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患龋和无龋儿童的口腔生物膜组成及表型

Oral biofilm composition and phenotype in caries-active and caries-free children.

作者信息

Boisen Gabriella, Brogårdh-Roth Susanne, Neilands Jessica, Mira Alex, Carda-Diéguez Miguel, Davies Julia R

机构信息

Section for Oral Biology and Pathology, Faculty of Odontology, Malmö University, Malmö, Sweden.

Biofilms Research Center for Biointerfaces, Malmö University, Malmö, Sweden.

出版信息

Front Oral Health. 2024 Oct 22;5:1475361. doi: 10.3389/froh.2024.1475361. eCollection 2024.

Abstract

INTRODUCTION

During development of dental caries, oral biofilms undergo changes in microbial composition and phenotypical traits. The aim of this study was to compare the acid tolerance (AT) of plaque from two groups of children: one with severe caries (CA) and one with no caries experience (CF) and to correlate this to the microbial composition and metabolic profile of the biofilms.

METHODS

Dental plaque samples from 20 children (2-5 years) in each group were studied. The AT was analyzed by viability assessment after exposure to an acid challenge (pH 3.5), using LIVE/DEAD® BacLight™ stain and confocal microscopy. Levels of acid tolerance (AT) were evaluated using a scoring system ranging from 1 (no/low AT), to 5 (high/all AT). Metabolic profiles were investigated following a 20 mM glucose pulse for one hour through Nuclear Magnetic Resonance (NMR). Microbial composition was characterized by 16S RNA Illumina sequencing.

RESULTS

The mean AT score of the CA group (4.1) was significantly higher than that of the CF group (2.6,  < 0.05). When comparing the end-products of glucose metabolism detected after a glucose-pulse, the CA samples showed a significantly higher lactate to acetate, lactate to formate, lactate to succinate and lactate to ethanol ratio than the CF samples ( < 0.05). The bacterial characterization of the samples revealed 25 species significantly more abundant in the CA samples, including species of and ( < 0.05)

DISCUSSION

Our results show that AT in pooled plaque from the oral cavity of children with severe caries is increased compared to that in healthy subjects and that this can be related to differences in the metabolic activity and microbial composition of the biofilms. Thus, the overall of dental plaque appears to be a promising indicator of the caries status of individuals. However, longitudinal studies investigating how the AT changes over time in relation to caries development are needed before plaque AT could be considered as a prediction method for the development of dental caries.

摘要

引言

在龋齿发展过程中,口腔生物膜的微生物组成和表型特征会发生变化。本研究的目的是比较两组儿童牙菌斑的耐酸性(AT):一组患有严重龋齿(CA),另一组无龋齿经历(CF),并将其与生物膜的微生物组成和代谢谱相关联。

方法

对每组20名2至5岁儿童的牙菌斑样本进行研究。通过使用LIVE/DEAD® BacLight™染色和共聚焦显微镜,在暴露于酸性挑战(pH 3.5)后通过活力评估来分析耐酸性。使用从1(无/低耐酸性)到5(高/全部耐酸性)的评分系统评估耐酸性(AT)水平。通过核磁共振(NMR)在20 mM葡萄糖脉冲1小时后研究代谢谱。通过16S RNA Illumina测序对微生物组成进行表征。

结果

CA组的平均AT评分(4.1)显著高于CF组(2.6,<0.05)。在比较葡萄糖脉冲后检测到的葡萄糖代谢终产物时,CA样本显示乳酸与乙酸、乳酸与甲酸、乳酸与琥珀酸以及乳酸与乙醇的比率显著高于CF样本(<0.05)。样本的细菌表征显示,CA样本中有25种物种明显更为丰富,包括 和 的物种(<0.05)

讨论

我们的结果表明,与健康受试者相比,患有严重龋齿的儿童口腔中混合牙菌斑的耐酸性增加,这可能与生物膜的代谢活性和微生物组成差异有关。因此,牙菌斑的总体耐酸性似乎是个体龋齿状况的一个有前景的指标。然而,在牙菌斑耐酸性可被视为龋齿发展的预测方法之前,需要进行纵向研究来调查耐酸性如何随时间与龋齿发展相关变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2380/11534697/51d00c1ecbb2/froh-05-1475361-g001.jpg

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