Department of Chemistry and Biochemistry, Rowan University, Glassboro, NJ 08028, USA.
Department of Physics and Astronomy, Rowan University, Glassboro, NJ 08028, USA.
Molecules. 2017 Sep 7;22(9):1487. doi: 10.3390/molecules22091487.
This paper reports the synthesis and characterization of silver oxide films for use as bactericidal coatings. Synthesis parameters, dissolution/elution rate, and bactericidal efficacy are reported. Synthesis conditions were developed to create AgO, Ag₂O, or mixtures of AgO and Ag₂O on surfaces by reactive magnetron sputtering. The coatings demonstrate strong adhesion to many substrate materials and impede the growth of all bacterial strains tested. The coatings are effective in killing and , demonstrating a clear zone-of-inhibition against bacteria growing on solid media and the ability to rapidly inhibit bacterial growth in planktonic culture. Additionally, the coatings exhibit very high elution of silver ions under conditions that mimic dynamic fluid flow ranging between 0.003 and 0.07 ppm/min depending on the media conditions. The elution of silver ions from the AgO/Ag₂O surfaces was directly impacted by the complexity of the elution media, with a reduction in elution rate when examined in complex cell culture media. Both and were shown to bind ~1 ppm Ag⁺/mL culture. The elution of Ag⁺ resulted in no increases in mammalian cell apoptosis after 24 h exposure compared to control, but apoptotic cells increased to ~35% by 48 and 72 h of exposure. Taken together, the AgO/Ag₂O coatings described are effective in eliciting antibacterial activity and have potential for application on a wide variety of surfaces and devices.
本文报道了用于杀菌涂层的氧化银薄膜的合成与表征。报告了合成参数、溶解/洗脱率和杀菌效果。通过反应磁控溅射,开发了合成条件,以在表面上生成 AgO、Ag₂O 或它们的混合物。该涂层对许多基底材料具有很强的附着力,并能阻止所有测试菌株的生长。该涂层能有效杀灭 和 ,在固体培养基上对细菌生长有明显的抑菌圈,并能迅速抑制浮游培养物中的细菌生长。此外,涂层在模拟动态流体流动的条件下表现出非常高的银离子洗脱率,洗脱率在 0.003 至 0.07 ppm/min 之间,具体取决于介质条件。AgO/Ag₂O 表面的银离子洗脱直接受到洗脱介质复杂性的影响,在复杂的细胞培养液中,洗脱率降低。 和 均被证明能结合约 1 ppm Ag⁺/mL 培养物。与对照相比,Ag⁺ 的洗脱在 24 h 暴露后对哺乳动物细胞凋亡没有增加,但凋亡细胞在 48 和 72 h 暴露后增加到约 35%。综上所述,所描述的 AgO/Ag₂O 涂层在引发抗菌活性方面非常有效,并且有可能在各种表面和设备上得到应用。