Janus Marleen Marga, Volgenant Catherine Minke Charlotte, Brandt Bernd Willem, Buijs Mark Johannes, Keijser Bart Jan Frederik, Crielaard Wim, Zaura Egija, Krom Bastiaan Philip
Department of Preventive Dentistry, Academic Centre for Dentistry Amsterdam, University of Amsterdam and Vrije Universiteit Amsterdam, Amsterdam, The Netherlands.
Top Institute Food and Nutrition, Wageningen, The Netherlands.
J Oral Microbiol. 2017 Jun 22;9(1):1337477. doi: 10.1080/20002297.2017.1337477. eCollection 2017.
Gingivitis is one of the most common oral infections in humans. While sugar alcohols such as erythritol are suggested to have caries-preventive properties, it may also have beneficial effects in prevention of gingivitis by preventing maturation of oral biofilms. The aim of this study was to assess the effect of erythritol on the microbial ecology and the gingivitis phenotype of oral microcosms. Biofilms were inoculated with stimulated saliva from 20 healthy donors and grown in a gingivitis model in the continuous presence of 0 (control group), 5, and 10% erythritol. After 9 days of growth, biofilm formation, protease activity (gingivitis phenotype), and microbial profile analyses were performed. Biofilm growth was significantly reduced in the presence of erythritol, and this effect was dose dependent. Protease activity and the Shannon diversity index of the microbial profiles of the biofilms were significantly lower when erythritol was present. Microbial profile analysis revealed that presence of erythritol induced a compositional shift from periodontitis- and gingivitis-related taxa toward early colonizers. The results of this study suggest that erythritol suppresses maturation of the biofilms toward unhealthy composition. The gingivitis phenotype was suppressed and biofilm formation was reduced in the presence of erythritol. Therefore, it is concluded that erythritol may contribute to a healthy oral ecosystem .
牙龈炎是人类最常见的口腔感染之一。虽然诸如赤藓糖醇等糖醇类物质被认为具有预防龋齿的特性,但它可能还通过防止口腔生物膜成熟而对预防牙龈炎具有有益作用。本研究的目的是评估赤藓糖醇对口腔微生物群落生态及牙龈炎表型的影响。用来自20名健康供体的刺激唾液接种生物膜,并在0(对照组)、5%和10%赤藓糖醇持续存在的情况下,在牙龈炎模型中培养。生长9天后,进行生物膜形成、蛋白酶活性(牙龈炎表型)及微生物谱分析。在有赤藓糖醇存在的情况下,生物膜生长显著减少,且这种作用呈剂量依赖性。当存在赤藓糖醇时,生物膜的蛋白酶活性及微生物谱的香农多样性指数显著降低。微生物谱分析显示,赤藓糖醇的存在导致了从与牙周炎和牙龈炎相关的分类群向早期定植菌的组成转变。本研究结果表明,赤藓糖醇可抑制生物膜向不健康组成的成熟。在有赤藓糖醇存在的情况下,牙龈炎表型受到抑制,生物膜形成减少。因此,得出结论,赤藓糖醇可能有助于形成健康的口腔生态系统。