首页> 外文期刊>Journal of Dental Research: Official Publication of the International Association for Dental Research >In situ Biofilm Formation by Multi-species Oral Bacteria Under Flowing and Anaerobic Conditions.
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In situ Biofilm Formation by Multi-species Oral Bacteria Under Flowing and Anaerobic Conditions.

机译:在流动和厌氧条件下多物种口腔细菌的原位生物膜形成。

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An understanding of biofilm behavior of periodontopathic bacteria is key to the development of effective oral therapies. We hypothesized that interspecies bacterial aggregates play an important role in anaerobic biofilm establishment and proliferation, and contribute to the survivability of the biofilm against therapeutic agents. The system developed in this study assessed a multi-species (Streptococcus gordonii, Actinobacillus actinomycetemcomitans, and Fusobacterium nucleatum) biofilm formation under anaerobic and flowing conditions with the use of an in situ image analysis system. The biofilm was comprised of a base film of non-aggregated cells and complex interspecies aggregates that formed in the planktonic phase which rapidly colonized the surface, reaching 58 +/- 9% and 65 +/- 11.8% coverage by 5 and 24 hrs, respectively. Upon SDS (0.1%) treatment of a 24-hour biofilm, substantial detachment (55 +/- 14%, P < 0.05) of the aggregates was observed, while the base film bacteria remained attached butnon-viable. Rapid re-establishment of the biofilm occurred via attachment of viable planktonic aggregates.
机译:了解牙周病菌的生物膜行为是开发有效口服疗法的关键。我们假设种间细菌聚集体在厌氧生物膜的建立和增殖中起重要作用,并有助于生物膜对治疗剂的生存能力。在这项研究中开发的系统使用原位图像分析系统评估了在厌氧和流动条件下多种物种(戈登链球菌,放线杆菌,放线菌和核纤梭菌)生物膜的形成。生物膜由非聚集细胞的基膜和浮游相中形成的复杂种间聚集体组成,这些浮游相迅速聚集在表面,并在5和24小时内达到58 +/- 9%和65 +/- 11.8%的覆盖率,分别。经SDS(0.1%)处理24小时的生物膜后,观察到聚集体明显脱离(55 +/- 14%,P <0.05),而基膜细菌仍保持附着但不存活。生物膜的快速重建是通过附着有活力的浮游生物而发生的。

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