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Effect of mechanically stimulated saliva on initial human dental biofilm formation

机译:机械刺激唾液对初始人体牙科生物膜形成的影响

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This study evaluated the impact of mechanically stimulated saliva on initial bacterial colonization. Interaction between oral bacteria and both unstimulated and stimulated saliva was examined in vitro by laying labeled bacteria over SDS-PAGE-separated salivary proteins. The effects of chewing on in vivo biofilm, microbial composition, and spatial arrangement were examined in two human volunteers using an intraoral stent containing retrievable enamel chips. In vitro experiments showed that bacterial binding to proteins from stimulated saliva was lower than that to proteins from unstimulated saliva. Lack of binding activity was noted with Streptococcus mutans and Lactobacillus casei. Human Oral Microbe Identification Microarray (HOMIM) analyses revealed a consistent chewing-related increase in the binding of Streptococcus anginosus and Streptococcus gordonii. Immunofluorescence microscopy demonstrated the presence of multi-species colonies and cells bearing different serotypes of the coaggregation-mediating streptococcal cell-surface receptor polysaccharides (RPS). Differences in bacterial colonization were noted between the two volunteers, while the type 4 RPS-reactive serotype was absent in one volunteer. Cells reacting with antibody against Rothia or Haemophilus were prominent in the early biofilm. While analysis of the data obtained demonstrated inter-individual variations in both in vitro and in vivo bacterial binding patterns, stimulating saliva with multiple orosensory stimuli may modulate oral bacterial colonization of tooth surfaces.
机译:该研究评估了机械刺激的唾液对初始细菌定植的影响。通过将标记的细菌置于SDS-PAGE分离的唾液蛋白,在体外检查口腔细菌和未刺激和刺激的唾液之间的相互作用。使用含有可检索的牙釉质芯片的口腔支架,在两个人志愿者中检查咀嚼体内生物膜,微生物组合物和空间装置的影响。体外实验表明,来自刺激的唾液的细菌结合与来自未刺激的唾液的蛋白质低于蛋白质。用链球菌和乳酸杆菌病了缺乏结合活性。人口腔微生物鉴定微阵列(Homim)分析揭示了链球菌和链球菌的结合的一致咀嚼相关增加。免疫荧光显微镜证明存在多物种菌落和轴承不同血清型的细胞的存在介导的介导的链球菌细胞表面受体多糖(RPS)。在两个志愿者之间注意到细菌定植的差异,而在一个志愿者中不存在4型RPS反应性血清型。与抗体或嗜血杆菌的抗体反应的细胞在生物膜早期突出。虽然所获得的数据分析在体外和体内细菌结合模式中显示出单独的各种变化,但刺激唾液具有多个溶血性刺激可以调节牙齿表面的口服细菌定植。

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