Ana Clara Kuerten Gil, Maick Meneguzzo Prado, Laura Rhoden da Rocha, César Benfatti, Guenther Schuldt Filho, Josiane de Almeida
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The membranes were adapted to specific apparatus and challenged with a mixed bacterial culture composed of A. actinomycetemcomitans b, S. mutans, S. mitis, and A. israelii. After 2 h or 7 days, bacterial adhesion and passage of bacteria were evaluated through CFU counting, which was analyzed by two-way ANOVA e post hoc Tukey, at a 5% significance level. Representative areas of two membranes of each group were analyzed through scanning electron microscopy (SEM) to assess the morphology and organization of the biofilm over the membrane fibers. LC and LP presented similar values of adhered bacterial cells (p > 0.05), significantly inferior when compared to the other groups, in both time points (p < 0.05). All the tested groups were permeable to bacterial cells, with no significant difference between the trial period of 2 h and 7 days (p > 0.05). SEM analyses demonstrated that adhered bacteria number increased throughout the time points (2 h < 7 days). 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引用次数: 0
摘要
目前关于引导骨再生(GBR)和引导组织再生(GTR)膜污染的文献报道称,这些生物材料的物理化学特性可能会影响对细菌的亲和力,这似乎是再生程序临床结果的一个主要缺点。因此,本研究旨在体外评估GTR/GBR的多物种生物膜粘附和细菌通过不同类型的市售膜的通道。测试了四种类型的膜(n=12):LC)Lumina Coat®;JS)Jason®;BG)Biogide®;和LP)Lumina PTFE®。铝箔(AL)模拟了不可渗透的屏障,并用作对照。将膜适应于特定的装置,并用混合细菌培养物攻击,所述混合细菌培养基由共生放线菌b、变位放线菌、米氏放线菌和以色列放线菌组成。2小时或7天后,通过CFU计数评估细菌粘附和细菌传代,CFU计数通过双向ANOVA e post-hoc Tukey分析,具有5%的显著性水平。通过扫描电子显微镜(SEM)分析每组两个膜的代表性区域,以评估膜纤维上生物膜的形态和组织。LC和LP在两个时间点的粘附细菌细胞值相似(p>0.05),与其他组相比明显较差(p<0.05)。所有测试组都对细菌细胞具有渗透性,SEM分析表明,在整个时间点(2小时<7天),粘附细菌数量增加。市售的生物膜显示出强烈的细菌粘附和细菌通过,在整个试验期间细菌粘附和通过增加。
In vitro evaluation of membranes for regenerative procedures against oral bacteria.
The current literature on guided bone regeneration (GBR) and guided tissue regeneration (GTR) membrane contamination reports that the physicochemical characteristics of these biomaterials might influence affinity to bacteria, which appears to be a major drawback for the clinical outcome of the regenerative procedures. Thus, this study aimed to evaluate, in vitro, a multispecies biofilm adherence and passage of bacteria through different types of commercially available membranes for GTR/GBR. Four types of membranes were tested (n=12): LC) Lumina Coat®; JS) Jason®; BG) Biogide®; and LP) Lumina PTFE®. Aluminum foil (AL) simulated an impermeable barrier and was used as the control. The membranes were adapted to specific apparatus and challenged with a mixed bacterial culture composed of A. actinomycetemcomitans b, S. mutans, S. mitis, and A. israelii. After 2 h or 7 days, bacterial adhesion and passage of bacteria were evaluated through CFU counting, which was analyzed by two-way ANOVA e post hoc Tukey, at a 5% significance level. Representative areas of two membranes of each group were analyzed through scanning electron microscopy (SEM) to assess the morphology and organization of the biofilm over the membrane fibers. LC and LP presented similar values of adhered bacterial cells (p > 0.05), significantly inferior when compared to the other groups, in both time points (p < 0.05). All the tested groups were permeable to bacterial cells, with no significant difference between the trial period of 2 h and 7 days (p > 0.05). SEM analyses demonstrated that adhered bacteria number increased throughout the time points (2 h < 7 days). Commercially available biological membranes demonstrated intense bacterial adherence and passage of bacteria, which increased throughout the trial period.
期刊介绍:
Brazilian Dental Journal, publishes Full-Length Papers, Short Communications and Case Reports, dealing with dentistry or related disciplines and edited six times a year.