Echavarri-Bravo Virginia, Paterson Lynn, Aspray Thomas J, Porter Joanne S, Winson Michael K, Hartl Mark G J
Heriot-Watt University, Centre for Marine Biodiversity & Biotechnology, Institute for Life and Earth Sciences, School of Energy, Geoscience, Infrastructure and Society, Riccarton, Edinburgh EH14 4AS, Scotland, UK.
SUPA, Institute of Biological Chemistry, Biophysics and Bioengineering, Heriot-Watt University, School of Engineering and Physical Sciences, Riccarton, Edinburgh EH14 4AS, Scotland, UK.
Mar Environ Res. 2017 Sep;130:293-302. doi: 10.1016/j.marenvres.2017.08.006. Epub 2017 Aug 22.
Scarce information is available regarding the fate and toxicology of engineered silver nanoparticles (AgNPs) in the marine environment, especially when compared to other environmental compartments. Hence, the antibacterial activity of the NM-300 AgNPs (OECD programme) and a household product containing colloidal AgNPs (Mesosilver) was investigated using marine bacteria, pure cultures and natural mixed populations (microcosm approach). Bacterial susceptibility to AgNPs was species-specific, with Gram negative bacteria being more resistant than the Gram positive species (NM-300 concentration used ranged between 0.062 and 1.5 mg L), and the Mesosilver product was more toxic than the NM-300. Bacterial viability and the physiological status (O uptake measured by respirometry) of the microbial community in the microcosm was negatively affected at an initial concentration of 1 mg L NM-300. The high chloride concentrations in the media/seawater led to the formation of silver-chloro complexes thus enhancing AgNP toxicity. We recommend the use of natural marine bacteria as models when assessing the environmental relevant antibacterial properties of products containing nanosilver.
关于工程银纳米颗粒(AgNPs)在海洋环境中的归宿和毒理学,可获取的信息稀缺,特别是与其他环境介质相比。因此,使用海洋细菌、纯培养物和天然混合菌群(微观生态系统方法)研究了NM - 300 AgNPs(经合组织项目)和一种含有胶体AgNPs的家用产品(Mesosilver)的抗菌活性。细菌对AgNPs的敏感性具有物种特异性,革兰氏阴性菌比革兰氏阳性菌更具抗性(所用NM - 300浓度范围为0.062至1.5 mg/L),且Mesosilver产品比NM - 300毒性更大。在初始浓度为1 mg/L的NM - 300时,微观生态系统中微生物群落的细菌活力和生理状态(通过呼吸测定法测量O吸收)受到负面影响。培养基/海水中的高氯浓度导致形成银 - 氯络合物,从而增强了AgNP的毒性。我们建议在评估含纳米银产品的环境相关抗菌特性时,使用天然海洋细菌作为模型。