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Adhesion forces and composition of planktonic and adhering oral microbiomes

机译:浮游和粘附口腔微生物群的粘附力和组​​成

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The oral microbiome consists of a planktonic microbiome residing in saliva and an adhering microbiome (the biofilm adhering to oral hard and soft tissues). Here we hypothesized that possible differences in microbial composition of the planktonic and adhering oral microbiome on teeth can be related to the forces by which different bacterial species are attracted to the tooth surface. The relative presence of 7 oral bacterial species in saliva and biofilm collected from 10 healthy human volunteers was determined twice in each volunteer by denaturing-gradient-gel electrophoresis. Analysis of both microbiomes showed complete separation of the planktonic from the adhering oral microbiome. Next, adhesion forces of corresponding bacterial strains with saliva-coated enamel surfaces were measured by atomic force microscopy. Species that were found predominantly in the adhering microbiome had significantly higher adhesion forces to saliva-coated enamel (-0.60 to -1.05 nN) than did species mostly present in the planktonic microbiome (-0.40 to -0.55 nN). It is concluded that differences in composition of the planktonic and the adhering oral microbiome are due to small differences in the forces by which strains adhere to saliva-coated enamel, providing an important step in understanding site- and material-specific differences in the composition of biofilms in the oral cavity.
机译:口腔微生物组由驻留在唾液中的浮游微生物组和粘附的微生物组(粘附在口腔硬组织和软组织上的生物膜)组成。在这里,我们假设,浮游生物和粘附在口腔上的微生物组的微生物组成可能存在差异,这可能与不同细菌被吸引到牙齿表面的力有关。通过变性梯度凝胶电泳,从每位志愿者中两次确定了从10位健康人类志愿者收集的唾液和生物膜中7种口腔细菌种类的相对存在。对两个微生物组的分析表明,浮游生物与粘附的口腔微生物组已完全分离。接下来,通过原子力显微镜测量相应细菌菌株与唾液涂覆的釉质表面的粘附力。与粘附在浮游微生物组中的菌种(-0.40至-0.55 nN)相比,主要在粘附的微生物组中发现的菌种对唾液涂层牙釉质的粘附力(-0.60至-1.05 nN)明显更高。结论是,浮游生物和粘附的口腔微生物组组成的差异是由于菌株粘附在唾液涂层的牙釉质上的力的微小差异所致,为理解特定部位和材料的差异构成了重要的一步。口腔中的生物膜。

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