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首页> 外文期刊>Journal of biomaterials applications >Investigating the effect of silver coating on the solubility, antibacterial properties, and cytocompatibility of glass microspheres
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Investigating the effect of silver coating on the solubility, antibacterial properties, and cytocompatibility of glass microspheres

机译:研究镀银层对玻璃微球的溶解度,抗菌性能和细胞相容性的影响

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摘要

Silver (Ag) coatings have been incorporated into many medical materials due to its ability to eradicate harmful microbes. In this study, glass microspheres (SiO2-Na2O-CaO-Al2O3) were synthesized and employed as substrates to investigate the effect Ag coating has on glass solubility and the subsequent biological effects. Initially, glasses were amorphous with a glass transition point (T-g) of 605 degrees C and microspheres were spherical with a mean particle diameter of 120 mm (+/- 27). The Ag coating was determined to be crystalline in nature and its presence was confirmed using scanning electron microscopy and X-ray photoelectron spectroscopy. Ion release determined that Ag-coated (Ag-S) microspheres increased the Na+ release rate but slightly reduced the Ca2+ and Si4+ release compared to an uncoated control (UC-S). Additionally, the Ag-S reduced the pH to just above neutral (7.3-8.5) compared to the UC-S (7.7-9.1). Antibacterial testing determined significant reductions in planktonic Escherichia coli (p = 0.000), Staphylococcus epidermidis (p = 0.000) and Staphylococcus aureus (p = 0.000) growth as a function of the presence of Ag and with respect to maturation (1, 7, and 30 days). Testing for toxicity levels using L929 Fibroblasts determined higher cell viability for the Ag-S at lower concentrations (5 mu g/ml); in addition, no significant reduction in cell viability was observed with higher concentrations (15, 30 mu g/ml).
机译:银(Ag)涂层由于其能够清除有害微生物的能力而被掺入许多医疗材料中。在这项研究中,玻璃微球(SiO2-Na2O-CaO-Al2O3)被合成并用作基底,以研究Ag涂层对玻璃溶解度的影响以及随后的生物学作用。最初,玻璃是非晶态的,玻璃化转变点(T-g)为605摄氏度,微球是球形的,平均粒径为120毫米(+/- 27)。确定该Ag涂层本质上是结晶的,并且使用扫描电子显微镜和X射线光电子能谱确认了其存在。离子释放确定与未包被的对照组(UC-S)相比,包有银的(Ag-S)微球提高了Na +的释放速率,但略微降低了Ca2 +和Si4 +的释放。此外,与UC-S(7.7-9.1)相比,Ag-S降低了pH值至略高于中性(7.3-8.5)。抗菌测试确定浮游性大肠杆菌(p = 0.000),表皮葡萄球菌(p = 0.000)和金黄色葡萄球菌(p = 0.000)的生长显着减少,这取决于Ag的存在以及成熟度的变化(1、7和7)。 30天)。使用L929成纤维细胞的毒性水平测试确定了较低浓度(5μg / ml)的Ag-S的较高细胞活力;此外,在较高浓度(15、30μg / ml)下,未观察到细胞活力的显着降低。

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