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Application of Carbon Source Utilization Patterns To Measure the Metabolic Similarity of Complex Dental Plaque Biofilm Microcosms

机译:碳源利用模式在复杂牙菌斑生物膜缩影代谢相似性测量中的应用

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摘要

Biolog technology was applied to measure the metabolic similarity of plaque biofilm microcosms, which model the complex properties of dental plaque in vivo. The choice of Biolog plate, incubation time, and incubation conditions strongly influenced utilization profiles. For plaque biofilm microcosms, Biolog GP2 plates incubated anaerobically in an H2-free atmosphere gave the clearest profile. To test the application of the Biolog GP2 assay, plaque microcosms were developed under different nutrient conditions in which the frequency of sucrose application was varied. Cluster analysis of Biolog GP2 data from 10 microcosm biofilms correlated with sucrose frequency. Aciduric bacteria (Streptococcus mutans plus lactobacilli) predominated in the plaques receiving high-frequency sucrose applications. Agreement between the Biolog GP2 groupings with nutrient and compositional changes suggests that Biolog analysis is a valuable technique for analyzing the metabolic similarity of dental plaque biofilm microcosms and other high-nutrient or predominantly anaerobic ecosystems.
机译:Biolog技术被用于测量牙菌斑生物膜微观世界的代谢相似性,从而模拟了体内牙菌斑的复杂特性。 Biolog平板的选择,孵育时间和孵育条件极大地影响了利用率。对于噬菌斑生物膜的微观世界,Biolog GP2平板在无H2的氛围中厌氧孵育后,显示出最清晰的轮廓。为了测试Biolog GP2分析的应用,在不同的营养条件下开发了噬菌斑微观世界,在这些条件下蔗糖的施用频率有所变化。来自10个微观生物膜的Biolog GP2数据的聚类分析与蔗糖频率相关。在接受高频蔗糖应用的菌斑中,酸性尿细菌(变形链球菌加乳杆菌)占主导地位。 Biolog GP2分组与营养成分和组成变化之间的一致性表明,Biolog分析是一种用于分析牙菌斑生物膜微观世界和其他高营养或主要厌氧生态系统的代谢相似性的有价值的技术。

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