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长期咀嚼改变唾液代谢组学特征。

Long-Term Mastication Changed Salivary Metabolomic Profiles.

作者信息

Saeki Yoji, Takenouchi Akane, Otani Etsuyo, Kim Minji, Aizawa Yumi, Aita Yasuko, Tomita Atsumi, Sugimoto Masahiro, Matsukubo Takashi

机构信息

Central Laboratory, Lotte Co., Ltd., 3-1-1 Numakage, Minami-ku, Saitama 336-8601, Japan.

Shinjuku Medical Career College, 5 Samon-cho, Shinju-ku, Tokyo 160-0017, Japan.

出版信息

Metabolites. 2022 Jul 18;12(7):660. doi: 10.3390/metabo12070660.

Abstract

Saliva is an ideal biofluid for monitoring oral and systemic health. Repeated mastication is a typical physical stimulus that improves salivary flow and oral hygiene. Recent metabolomic studies have shown the potential of salivary metabolomic components for various disease monitoring systems. Here, we evaluated the effect of long-term mastication on salivary metabolomic profiles. Young women with good oral hygiene (20.8 ± 0.3 years, n = 17) participated. They were prohibited from chewing gum during control periods (4 weeks each) and were instructed to chew a piece of gum base seven times a day for 10 min each time during the intervention period. Paired samples of unstimulated whole saliva collected on the last day of the control and intervention period were compared. Liquid chromatography−time-of-flight mass spectrometry successfully quantified 85 metabolites, of which 41 showed significant differences (p < 0.05, Wilcoxon paired test corrected by false discovery rate). Except for a few metabolites, such as citrate, most metabolites showed lower concentrations after the intervention. The pathways related to glycogenic amino acids, such as alanine, arginine, and glutamine, altered considerably. This study suggests that long-term mastication induces unstimulated salivary component-level changes.

摘要

唾液是监测口腔和全身健康的理想生物流体。反复咀嚼是一种典型的物理刺激,可改善唾液分泌和口腔卫生。最近的代谢组学研究表明,唾液代谢组学成分在各种疾病监测系统中具有潜力。在此,我们评估了长期咀嚼对唾液代谢组学谱的影响。参与研究的是口腔卫生良好的年轻女性(20.8±0.3岁,n = 17)。在对照期(各4周)内,她们被禁止嚼口香糖,在干预期内,她们被指示每天咀嚼一块口香糖基料7次,每次10分钟。比较在对照期和干预期最后一天采集的未刺激全唾液配对样本。液相色谱-飞行时间质谱成功定量了85种代谢物,其中41种显示出显著差异(p < 0.05,经错误发现率校正的Wilcoxon配对检验)。除了少数代谢物,如柠檬酸盐外,大多数代谢物在干预后浓度较低。与生糖氨基酸相关的途径,如丙氨酸、精氨酸和谷氨酰胺,发生了相当大的变化。这项研究表明,长期咀嚼会引起未刺激唾液成分水平的变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a12b/9322701/cda328f36d03/metabolites-12-00660-g001.jpg

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