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牙周炎中微生物生物膜的最新进展:体外生物膜模型分析

Recent Updates on Microbial Biofilms in Periodontitis: An Analysis of In Vitro Biofilm Models.

作者信息

Prado Maick Meneguzzo, Figueiredo Nathalia, Pimenta Andréa de Lima, Miranda Tamires Szeremeske, Feres Magda, Figueiredo Luciene Cristina, de Almeida Josiane, Bueno-Silva Bruno

机构信息

Chemical and Food Engineering Department, Federal University of Santa Catarina, Florianópolis, SC, Brazil.

Dental Research Division, Guarulhos University, Guarulhos, SP, Brazil.

出版信息

Adv Exp Med Biol. 2022;1373:159-174. doi: 10.1007/978-3-030-96881-6_8.

Abstract

The development of oral biofilm models has been extremely important to study the specific role of most microbial species at the early stages of periodontitis. The current knowledge on monospecies or multispecies biofilms originates mainly from the observation of in vitro dynamic or static biofilm model systems, which were engineered to mimic clinical oral conditions. In the last few decades, mounting evidence has confirmed that biofilms are the major form of bacterial lifestyle, and more importantly, that microorganisms dwelling in sessile mixed-species aggregates display completely different phenotypes and physiological characteristics than when living in planktonic pure cultures. Interspecies interactions within these communities, mediated by chemical communication systems, have been shown to affect biofilm physiology and increase antimicrobial resistance by up to 1000 fold. These aspects reinforce the importance of developing multispecies biofilm models to better understand and control biofilms. Literature reports demonstrate that while monospecies models are still most commonly used in caries research, authors have used different multispecies models to study periodontal diseases. Periodontitis is a polymicrobial biofilm-dependent disease mainly associated with Porphyromonas gingivalis, Tannerella forsythia, and Treponema denticola. Interestingly, these species hardly adhere to substrates commonly used for biofilm formation, which makes multispecies models essential for an accurate analysis of periodontitis-related biofilms. The multispecies models currently available are generally composed of 6-10 species, but a more recent 34-species model was developed to better examine the dynamics within oral biofilms. The complexity of such polymicrobial biofilm models mimics more consistently the oral microbiome and different aspects of the oral environment. Collectively, the evidence on multispecies biofilm models described herein may support future studies on the use of antimicrobials for biofilm control as well as provide research opportunities to expand the current knowledge on interspecies interactions. The present manuscript reviews the most recent updates on in vitro biofilm model systems for periodontitis.

摘要

口腔生物膜模型的发展对于研究大多数微生物物种在牙周炎早期阶段的具体作用极为重要。目前关于单物种或多物种生物膜的知识主要源于对体外动态或静态生物膜模型系统的观察,这些系统旨在模拟临床口腔状况。在过去几十年中,越来越多的证据证实生物膜是细菌生存方式的主要形式,更重要的是,与浮游纯培养物相比,生活在固着混合物种聚集体中的微生物表现出完全不同的表型和生理特征。这些群落中的种间相互作用由化学通讯系统介导,已被证明会影响生物膜生理,并使抗菌抗性增加多达1000倍。这些方面强化了开发多物种生物膜模型以更好地理解和控制生物膜的重要性。文献报道表明,虽然单物种模型在龋齿研究中仍然最常用,但作者们已使用不同的多物种模型来研究牙周疾病。牙周炎是一种多微生物生物膜依赖性疾病,主要与牙龈卟啉单胞菌、福赛坦氏菌和具核梭杆菌有关。有趣的是,这些物种很难附着在常用于生物膜形成的底物上,这使得多物种模型对于准确分析与牙周炎相关的生物膜至关重要。目前可用的多物种模型通常由6 - 10个物种组成,但最近开发了一种34物种模型,以更好地研究口腔生物膜内的动态变化。这种多微生物生物膜模型的复杂性更一致地模拟了口腔微生物群和口腔环境的不同方面。总体而言,本文所述的关于多物种生物膜模型的证据可能支持未来关于使用抗菌剂控制生物膜的研究,并提供研究机会以扩展当前关于种间相互作用的知识。本手稿综述了牙周炎体外生物膜模型系统的最新进展。

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