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首页> 外文期刊>European journal of oral sciences >Dentin tubule invasion by Enterococcus faecalis under stress conditions exvivo
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Dentin tubule invasion by Enterococcus faecalis under stress conditions exvivo

机译:应激条件下粪肠球菌对牙本质小管的侵袭

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摘要

Enterococcus faecalis is the species most frequently isolated from failed endodontic treatments because it can survive under stress conditions imposed by root canal treatment. The objective of this study was to determine the ability of E.faecalis to invade dentine tubules under alkaline and energy-starvation stress and to explore the potential mechanisms. Roots from single-rooted human teeth were infected with E.faecalis under alkaline and energy-starvation stress conditions. After 4wk of culture, samples were processed to establish the tubule-penetration distance. In addition, the hydrophobicity of E.faecalis cells under these conditions was analysed and the expression of genes involved in adhesion was quantified by real-time quantitative PCR. Culture of E. faecalis under alkaline and energy-starvation stress conditions resulted in a marked reduction of tubule-penetration distance, a significant increase in hydrophobicity of the bacterial surface, and marked down-regulation of most adhesin genes compared with E. faecalis cultured in tryptic soy broth. The results indicate that the dentine tubule invasion ability of E.faecalis was markedly decreased under alkaline and glucose-starvation stress conditions, possibly because of the increase of hydrophobicity and down-regulation of some adhesion genes.
机译:粪肠球菌是最常从牙髓治疗失败中分离的物种,因为它可以在根管治疗所施加的压力条件下生存。这项研究的目的是确定粪肠球菌在碱性和能量饥饿的压力下侵入牙本质小管的能力,并探讨其潜在机制。单根人牙的根在碱性和能量饥饿的条件下被粪肠球菌感染。培养4周后,处理样品以确定小管穿透距离。另外,分析了在这些条件下粪肠球菌细胞的疏水性,并通过实时定量PCR对参与粘附的基因的表达进行了定量。与在体外培养的粪肠球菌相比,在碱性和能量饥饿的条件下培养粪肠球菌可显着降低小管穿透距离,显着增加细菌表面的疏水性,并显着下调大多数黏附素基因。胰蛋白酶大豆肉汤。结果表明,在碱性和葡萄糖饥饿胁迫条件下,粪肠球菌对牙本质小管的侵袭能力明显降低,这可能是由于疏水性增加和某些粘附基因的下调所致。

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