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The structures and antibacterial properties of nano-SiO_2 supported silver/zinc-silver materials

机译:纳米SiO_2负载的银锌银材料的结构与抗菌性能

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Objectives. The aims of this study were to investigate the structures and antibacterial properties of two kinds of sterilizing nano-SiO_2 specimens. Methods. The specimens were synthesized by adsorption methodology. One of them was synthesized by adsorbing silver cation onto nano-SiO_2 carrier (silver-loading nano-SiO_2 specimen (SLS)), and the other one by co-adsorbing zinc and silver cations onto the same kind of carrier (zinc-silver-loading nano-SiO_2 specimen (SLZS)). Chemical compositions of these specimens were estimated. The structure and morphology of the specimens were determined by X-ray diffraction (XRD) and high-resolution transmission electron microscopy (HRTEM). Also, the antibacterial properties of the specimens were examined. Results. The amount of silver loaded in SLZS was approximate to that of SLS. Consequently, it can be proved that the amount of nano-SiO_2 adsorbed silver cation did not change with the addition of zinc cation. The obvious differences were not observed among the XRD patterns for each specimen. So it was possible to confirm no formation of new phase(s) after Ag~+/Zn~(2+) absorption. The loaded silver and zinc existed as nano-particles, as observed by HRTEM. Antibacterial properties of SLS and SLZS were excellent against Escherichia coli and S. faecalis. The antibacterial effect of the same antibacterial agent against E. coli or S. faecalis was different. In addition, the antibacterial effect of SLZS was better than that of SLS. Significance. These results suggested SLS and SLZS can be effectively incorporated in dental resin-based materials to provide antibacterial activity against bacteria.
机译:目标。这项研究的目的是研究两种灭菌的纳米SiO_2标本的结构和抗菌性能。方法。样品通过吸附法合成。其中一种是通过将银阳离子吸附在纳米SiO_2载体上(载银的纳米SiO_2标本(SLS))合成的,另一种是通过将锌和银阳离子共吸附在相同种类的载体上(锌-银-加载纳米SiO_2标本(SLZS))。估计这些样品的化学成分。通过X射线衍射(XRD)和高分辨率透射电子显微镜(HRTEM)确定样品的结构和形态。另外,检查了样品的抗菌性能。结果。 SLZS中装载的银量与SLS近似。因此,可以证明,纳米SiO 2吸附的银阳离子的量不随锌阳离子的添加​​而变化。在每个样品的XRD图样之间未观察到明显的差异。因此有可能确认在吸收Ag〜+ / Zn〜(2+)后没有形成新的相。 HRTEM观察到,负载的银和锌以纳米粒子形式存在。 SLS和SLZS的抗菌性能对大肠杆菌和粪链球菌具有极好的作用。相同的抗菌剂对大肠杆菌或粪链球菌的抗菌作用不同。此外,SLZS的抗菌效果优于SLS。意义。这些结果表明,SLS和SLZS可以有效地掺入牙科树脂基材料中,以提供针对细菌的抗菌活性。

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