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宏基因组测序为研究牙周炎的龈下细菌组和发病机制提供了新的视角。

Metagenomic sequencing provides new insights into the subgingival bacteriome and aetiopathology of periodontitis.

机构信息

Department of Restorative Dentistry, National Dental Centre Singapore, Singapore, Singapore.

Singapore Oral Microbiomics Initiative, National Dental Research Institute Singapore, SingHealth, Singapore, Singapore.

出版信息

J Periodontal Res. 2021 Apr;56(2):205-218. doi: 10.1111/jre.12811. Epub 2021 Jan 6.

Abstract

"Open-ended" molecular techniques such as 16S rRNA sequencing have revealed that the oral bacteriome of subgingival plaque is more diverse than originally thought. 16S rRNA analysis has demonstrated that constituents of the overall bacterial community are qualitatively similar in health and disease, differing mainly in their relative proportions with respect to each other. Species in low abundance can also act as critical species, leading to the concept of global community dysbiosis which relates to shifts in community structure, rather than shifts in membership. Correlation analysis suggests that coordinated interactions in the community are essential for incipient dysbiosis and disease pathogenesis. The subgingival bacteriome also provides biomarkers that are useful for disease detection and management. Combined with clinical and biological parameters, these may assist clinicians in developing and implementing effective treatment strategies to restore microbial homeostasis and monitor disease. Identification of higher risk groups or poor responders to treatment using unique subgingival bacteriome signatures may also lead to early intervention.

摘要

“开放式”分子技术,如 16S rRNA 测序,揭示了龈下菌斑的口腔细菌组比最初认为的更加多样化。16S rRNA 分析表明,健康和疾病中的整体细菌群落的组成在质量上是相似的,主要区别在于彼此之间的相对比例。丰度低的物种也可以作为关键物种,导致全球群落失调的概念与群落结构的变化有关,而不是成员的变化。相关分析表明,群落中的协调相互作用对于初始失调和疾病发病机制至关重要。龈下细菌组还提供了用于疾病检测和管理的生物标志物。这些标志物与临床和生物学参数相结合,可能有助于临床医生制定和实施有效的治疗策略,以恢复微生物体内平衡并监测疾病。使用独特的龈下细菌组特征识别更高风险群体或对治疗反应不佳的患者,也可能导致早期干预。

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