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Novel Model for Multispecies Biofilms That Uses Rigid Gas-Permeable Lenses

机译:使用刚性透气膜的多物种生物膜的新型模型

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Oral biofilms comprise complex multispecies consortia aided by specific inter- and intraspecies interactions occurring among commensals and pathogenic bacterial species. Oral biofilms are primary initiating factors of periodontal disease, although complex multifactorial biological influences, including host cell responses, contribute to the individual outcome of the disease. To provide a system to study initial stages of interaction between oral biofilms and the host cells that contribute to the disease process, we developed a novel in vitro model system to grow biofilms on rigid gas-permeable contact lenses (RGPLs), which enable oxygen to permeate through the lens material. Bacterial species belonging to early- and late-colonizing groups were successfully established as single- or three-species biofilms, with each group comprising Streptococcus gordonii, Streptococcus oralis, and Streptococcus sanguinis; S. gordonii, Actinomyces naeslundii, and Fusobacterium nucleatum; or S. gordonii, F. nucleatum, and Porphyromonas gingivalis. Quantification of biofilm numbers by quantitative PCR (qPCR) revealed substantial differences in the magnitude of bacterial numbers in single-species and multispecies biofilms. We evaluated cell-permeable conventional nucleic acid stains acridine orange, hexidium iodide, and Hoechst 33258 and novel SYTO red, blue, and green fluorochromes for their effect on bacterial viability and fluorescence yield to allow visualization of the aggregates of individual bacterial species by confocal laser scanning microscopy (CLSM). Substantial differences in the quantity and distribution of the species in the multispecies biofilms were identified. The specific features of these biofilms may help us better understand the role of various bacteria in local challenge of oral tissues.
机译:口腔生物膜包括复杂的多物种联合体,这些共生体由共生和致病细菌物种之间发生的特定种间和种内相互作用所辅助。口腔生物膜是牙周疾病的主要起因,尽管复杂的多因素生物学影响(包括宿主细胞反应)有助于疾病的个体发生。为了提供一种系统来研究口腔生物膜与促成疾病过程的宿主细胞之间相互作用的初始阶段,我们开发了一种新型的体外模型系统,以在刚性透气性隐形眼镜(RGPL)上生长生物膜,从而使氧气能够透过镜片材料。已成功地将属于早期和晚期定殖组的细菌物种建立为单物种或三物种生物膜,每组包括戈登链球菌,口头链球菌和血红链球菌。戈登氏葡萄球菌,内氏放线菌和核纤梭菌;或S. gordonii,F。nucleatum和Porphyromonas gingivalis。通过定量PCR(qPCR)对生物膜数量的量化显示,单物种和多物种生物膜中细菌数量的大小存在显着差异。我们评估了细胞可渗透的常规核酸染色剂a啶橙,碘化己二酸和Hoechst 33258以及新型SYTO红色,蓝色和绿色荧光染料对细菌生存力和荧光产量的影响,从而可以通过共聚焦激光观察单个细菌物种的聚集体扫描显微镜(CLSM)。确定了物种在多物种生物膜中的数量和分布有很大差异。这些生物膜的特殊功能可能有助于我们更好地了解各种细菌在口腔组织局部刺激中的作用。

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