Department of Preventive Dentistry, Stomatological Hospital of Chongqing Medical University, Chongqing, China.
College of Stomatology, Chongqing Medical University, Chongqing, China.
Front Cell Infect Microbiol. 2023 Apr 4;13:1104295. doi: 10.3389/fcimb.2023.1104295. eCollection 2023.
To compare the differences in salivary metabolites between caries-active and caries-free children in the mixed dentition, and explore their correlation with caries status.
The study involved 20 children (aged 8-9 years) in the mixed dentition, including 10 caries-active (aged 8.6 ± 0.49years) and 10 caries-free children(aged 8.5 ± 0.5years), with a male/female ratio of 1:1. The saliva samples were collected from all children. Metabolite extraction, LC-MS/MS-based untargeted metabolomics, qualitative and semi-quantitative analysis and bioinformatics analysis were performed to identify differential metabolites between the two sample groups. The differential metabolites identified were further analyzed in an attempt to find their correlations with caries status.
In the positive ion mode, a total of 1606 molecular features were detected in the samples of the two groups, 189 of which were differential metabolites when comparing the caries-active group with the caries-free group, including 104 up-regulated and 85 down-regulated metabolites. In the negative ion mode, a total of 532 molecular features were detected in the samples of two groups, 70 of which were differential metabolites when comparing the caries-active group with the caries-free group, including 37 up-regulated and 33 down-regulated metabolites. In the positive ion mode, two of the top 5 up-regulated differential metabolites were found in and annotated to specific metabolic pathways, whereas in the negative ion mode, only one of the top 5 up-regulated differential metabolites was found in and annotated to specific metabolic pathways. In both the positive and negative ion modes, the top 5 down-regulated differential metabolites were both annotated to the metabolic pathways. KEGG pathway enrichment analysis of differential metabolites showed that histamine and arachidonic acid identified in the positive ion mode, as well as succinate and L-histidine identified in the negative ion mode were enriched in the top 3 significantly altered pathways.
The enriched differential metabolites including histamine, L-histidine and succinate were correlated with the presence of dental caries, but their role in the caries process needs to be further investigated.
比较混合牙列中龋齿活跃儿童和无龋儿童唾液代谢物的差异,并探讨其与龋齿状况的相关性。
本研究纳入 20 名(8-9 岁)混合牙列儿童,其中龋齿活跃组 10 名(8.6±0.49 岁),无龋组 10 名(8.5±0.5 岁),男女比例为 1:1。收集所有儿童的唾液样本。进行代谢物提取、基于 LC-MS/MS 的非靶向代谢组学、定性和半定量分析以及生物信息学分析,以鉴定两组样本之间的差异代谢物。进一步分析鉴定出的差异代谢物,试图找到它们与龋齿状况的相关性。
在正离子模式下,两组样本中共检测到 1606 个分子特征,其中 189 个为龋齿活跃组与无龋组比较的差异代谢物,包括 104 个上调和 85 个下调代谢物。在负离子模式下,两组样本中共检测到 532 个分子特征,其中 70 个为龋齿活跃组与无龋组比较的差异代谢物,包括 37 个上调和 33 个下调代谢物。在正离子模式下,前 5 个上调差异代谢物中有 2 个被鉴定为特定代谢途径中的特征分子,而在负离子模式下,前 5 个上调差异代谢物中只有 1 个被鉴定为特定代谢途径中的特征分子。在正、负离子模式下,前 5 个下调差异代谢物均被注释到代谢途径中。差异代谢物的 KEGG 通路富集分析显示,在正离子模式下鉴定出的组胺和花生四烯酸以及在负离子模式下鉴定出的琥珀酸和 L-组氨酸均富集于前 3 个显著改变的通路中。
包括组胺、L-组氨酸和琥珀酸在内的丰富差异代谢物与龋齿的存在相关,但它们在龋齿发生过程中的作用还需要进一步研究。