首页> 外文期刊>Journal of Non-Crystalline Solids: A Journal Devoted to Oxide, Halide, Chalcogenide and Metallic Glasses, Amorphous Semiconductors, Non-Crystalline Films, Glass-Ceramics and Glassy Composites >Preparation and in vitro characterization of silver-doped bioactive glass nanoparticles fabricated using a sol-gel process and modified Stober method
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Preparation and in vitro characterization of silver-doped bioactive glass nanoparticles fabricated using a sol-gel process and modified Stober method

机译:用溶胶 - 凝胶工艺制备和体外表征使用溶胶 - 凝胶工艺制备的银掺杂生物活性玻璃纳米粒子及改性静水法

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摘要

The study aimed at preparing Ag-doped bioactive glass (BG) nanoparticles containing 5 wt% Ag2O using a new modified Stober method (Ag-BGm) and the conventional sol-gel method (Ag-BGsg). The aim of employing the new Ag-doping mechanism is to implement a relatively short process to incorporate higher concentration of silver (Ag+) ions in an attempt to combine the antibacterial activity of silver with the bioactivity of BG. SEM and TEM micrographs showed that Ag-BGm nanoparticles were mondispersed, and spherical, while Ag-BGsg nanoparticles were formed of highly porous irregular agglomerated particles. A significantly higher silicon, calcium and silver ions release from the Ag-BGsg was evident, as compared to Ag-BGm, in deionized water (DIW). In vitro bioactivity test showed rapid bioactive properties of Ag-BGsg in simulated body fluid (SBF), as compared to Ag-BGm. Both BGs showed antibacterial effect against E. coil O157: H7 wild type strain 93111 and S. aureus ATCC 25923 as evident by the disc diffusion assay, but Ag-BGsg showed significantly higher mean inhibition zone compared to Ag-BGm. It may be concluded that both Ag-BGsg and Ag-BGm has the potential to be used as bone substitute materials with the Ag-BGsg being more promising due to its high bioactivity and antibacterial effect.
机译:该研究旨在使用新的改性的SpOb方法(Ag-BGM)和常规溶胶 - 凝胶法(Ag-BGSG)制备含有5wt%Ag2O的Ag掺杂的生物活性玻璃(BG)纳米颗粒。采用新的Ag掺杂机制的目的是实施一种相对较短的方法,以掺入更高浓度的银(Ag +)离子,以便将银的抗菌活性与BG的生物活性结合起来。 SEM和TEM显微照片显示AG-BGM纳米颗粒是Mond分布的,而球形,而Ag-BGSG纳米颗粒由高度多孔的不规则凝聚颗粒形成。与Ag-Bgm相比,在去离子水(DIW)中,明显高于Ag-BGSG的硅,钙和银离子释放。与Ag-Bgm相比,体外生物活性试验显示了模拟体液(SBF)中的Ag-BGSG的快速生物活性性能。 BGS两种BGS对E.螺旋O157:H7野生型菌株93111和S.Sureus ATCC 25923的抗菌作用显示为盘扩散测定,但与Ag-Bgm相比,Ag-BGSG显示出显着更高的平均抑制区。可以得出结论,AG-BGSG和Ag-BGM均具有耐骨替代材料,由于其高生物活性和抗菌作用,AG-BGSG具有更高的效果。

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