Bellantone Maria, Williams Huw D, Hench Larry L
Department of Materials, Imperial College of Science, Technology and Medicine, London, United Kingdom.
Antimicrob Agents Chemother. 2002 Jun;46(6):1940-5. doi: 10.1128/AAC.46.6.1940-1945.2002.
Bioactive glass has found extensive application as an orthopedic and dental graft material and most recently also as a tissue engineering scaffold. Here we report an initial investigation of the in vitro antibacterial properties of AgBG, a novel bioactive glass composition doped with Ag(2)O. The bacteriostatic and bactericidal properties of this new material and of two other bioactive glass compositions, 45S5 Bioglass and BG, have been studied by using Escherichia coli, Pseudomonas aeruginosa, and Staphylococcus aureus as test microorganisms. Concentrations of AgBG in the range of 0.05 to 0.20 mg of AgBG per ml of culture medium were found to inhibit the growth of these bacteria. Not only was AgBG bacteriostatic, but it also elicited a rapid bactericidal action. A complete bactericidal effect was elicited within the first hours of incubation at AgBG concentrations of 10 mg ml(-1). 45S5 Bioglass and BG had no effect on bacterial growth or viability. The antibacterial action of AgBG is attributed exclusively to the leaching of Ag(+) ions from the glass matrix. Analytical measurements rule out any contribution to AgBG-mediated bacterial killing by changes in pH or ionic strength or the dissolution of other ionic species from the biomaterials. Our observations of the dissolution profiles of Ag(+) from AgBG in the presence and absence of bacteria are consistent with silver accumulation by the bacteria.
生物活性玻璃已被广泛用作骨科和牙科移植材料,最近还被用作组织工程支架。在此,我们报告了对一种新型掺杂Ag₂O的生物活性玻璃成分AgBG的体外抗菌性能的初步研究。使用大肠杆菌、铜绿假单胞菌和金黄色葡萄球菌作为测试微生物,研究了这种新材料以及另外两种生物活性玻璃成分45S5生物玻璃和BG的抑菌和杀菌性能。发现每毫升培养基中AgBG浓度在0.05至0.20毫克范围内可抑制这些细菌的生长。AgBG不仅具有抑菌作用,还能引发快速的杀菌作用。在10毫克/毫升的AgBG浓度下孵育的最初几个小时内即可产生完全杀菌效果。45S5生物玻璃和BG对细菌生长或活力没有影响。AgBG的抗菌作用完全归因于Ag⁺离子从玻璃基质中的浸出。分析测量排除了pH值或离子强度变化或生物材料中其他离子物种溶解对AgBG介导的细菌杀灭作用的任何贡献。我们对有无细菌存在时AgBG中Ag⁺溶解曲线的观察结果与细菌对银的积累情况一致。