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In vitro antistaphylococcal effects of a novel 45S5 bioglass/agar-gelatin biocomposite films

机译:新型45S5生物玻璃/琼脂明胶生物复合膜的体外抗葡萄球菌作用

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Aims: To assess the antibacterial efficacy of new composite materials developed from microparticles of 45S5 bioactive glass (BG) and agar-gelatin films. Methods and Results: In vitro antibacterial activity was evaluated against Staphylococcus spp. because of the importance of this pathogen in damaged tissues and in failures associated with biomaterial implants. To our knowledge, this is the first paper reporting on the suitable combination of BG and agar-gelatin for bioactive and antibacterial films. Bacterial suspensions up or below 10(5) CFU ml(-1) reflecting situations of wound infection and of noninfection, respectively, were prepared and then put in contact with the biomaterials at 37 degrees C. After 24 and 48 h of incubation, the pH value was measured and the staphylococci strains viability was determined by counting in Mueller-Hinton agar plates. Moreover, the biomaterials were prepared for observation under scanning electron microscopy (SEM). Biocomposites (BCs) showed a strong antibacterial effect against all staphylococci strains tested. Some differences were found depending on the strain, the inoculum size and the contact time. This effect was correlated with an alkalinization of the media. By SEM analyses, no bacterial presence was observed on the surface of BCs in any of the cell concentrations tested at any time. Conclusions: Overall, the coating of 45S5 BG on agar-gelatin films promoted BCs with strong antistaphylococcal activity. The effect was efficient under bacterial concentration up or below 10(5) CFU ml (1). Additionally, none of the strains were found on BCs surfaces. Significance and Impact of Study: 45S5 bioglass/agar-gelatin biocomposite films are reported for the first time. The results suggest a potential application as wound dressing.RI Boccaccini, Aldo/C-7905-2013
机译:目的:评估由45S5生物活性玻璃(BG)和琼脂明胶薄膜的微粒开发的新型复合材料的抗菌效果。方法和结果:评价了对葡萄球菌的体外抗菌活性。因为这种病原体在受损的组织中以及与生物材料植入物相关的衰竭中的重要性。据我们所知,这是第一篇报道BG和琼脂明胶适用于生物活性和抗菌膜的论文。制备分别高于或低于10(5)CFU ml(-1)的细菌悬液,分别反映伤口感染和未感染的情况,然后在37摄氏度下与生物材料接触。孵育24和48小时后,测量pH值,并通过在Mueller-Hinton琼脂平板中计数来确定葡萄球菌菌株的生存力。此外,准备了生物材料用于在扫描电子显微镜(SEM)下观察。生物复合物(BCs)对所有测试的葡萄球菌菌株均显示出强大的抗菌作用。根据菌株,接种量和接触时间,发现了一些差异。该作用与介质的碱化有关。通过SEM分析,在任何时间测试的任何细胞浓度下,在BCs表面均未观察到细菌的存在。结论:总体而言,琼脂明胶膜上的45S5 BG涂层可促进具有强抗葡萄球菌活性的BCs。在细菌浓度达到或低于10(5)CFU ml(1)的情况下,这种效果是有效的。此外,在BCs表面未发现任何菌株。研究的意义和影响:首次报道了45S5生物玻璃/琼脂-明胶生物复合膜。该结果表明了其作为伤口敷料的潜在应用.RI Boccaccini,Aldo / C-7905-2013

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