Gardner Alexander, Carpenter Guy, So Po-Wah
Salivary Research, Centre for Host-microbiome Interactions, Faculty of Dental, Oral & Craniofacial Sciences, King's College London, SE1 9RT London, UK.
Department of Restorative Dentistry, Dental Hospital and School, University of Dundee, DD1 4HR Dundee, UK.
Metabolites. 2020 Jan 26;10(2):47. doi: 10.3390/metabo10020047.
Metabolomic profiling of biofluids, e.g., urine, plasma, has generated vast and ever-increasing amounts of knowledge over the last few decades. Paradoxically, metabolomic analysis of saliva, the most readily-available human biofluid, has lagged. This review explores the history of saliva-based metabolomics and summarizes current knowledge of salivary metabolomics. Current applications of salivary metabolomics have largely focused on diagnostic biomarker discovery and the diagnostic value of the current literature base is explored. There is also a small, albeit promising, literature base concerning the use of salivary metabolomics in monitoring athletic performance. Functional roles of salivary metabolites remain largely unexplored. Areas of emerging knowledge include the role of oral host-microbiome interactions in shaping the salivary metabolite profile and the potential roles of salivary metabolites in oral physiology, e.g., in taste perception. Discussion of future research directions describes the need to begin acquiring a greater knowledge of the function of salivary metabolites, a current research direction in the field of the gut metabolome. The role of saliva as an easily obtainable, information-rich fluid that could complement other gastrointestinal fluids in the exploration of the gut metabolome is emphasized.
在过去几十年里,对生物流体(如尿液、血浆)进行代谢组学分析已经产生了大量且不断增加的知识。矛盾的是,对唾液(最容易获取的人体生物流体)的代谢组学分析却滞后了。本综述探讨了基于唾液的代谢组学的历史,并总结了唾液代谢组学的当前知识。唾液代谢组学的当前应用主要集中在诊断生物标志物的发现上,并探讨了当前文献库的诊断价值。关于使用唾液代谢组学监测运动表现也有一个规模虽小但前景广阔的文献库。唾液代谢物的功能作用在很大程度上仍未得到探索。新出现的知识领域包括口腔宿主 - 微生物群相互作用在塑造唾液代谢物谱中的作用以及唾液代谢物在口腔生理学(如味觉感知)中的潜在作用。对未来研究方向的讨论描述了开始更多了解唾液代谢物功能的必要性,这是肠道代谢组学领域当前的一个研究方向。强调了唾液作为一种易于获取、信息丰富的流体在探索肠道代谢组学中补充其他胃肠液的作用。