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新生种植体周围龈沟初次定植期间的群落动态。

Community dynamics during de novo colonization of the nascent peri-implant sulcus.

作者信息

Dutra Tamires Pereira, Robitaille Nicolas, Altabtbaei Khaled, Dabdoub Shareef M, Kumar Purnima S

机构信息

Department of Periodontics and Oral Medicine, University of Michigan - School of Dentistry. 1011 N. University Ave, Ann Arbor, MI, USA.

Division of Periodontology, College of Dentistry, The Ohio State University, Columbus, OH, USA.

出版信息

Int J Oral Sci. 2025 Apr 29;17(1):37. doi: 10.1038/s41368-025-00367-7.

Abstract

Dental implants have restored masticatory function to over 100 000 000 individuals, yet almost 1 000 000 implants fail each year due to peri-implantitis, a disease triggered by peri-implant microbial dysbiosis. Our ability to prevent and treat peri-implantitis is hampered by a paucity of knowledge of how these biomes are acquired and the factors that engender normobiosis. Therefore, we combined a 3-month interventional study of 15 systemically and periodontally healthy adults with whole genome sequencing, fine-scale enumeration and graph theoretics to interrogate colonization dynamics in the pristine peri-implant sulcus. We discovered that colonization trajectories of implants differ substantially from adjoining teeth in acquisition of new members and development of functional synergies. Source-tracking algorithms revealed that this niche is initially seeded by bacteria trapped within the coverscrew chamber during implant placement. These pioneer species stably colonize the microbiome and exert a sustained influence on the ecosystem by serving as anchors of influential hubs and by providing functions that enable cell replication and biofilm maturation. Unlike the periodontal microbiome, recruitment of new members to the peri-implant community occurs on nepotistic principles. Maturation is accompanied by a progressive increase in anaerobiosis, however, the predominant functionalities are oxygen-dependent over the 12-weeks. The peri-implant community is easily perturbed following crown placement, but demonstrates remarkable resilience; returning to pre-perturbation states within three weeks. This study highlights important differences in the development of the periodontal and peri-implant ecosystems, and signposts the importance of placing implants in periodontally healthy individuals or following the successful resolution of periodontal disease.

摘要

牙种植体已为超过1亿人恢复了咀嚼功能,但每年仍有近100万颗种植体因种植体周炎而失败,种植体周炎是一种由种植体周围微生物群落失调引发的疾病。我们对这些生物群落如何形成以及导致正常生物群落形成的因素知之甚少,这阻碍了我们预防和治疗种植体周炎的能力。因此,我们对15名全身和牙周健康的成年人进行了为期3个月的干预研究,并结合全基因组测序、精细计数和图论来探究原始种植体周龈沟中的定植动态。我们发现,种植体的定植轨迹在获取新成员和功能协同发展方面与相邻牙齿有很大不同。溯源算法显示,这个生态位最初是由种植体植入过程中被困在覆盖螺丝腔内的细菌播种的。这些先锋物种稳定地定殖在微生物群落中,并通过作为有影响力的枢纽的锚点以及提供使细胞复制和生物膜成熟的功能,对生态系统产生持续影响。与牙周微生物群落不同,种植体周群落新成员的招募遵循裙带关系原则。成熟过程伴随着厌氧菌数量的逐渐增加,然而,在12周内主要功能是依赖氧气的。种植体周群落在冠修复后很容易受到干扰,但具有显著的恢复力;在三周内恢复到干扰前的状态。这项研究突出了牙周和种植体周生态系统发育的重要差异,并表明在牙周健康的个体中植入种植体或在牙周疾病成功治愈后植入种植体的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3c9f/12041454/931c293f1984/41368_2025_367_Fig1_HTML.jpg

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