Li Yang, He Xinyu, Luo Guocheng, Zhao Juanjuan, Bai Guohui, Xu Delin
Department of Medical Instrumental Analysis, Zunyi Medical University, Zunyi, China.
School of Stomatology, Zunyi Medical University, Zunyi, China.
Front Cell Infect Microbiol. 2025 Apr 30;15:1556688. doi: 10.3389/fcimb.2025.1556688. eCollection 2025.
Periodontitis, a prevalent inflammatory oral disease, is intricately linked to disruptions in the oral microbiome, a state known as microbial dysbiosis. This review explores the pivotal roles of key pathogens, including and , in driving periodontitis and examines the underlying molecular mechanisms that disrupt microbial homeostasis. We discuss how interactions among bacterial species affect the oral ecosystem's balance and how microbial metabolites influence the host immune responses, contributing to disease progression. Leveraging these insights, we propose cutting-edge therapeutic approaches aimed at restoring microbial equilibrium. These include personalized pharmacological interventions tailored to individual microbiome profiles and innovative microbiome-targeted strategies such as probiotic formulations and bacteriophage therapy. By precisely modulating microbial communities, these strategies hold promise for enhancing treatment efficacy, preventing disease recurrence, and mitigating issues like antimicrobial resistance. Overall, this review paves the way for novel prevention and management techniques in periodontitis, offering significant improvements in oral health outcomes for patients.
牙周炎是一种常见的炎症性口腔疾病,与口腔微生物群的紊乱密切相关,这种状态被称为微生物失调。本综述探讨了包括[具体病原体1]和[具体病原体2]在内的关键病原体在引发牙周炎中的关键作用,并研究了破坏微生物稳态的潜在分子机制。我们讨论了细菌物种之间的相互作用如何影响口腔生态系统的平衡,以及微生物代谢产物如何影响宿主免疫反应,从而促进疾病进展。利用这些见解,我们提出了旨在恢复微生物平衡的前沿治疗方法。这些方法包括根据个体微生物群特征定制的个性化药物干预措施,以及创新的针对微生物群的策略,如益生菌制剂和噬菌体疗法。通过精确调节微生物群落,这些策略有望提高治疗效果、预防疾病复发,并减轻抗菌药物耐药性等问题。总体而言,本综述为牙周炎的新型预防和管理技术铺平了道路,有望显著改善患者的口腔健康状况。