Laboratory of Research in Applied Microbiology, University of Franca, Franca, SP 14404-600, Brazil.
J Mater Sci Mater Med. 2011 Jun;22(6):1439-46. doi: 10.1007/s10856-011-4330-7. Epub 2011 May 10.
This study assessed the antimicrobial activity of a new bioactive glass-ceramic (Biosilicate®) against anaerobic, microaerophilic, and facultative anaerobic microorganisms. Evaluation of the antimicrobial activity was carried out by three methods, namely agar diffusion, direct contact, and minimal inhibitory concentration (MIC). For the agar diffusion technique, bio glass-ceramic activity was observed against various microorganisms, with inhibition haloes ranging from 9.0 ± 1.0 to 22.3 ± 2.1 mm. For the direct contact technique, Biosilicate® displayed activity against all the microorganisms, except for S. aureus. In the first 10 min of contact between the microorganisms and Biosilicate®, there was a drastic reduction in the number of viable cells. Confirming the latter results, MIC showed that the Biosilicate® inhibited the growth of microorganisms, with variations between ≤ 2.5 and 20 mg/ml. The lowest MIC values (7.5 to ≤ 2.5 mg/ml) were obtained for oral microorganisms. In conclusion, Biosilicate® exhibits a wide spectrum of antimicrobial properties, including anaerobic bacteria.
本研究评估了一种新型生物活性玻璃陶瓷(Biosilicate®)对厌氧、微需氧和兼性厌氧微生物的抗菌活性。通过三种方法评估抗菌活性,即琼脂扩散、直接接触和最小抑菌浓度(MIC)。琼脂扩散技术中,观察到生物玻璃陶瓷对各种微生物具有活性,抑菌环直径范围为 9.0±1.0 至 22.3±2.1mm。直接接触技术中,Biosilicate®对所有微生物均显示活性,除了金黄色葡萄球菌。在微生物与 Biosilicate®接触的前 10 分钟内,活菌数量急剧减少。MIC 证实了上述结果,表明 Biosilicate®抑制了微生物的生长,变化范围为≤2.5 至 20mg/ml。口腔微生物的最低 MIC 值(7.5 至≤2.5mg/ml)。总之,Biosilicate®表现出广谱抗菌特性,包括厌氧菌。