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In-vivo shift of the microbiota in oral biofilm in response to frequent sucrose consumption

机译:频繁摄入蔗糖对口腔生物膜中微生物群的体内转移

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摘要

Caries is associated with shifts of microbiota in dental biofilms and primarily driven by frequent sucrose consumption. Data on environmentally induced in vivo microbiota shifts are scarce therefore we investigated the influence of frequent sucrose consumption on the oral biofilm. Splint systems containing enamel slabs were worn for 3 × 7 days with 7-day intervals to obtain oral biofilm samples. After a three-month dietary change of sucking 10 g of sucrose per day in addition to the regular diet, biofilm was obtained again at the end of the second phase. The microbiota was analysed using Illumina MiSeq amplicon sequencing (v1-v2 region). In addition, roughness of the enamel surface was measured with laser scanning microscopy. The sucrose phase resulted in significant differences in beta-diversity and significantly decreased species richness. It was marked by a significant increase in abundance of streptococci, specifically Streptococcus gordonii, Streptococcus parasanguinis and Streptococcus sanguinis. Enamel surface roughness began to increase, reflecting initial impairment of dental enamel surface. The results showed that frequent sucrose consumption provoked compositional changes in the microbiota, leading to an increase of non-mutans streptococci, hence supporting the extended ecological plaque hypothesis and emphasizing the synergy of multiple bacterial species in the development of caries.
机译:龋齿与牙齿生物膜中微生物群的移动有关,并且主要是由于经常食用蔗糖引起的。缺乏环境诱导的体内微生物群转移的数据,因此我们研究了频繁食用蔗糖对口腔生物膜的影响。将包含搪瓷板的夹板系统以7天的间隔佩戴3××7天,以获取口腔生物膜样品。除常规饮食外,每天要进行三个月的饮食变化,每天要摄入10μg蔗糖,然后在第二阶段结束时再次获得生物膜。使用Illumina MiSeq扩增子测序(v1-v2区域)分析了菌群。另外,用激光扫描显微镜测量搪瓷表面的粗糙度。蔗糖相导致β多样性存在显着差异,物种丰富度显着降低。它的特征是链球菌,特别是戈登链球菌,副血链球菌和血链球菌的丰度显着增加。牙釉质表面粗糙度开始增加,反映出牙齿牙釉质表面的初始损伤。结果表明,频繁食用蔗糖会引起微生物群的组成变化,从而导致非变形链球菌增多,从而支持扩展的生态菌斑假说,并强调龋齿发育中多种细菌的协同作用。

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