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An oral multispecies biofilm model for high content screening applications

机译:高含量筛选应用的口腔多物种生物膜模型

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摘要

Peri-implantitis caused by multispecies biofilms is a major complication in dental implant treatment. The bacterial infection surrounding dental implants can lead to bone loss and, in turn, to implant failure. A promising strategy to prevent these common complications is the development of implant surfaces that inhibit biofilm development. A reproducible and easy-to-use biofilm model as a test system for large scale screening of new implant surfaces with putative antibacterial potency is therefore of major importance. In the present study, we developed a highly reproducible in vitro four-species biofilm model consisting of the highly relevant oral bacterial species Streptococcus oralis, Actinomyces naeslundii, Veillonella dispar and Porphyromonas gingivalis. The application of live/dead staining, quantitative real time PCR (qRT-PCR), scanning electron microscopy (SEM) and urea-NaCl fluorescence in situ hybridization (urea-NaCl-FISH) revealed that the four-species biofilm community is robust in terms of biovolume, live/dead distribution and individual species distribution over time. The biofilm community is dominated by S. oralis, followed by V. dispar, A. naeslundii and P. gingivalis. The percentage distribution in this model closely reflects the situation in early native plaques and is therefore well suited as an in vitro model test system. Furthermore, despite its nearly native composition, the multispecies model does not depend on nutrient additives, such as native human saliva or serum, and is an inexpensive, easy to handle and highly reproducible alternative to the available model systems. The 96-well plate format enables high content screening for optimized implant surfaces impeding biofilm formation or the testing of multiple antimicrobial treatment strategies to fight multispecies biofilm infections, both exemplary proven in the manuscript.
机译:由多种生物膜引起的种植体周围炎是牙种植体治疗的主要并发症。牙齿植入物周围的细菌感染会导致骨质流失,进而导致植入物失效。防止这些常见并发症的一种有前途的策略是抑制生物膜形成的植入物表面的形成。因此,可重现且易于使用的生物膜模型作为用于大规模筛选具有推定抗菌力的新植入物表面的测试系统非常重要。在本研究中,我们开发了一种高度可复制的体外四物种生物膜模型,该模型由高度相关的口腔细菌物种口腔链球菌,内生放线菌,维隆菌和齿龈卟啉菌组成。活/死染色,定量实时PCR(qRT-PCR),扫描电子显微镜(SEM)和尿素-NaCl荧光原位杂交(urea-NaCl-FISH)的应用表明,四种物种的生物膜群落在生物量,活/死分布和随时间推移的单个物种分布的术语。生物膜群落以口头链球菌为主,其次是V. dispar,A。naeslundii和P. gingivalis。该模型中的百分比分布紧密反映了早期天然菌斑的情况,因此非常适合作为体外模型测试系统。此外,尽管多物种模型的成分几乎是天然的,但它并不依赖于营养添加剂,例如天然的人类唾液或血清,它是现有模型系统的廉价,易于处理且可高度复制的替代品。 96孔板形式可对阻碍生物膜形成的优化植入物表面进行高含量筛选,或测试多种抗微生物治疗策略以对抗多种生物膜感染,这两种方法均在手稿中得到了证明。

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