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羟基癸烯酸下调 gtfB 和 gtfC 的表达,防止变形链球菌黏附于细胞表面。

Hydroxy decenoic acid down regulates gtfB and gtfC expression and prevents Streptococcus mutans adherence to the cell surfaces.

机构信息

School of Advanced Medical Technologies, Tehran University of Medical Sciences (TUMS), Tehran, Iran.

出版信息

Ann Clin Microbiol Antimicrob. 2012 Jul 28;11:21. doi: 10.1186/1476-0711-11-21.

Abstract

BACKGROUND

10-Hydroxy-2-decenoic acid, an unsaturated fatty acid is the most active and unique component to the royal jelly that has antimicrobial properties. Streptococcus mutans is associated with pathogenesis of oral cavity, gingivoperiodontal diseases and bacteremia following dental manipulations. In the oral cavity, S. mutans colonize the soft tissues including tongue, palate, and buccal mucosa. When considering the role of supragingival dental plaque in caries, the proportion of acid producing bacteria (particularly S. mutans), has direct relevance to the pathogenicity of the plaque. The genes that encode glucosyltransferases (gtfs) especially gtfB and gtfC are important in S. mutans colonization and pathogenesis. This study investigated the hydroxy-decenoic acid (HDA) effects on gtfB and gtfC expression and S. mutans adherence to cells surfaces.

METHODS

Streptococcus mutans was treated by different concentrations of HPLC purified HDA supplied by Iran Beekeeping and Veterinary Association. Real time RT-PCR and western blot assays were conducted to evaluate gtfB and gtfC genes transcription and translation before and after HDA treatment. The bacterial attachment to the cell surfaces was evaluated microscopically.

RESULTS

500 μg ml-1 of HDA inhibited gtfB and gtfC mRNA transcription and its expression. The same concentration of HDA decreased 60% the adherence of S. mutans to the surface of P19 cells.

CONCLUSION

Hydroxy-decenoic acid prevents gtfB and gtfC expression efficiently in the bactericide sub-concentrations and it could effectively reduce S. mutans adherence to the cell surfaces. In the future, therapeutic approaches to affecting S. mutans could be selective and it's not necessary to put down the oral flora completely.

摘要

背景

10-羟基-2-癸烯酸是蜂王浆中最具活性和独特的成分,具有抗菌特性。变形链球菌与口腔、牙周疾病和牙操作后的菌血症的发病机制有关。在口腔中,变形链球菌定植于软组织,包括舌、腭和颊粘膜。在考虑龈上牙菌斑在龋齿中的作用时,产酸菌(特别是变形链球菌)的比例与菌斑的致病性直接相关。编码葡糖基转移酶(gtfs)的基因,特别是 gtfB 和 gtfC,在变形链球菌定植和发病机制中很重要。本研究调查了羟基-癸烯酸(HDA)对 gtfB 和 gtfC 表达以及变形链球菌对细胞表面黏附的影响。

方法

用伊朗养蜂和兽医协会提供的 HPLC 纯化 HDA 处理变形链球菌。在 HDA 处理前后,通过实时 RT-PCR 和 Western blot 分析评估 gtfB 和 gtfC 基因的转录和翻译。通过显微镜评估细菌对细胞表面的附着。

结果

500μg/ml 的 HDA 抑制了 gtfB 和 gtfC mRNA 的转录及其表达。相同浓度的 HDA 使变形链球菌对 P19 细胞表面的黏附减少了 60%。

结论

羟基-癸烯酸在杀菌亚浓度下能有效地阻止 gtfB 和 gtfC 的表达,并能有效地减少变形链球菌对细胞表面的黏附。在未来,影响变形链球菌的治疗方法可以是选择性的,没有必要完全抑制口腔菌群。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/193a/3495742/80f4ff50ac8a/1476-0711-11-21-1.jpg

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