E Henry, Olszyk David
The Institute of Environmental and Human Health, Department of Environmental Toxicology, Texas Tech University, Lubbock, Texas 79409, USA.
Environ Toxicol Chem. 2008 Sep;27(9):1922-31. doi: 10.1897/08-117.1.
Single-walled carbon nanotubes have many potential beneficial uses, with additional applications constantly being investigated. Their unique properties, however, create a potential concern regarding toxicity, not only in humans and animals but also in plants. To help develop protocols to determine the effects of nanotubes on plants, we conducted a pilot study on the effects of functionalized and nonfunctionalized single-walled carbon nanotubes on root elongation of six crop species (cabbage, carrot, cucumber, lettuce, onion, and tomato) routinely used in phytotoxicity testing. Nanotubes were functionalized with poly-3-aminobenzenesulfonic acid. Root growth was measured at 0, 24, and 48 h following exposure. Scanning-electron microscopy was used to evaluate potential uptake of carbon nanotubes and to observe the interaction of nanotubes with the root surface. In general, nonfunctionalized carbon nanotubes affected root length more than functionalized nanotubes. Nonfunctionalized nanotubes inhibited root elongation in tomato and enhanced root elongation in onion and cucumber. Functionalized nanotubes inhibited root elongation in lettuce. Cabbage and carrots were not affected by either form of nanotubes. Effects observed following exposure to carbon nanotubes tended to be more pronounced at 24 h than at 48 h. Microscopy images showed the presence of nanotube sheets on the root surfaces, but no visible uptake of nanotubes was observed.
单壁碳纳米管有许多潜在的有益用途,并且不断有新的应用在研究中。然而,其独特的性质引发了对毒性的潜在担忧,不仅对人类和动物,对植物也是如此。为了帮助制定确定纳米管对植物影响的方案,我们进行了一项初步研究,考察了功能化和非功能化单壁碳纳米管对六种常用于植物毒性测试的作物(卷心菜、胡萝卜、黄瓜、生菜、洋葱和番茄)根系伸长的影响。纳米管用聚-3-氨基苯磺酸进行功能化处理。在暴露后0、24和48小时测量根系生长。使用扫描电子显微镜评估碳纳米管的潜在吸收情况,并观察纳米管与根表面的相互作用。总体而言,非功能化碳纳米管对根长的影响比功能化纳米管更大。非功能化纳米管抑制了番茄的根系伸长,促进了洋葱和黄瓜的根系伸长。功能化纳米管抑制了生菜的根系伸长。卷心菜和胡萝卜对两种形式的纳米管均无反应。暴露于碳纳米管后观察到的影响在24小时时往往比48小时时更明显。显微镜图像显示根表面存在纳米管片,但未观察到纳米管有明显的吸收。