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Establishment of an Animal Model Using Recombinant NOD.B10.D2 Mice To Study Initial Adhesion of Oral Streptococci

机译:用重组NOD.B10.D2小鼠建立动物模型以研究口腔链球菌的初始黏附

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摘要

An oral biofilm is a community of surface-attached microorganisms that coats the oral cavity, including the teeth, and provides a protective reservoir for oral microbial pathogens, which are the primary cause of persistent and chronic infectious diseases in patients with dry mouth or Sjögren's syndrome (SS). The purpose of this study was to establish an animal model for studying the initial adhesion of oral streptococci that cause biofilm formation in patients with dry mouth and SS in an attempt to decrease the influence of cariogenic organisms and their substrates. In nonobese diabetogenic (NOD) mice that spontaneously develop insulin-dependent diabetes mellitus (IDDM) and SS, we replaced major histocompatibility complex (MHC) class II (Ag7 Eg7) and class I Db with MHC class II (Ad Ed) and class I Dd from nondiabetic B10.D2 mice to produce an animal model that inhibited IDDM without affecting SS. The adhesion of oral streptococci, including Streptococcus mutans, onto tooth surfaces was then investigated and quantified in homologous recombinant N5 (NOD.B10.D2) and N9 (NOD.B10.D2) mice. We found that a higher number of oral streptococci adhered to the tooth surfaces of N5 (NOD.B10.D2) and N9 (NOD.B10.D2) mice than to those of the control C57BL/6 and B10.D2 mice. On the basis of our observation, we concluded that these mouse models might be useful as animal models of dry mouth and SS for in vivo biological studies of oral biofilm formation on the tooth surfaces.
机译:口腔生物膜是覆盖口腔(包括牙齿)的表面附着微生物群落,并为口腔微生物病原体提供了保护性贮藏库,这些病原体是口干或干燥综合征患者持续和慢性传染病的主要原因(SS)。这项研究的目的是建立一个动物模型,用于研究口腔链球菌的初始黏附作用,这种黏附作用会引起口干和SS患者生物膜的形成,从而减少致癌生物及其底物的影响。在自发发展胰岛素依赖型糖尿病(IDDM)和SS的非肥胖型糖尿病(NOD)小鼠中,我们用II类MHC(Ad Ed)和I类替代了主要的组织相容性复合物(MHC)II类(Ag7 Eg7)和Ib类Db。非糖尿病B10.D2小鼠的Dd产生了一种抑制IDDM而又不影响SS的动物模型。然后在同源重组N5(NOD.B10.D2)和N9(NOD.B10.D2)小鼠中研究并量化了口腔链球菌(包括变形链球菌)在牙齿表面的粘附力。我们发现,与对照C57BL / 6和B10.D2小鼠相比,粘附在N5(NOD.B10.D2)和N9(NOD.B10.D2)小鼠牙齿表面的口腔链球菌数量更高。根据我们的观察,我们得出的结论是,这些小鼠模型可作为口干和SS的动物模型,用于在牙齿表面形成口腔生物膜的体内生物学研究。

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