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FISHing for gutta-percha-adhered biofilms in purulent post-treatment apical periodontitis

机译:捕鱼在脓性治疗顶端牙周炎的脓性治疗后粘附的生物膜

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This study investigated the possibility of depicting individual taxa in clinically relevant biofilms using fluorescent insitu hybridization (FISH). Gutta-percha samples were collected from the apical aspect of root canals associated with a chronic apical abscess (test samples, n=8). Corresponding control samples were obtained from previously filled root canals with apparently normal periapical tissues (n=3). The transport medium was investigated for detached biofilm fragments using FISH staining and conventional epifluorescence microscopy. Gutta-percha samples were stained by multiplex FISH, and inspected using confocal laser scanning microscopy. FISH of the transport medium confirmed the presence of the main species formerly identified by conventional methods in post-treatment purulent endodontic infections, most prominently Fusobacterium spp., Bacteroidetes and Prevotellaceae. Treponemes were identified in five of eight cases associated with purulent infections, but Enterococcus faecalis and Staphylococcus spp. were not identified. The biofilms on gutta-percha from root canals associated with apical periodontitis showed dense aggregates of variable composition. Control samples contained few, if any, bacteria in the transport medium, and featured no biofilms on the respective gutta-percha specimens. The current study revealed some direct, visual insitu information on the nature of biofilms associated with purulent periapical infections in man.
机译:本研究调查了使用荧光Insitu杂交(鱼)在临床相关生物膜中描绘单个分类物的可能性。从与慢性顶端脓肿(试样样品,N = 8)相关的根部管的顶部分布的顶部,从根茎上收集Gutta-percha样品。从预先填充的根部管中获得相应的对照样品,具有明显正常的局部周围组织(n = 3)。研究使用鱼染料和常规的离荧光显微镜研究脱离的生物膜片段的转运培养基。 Gutta-percha样品通过多重鱼染色,并使用共聚焦激光扫描显微镜检查。运输培养基的鱼证实了以前通过常规方法鉴定的主要物种在治疗后的脓性胸腔内感染,最突出的Fusobacterium SPP。,Bacteropetes和Fvotellaceae。在与脓性感染相关的8例中鉴定了葡萄糖,但肠球菌粪便和葡萄球菌SPP。没有被确定。从与顶端牙周炎相关的根系管道的Gutta-porcha上显示出可变组合物的致密聚集体。对照样品含有少量的,如果有的话,如果有的话,并且在各个牙龈上的任何生物膜上都是在各种牙龈上的原膜中。目前的研究揭示了一些关于与人类脓性无刺激感染相关的生物膜性质的直接视觉内部信息。

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