微生物生态失调,钛释放和种植体周围炎

IF 5.7 1区 医学 Q1 DENTISTRY, ORAL SURGERY & MEDICINE
G.A. Kotsakis, S.M. Ganesan
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引用次数: 0

摘要

种植体周围粘膜屏障是一个独特的微环境,宿主-微生物组相互作用发生在植入生物材料表面。因此,种植体周围免疫不仅对口腔健康至关重要,而且有助于维持健康的生物材料-组织平衡。这篇综述深入探讨了宿主因子、生物材料特性和微生物组之间复杂的相互作用,重点讨论了种植体周围生态失调的机制。对这一复杂环境的调查使人们对从种植体中释放的钛颗粒有了新的认识。当生物材料发生破坏时,种植体降解产物形成颗粒释放到种植体周围的缝隙中,对局部免疫监测产生深远影响。与天然牙列的比较分析强调了钛颗粒引起的独特免疫反应,从而暗示它们是区分种植周与牙周炎症的种植周生态失调的关键调节剂。尽管如此,宿主-生物材料相互作用的稳态平衡的破坏与植入体周围微生物群的致病转移有关,这与人类体内钛颗粒有关。总的来说,现在已经确定,为了阐明控制种植体周围生态失调的机制,必须联合研究宿主-微生物组-生物材料的这个三角形。这篇综述强调了一些研究的发现,这些研究强调了种植体周围生态失调的多面性,强调了宿主免疫、生物材料特性和微生物生态之间复杂的串扰。这些发现表明,钛颗粒暴露体可能改变种植体周围组织中的关键炎症级联反应,包括toll样受体激活、炎性体和补体信号传导,从而导致非解决性破坏性炎症。在种植体周围组织中以种植体降解产物形式存在的非生物危险信号可能使抗菌单药治疗在很大程度上对治疗种植体周围炎无效。反过来,种植体周围炎治疗的未来似乎在于针对钛介导的炎症途径的靶向宿主调节干预的发展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Microbial Dysbiosis, Titanium Release, and Peri-implantitis
The peri-implant mucosal barrier is a unique microenvironment where host-microbiome interactions take place on the surface of an implanted biomaterial. Therefore, peri-implant immunity not only is quintessential to oral health but also contributes to the maintenance of the biomaterial-tissue equilibrium in health. This review delves into the intricate interplay between host factors, biomaterial properties, and the microbiome with a focus on the mechanisms underlying peri-implant dysbiosis. Investigations into this complex milieu have led to the emerging understanding of titanium particles released from the implant as significant exposomes. When biomaterial breakdown occurs, implant degradation products form particles that are released in the peri-implant crevice, exerting profound effects on the local immune surveillance. Comparative analyses with natural dentition highlight the distinct immune responses elicited by titanium particles, thereby implicating them as a key modulator of peri-implant dysbiosis that differentiates peri-implant from periodontal inflammation. Nonetheless, disruptions in the homeostatic balance of host-biomaterial interactions are linked to pathogenic shifts of the peri-implant microbiome that are correlated with titanium particles in humans. Collectively, it is now well established that to elucidate the mechanisms governing peri-implant dysbiosis, this triangle of host-microbiome-biomaterial has to be conjointly investigated. This review highlights findings from studies that have underscored the multifaceted nature of peri-implant dysbiosis, emphasizing the intricate crosstalk between host immunity, biomaterial characteristics, and microbial ecology. These findings suggest that the titanium particle exposome may alter key inflammatory cascades in the peri-implant tissues including toll-like receptor activation and inflammasome and complement signaling, which lead to nonresolving destructive inflammation. The presence of abiotic danger signals in the form of implant degradation products in peri-implant tissues may make antimicrobial monotherapies largely ineffective for managing peri-implantitis. In turn, the future of peri-implantitis therapy seems to lie in the development of targeted host modulatory interventions against titanium-mediated inflammatory pathways.
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来源期刊
Journal of Dental Research
Journal of Dental Research 医学-牙科与口腔外科
CiteScore
15.30
自引率
3.90%
发文量
155
审稿时长
3-8 weeks
期刊介绍: The Journal of Dental Research (JDR) is a peer-reviewed scientific journal committed to sharing new knowledge and information on all sciences related to dentistry and the oral cavity, covering health and disease. With monthly publications, JDR ensures timely communication of the latest research to the oral and dental community.
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