Yu X, Devine D A, Vernon J J
Division of Oral Biology, School of Dentistry, University of Leeds, Leeds, UK.
J Oral Microbiol. 2024 Jan 31;16(1):2307416. doi: 10.1080/20002297.2024.2307416. eCollection 2024.
Dental caries and periodontal disease are amongst the most prevalent global disorders. Their aetiology is rooted in microbial activity within the oral cavity, through the generation of detrimental metabolites and the instigation of potentially adverse host immune responses. Due to the increasing threat of antimicrobial resistance, alternative approaches to readdress the balance are necessary. Advances in sequencing technologies have established relationships between disease and oral dysbiosis, and commercial enterprises seek to identify probiotic and prebiotic formulations to tackle preventable oral disorders through colonisation with, or promotion of, beneficial microbes. It is the metabolic characteristics and immunomodulatory capabilities of resident species which underlie health status. Research emphasis on the metabolic environment of the oral cavity has elucidated relationships between commensal and pathogenic organisms, for example, the sequential metabolism of fermentable carbohydrates deemed central to acid production in cariogenicity. Therefore, a focus on the preservation of an ecological homeostasis in the oral environment may be the most appropriate approach to health conservation. In this review we discuss an ecological approach to the maintenance of a healthy oral environment and debate the potential use of probiotic and prebiotic supplementation, specifically targeted at sustaining oral niches to preserve the delicately balanced microbiome.
龋齿和牙周病是全球最普遍的疾病之一。它们的病因源于口腔内的微生物活动,通过产生有害代谢产物以及引发潜在的不良宿主免疫反应。由于抗菌药物耐药性的威胁日益增加,需要采取替代方法来重新恢复平衡。测序技术的进步已经确立了疾病与口腔生态失调之间的关系,商业企业试图通过有益微生物的定植或促进来确定益生菌和益生元配方,以应对可预防的口腔疾病。常驻物种的代谢特征和免疫调节能力是健康状况的基础。对口腔代谢环境的研究重点已经阐明了共生生物和致病生物之间的关系,例如,可发酵碳水化合物的顺序代谢被认为是致龋性中酸产生的核心。因此,关注口腔环境中生态平衡的维持可能是保持健康的最合适方法。在这篇综述中,我们讨论了维持健康口腔环境的生态学方法,并探讨了益生菌和益生元补充剂的潜在用途,特别是针对维持口腔生态位以保护微妙平衡的微生物群。