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Evaluation of Three Borate-Bioactive Glass Compositions for Antibacterial Applications

机译:三种硼酸盐生物活性玻璃组合物的抗菌应用评价

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The prevalence of cases of antibiotic resistant infections and the limited number of new antibiotics call for new strategies to prevent bacterial infections. In this study, we evaluate the effectiveness of three different compositions of bioactive glass, doped with silver as an antimicrobial agent for potential applications in preventing bacterial infections. The different glasses were formulated to dissolve and release silver at different rates enabling their use in different applications either individually or in combination to achieve a desired effect. Silver oxide (Ag_(2)O) was incorporated into various glass formulations and antibacterial effectiveness was measured using radius of inhibition. Each silver-doped glass effectively inhibited the growth of Escherichia coli , Staphylococcus aureus and Pseudomonas aeruginosa with radius of inhibition correlating directly with the dissolution rate of the glass—the faster dissolving glass producing the larger radius of inhibition. Suspending particles of the silver containing glass in phosphate buffered saline or fetal calf serum, slowed the dissolution of each glass and extended the effectiveness of the silver containing glass over time (based on size of the radius of inhibition) compared to water. Potential applications of the powdered glass formulations would be to incorporate glasses with different properties into coatings or cosmetics. To investigate the feasibility of these applications, the silver-glass powder was incorporated into polycaprolactone polymer to determine the antibacterial properties of the imbedded glass powder. Based on this investigation, the silver glass formulations reported herein have potential applications in the medical device, dental, pharmaceutical and cosmetic industries.
机译:抗生素抗性感染病例的患病率和有限数量的新抗生素呼吁预防细菌感染的新策略。在这项研究中,我们评估了三种不同组成的生物活性玻璃组合物的有效性,掺杂银作为抗微生物剂,用于预防细菌感染的潜在应用。配制不同的眼镜以在不同的速率下溶解和释放银,使其在不同的应用中单独使用或组合以实现所需效果。将氧化银(Ag_(2)O)掺入各种玻璃制剂中,使用抑制半径测量抗菌效果。每种银掺杂玻璃有效地抑制大肠杆菌,金黄色葡萄球菌和假单胞菌铜绿假单胞菌的生长,其具有直接与玻璃的溶解速率相关的抑制率 - 较快的溶解玻璃生产较大的半径抑制。悬浮在磷酸盐缓冲盐水或胎牛血清中含银玻璃的颗粒,减缓了每个玻璃的溶解,并随着水的时间(基于抑制半径的尺寸)延长了银含有玻璃的有效性。粉末状玻璃配方的潜在应用是将具有不同性质的眼镜掺入涂料或化妆品中。为了研究这些应用的可行性,将银玻璃粉末掺入聚己内酯聚合物中,以确定嵌入式玻璃粉末的抗菌性质。基于该研究,本文报道的银玻璃配方具有医疗装置,牙科,制药和化妆品行业的潜在应用。

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