Department of Biochemical and Microbiological Technology, Laboratory of Microbial Ecology and Technology (LabMET), Ghent University, Coupure Links 653, B-9000 Ghent, Belgium.
Appl Environ Microbiol. 2010 Feb;76(4):1082-7. doi: 10.1128/AEM.02433-09. Epub 2009 Dec 28.
The presence of enteric viruses in drinking water is a potential health risk. Growing interest has arisen in nanometals for water disinfection, in particular the use of silver-based nanotechnology. In this study, Lactobacillus fermentum served as a reducing agent and bacterial carrier matrix for zerovalent silver nanoparticles, referred to as biogenic Ag(0). The antiviral action of biogenic Ag(0) was examined in water spiked with an Enterobacter aerogenes-infecting bacteriophage (UZ1). Addition of 5.4 mg liter(-1) biogenic Ag(0) caused a 4.0-log decrease of the phage after 1 h, whereas the use of chemically produced silver nanoparticles (nAg(0)) showed no inactivation within the same time frame. A control experiment with 5.4 mg liter(-1) ionic Ag+ resulted in a similar inactivation after 5 h only. The antiviral properties of biogenic Ag(0) were also demonstrated on the murine norovirus 1 (MNV-1), a model organism for human noroviruses. Biogenic Ag(0) was applied to an electropositive cartridge filter (NanoCeram) to evaluate its capacity for continuous disinfection. Addition of 31.25 mg biogenic Ag(0) m(-2) on the filter (135 mg biogenic Ag(0) kg(-1) filter medium) caused a 3.8-log decline of the virus. In contrast, only a 1.5-log decrease could be obtained with the original filter. This is the first report to demonstrate the antiviral efficacy of extracellular biogenic Ag(0) and its promising opportunities for continuous water disinfection.
肠病毒存在于饮用水中是潜在的健康风险。纳米金属在水消毒方面的应用,特别是基于银的纳米技术的应用,引起了越来越多的关注。在这项研究中,发酵乳杆菌作为零价银纳米颗粒(称为生物 Ag(0))的还原剂和细菌载体基质。研究了生物 Ag(0)在添加了一种感染产气肠杆菌的噬菌体(UZ1)的水中的抗病毒作用。添加 5.4 mg/L 的生物 Ag(0)可在 1 小时内使噬菌体减少 4.0 个对数,而在相同的时间内使用化学合成的银纳米颗粒(nAg(0))则没有灭活作用。仅用 5.4 mg/L 的离子 Ag+进行的对照实验仅在 5 小时后才显示出类似的失活作用。生物 Ag(0)的抗病毒特性也在鼠诺如病毒 1(MNV-1)上得到了证明,MNV-1 是人类诺如病毒的模型生物。生物 Ag(0)被应用于正电荷的筒式过滤器(NanoCeram),以评估其连续消毒的能力。在过滤器上添加 31.25 mg 生物 Ag(0)(135 mg 生物 Ag(0)kg(-1)过滤器介质)可使病毒减少 3.8 个对数。相比之下,原始过滤器只能减少 1.5 个对数。这是首次报道证明细胞外生物 Ag(0)的抗病毒功效及其在连续水消毒方面的广阔前景。