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与牙种植体疾病相关的多微生物生物膜:揭示细胞外生物膜基质的关键作用

Polymicrobial biofilms related to dental implant diseases: unravelling the critical role of extracellular biofilm matrix.

作者信息

Costa Raphael C, Bertolini Martinna, Costa Oliveira Barbara E, Nagay Bruna E, Dini Caroline, Benso Bruna, Klein Marlise I, Barāo Valentim A R, Souza Joāo Gabriel S

机构信息

Department of Prosthodontics and Periodontology, Piracicaba Dental School, University of Campinas (UNICAMP), Piracicaba, Brazil.

Department of Oral Health and Diagnostic Sciences, University of Connecticut Health Center, Farmington, CT, USA.

出版信息

Crit Rev Microbiol. 2023 May;49(3):370-390. doi: 10.1080/1040841X.2022.2062219. Epub 2022 May 18.

Abstract

Biofilms are complex tri-dimensional structures that encase microbial cells in an extracellular matrix comprising self-produced polymeric substances. The matrix rich in extracellular polymeric substance (EPS) contributes to the unique features of biofilm lifestyle and structure, enhancing microbial accretion, biofilm virulence, and antimicrobial resistance. The role of the EPS matrix of biofilms growing on biotic surfaces, especially dental surfaces, is largely unravelled. To date, there is a lack of a broad overview of existing literature concerning the relationship between the EPS matrix and the dental implant environment and its role in implant-related infections. Here, we discuss recent advances in the critical role of the EPS matrix on biofilm growth and virulence on the dental implant surface and its effect on the etiopathogenesis and progression of implant-related infections. Similar to other biofilms associated with human diseases/conditions, EPS-enriched biofilms on implant surfaces promote microbial accumulation, microbiological shift, cross-kingdom interaction, antimicrobial resistance, biofilm virulence, and, consequently, peri-implant tissue damage. But intriguingly, the protagonism of EPS role on implant-related infections and the development of matrix-target therapeutic strategies has been neglected. Finally, we highlight the need for more in-depth analyses of polymicrobial interactions within EPS matrix and EPS-targeting technologies' rationale for disrupting the complex biofilm microenvironment with more outstanding translation to implant applications in the near future.

摘要

生物膜是复杂的三维结构,将微生物细胞包裹在由自身产生的聚合物质组成的细胞外基质中。富含细胞外聚合物(EPS)的基质促成了生物膜生活方式和结构的独特特征,增强了微生物的附着、生物膜毒性和抗微生物耐药性。在生物表面尤其是牙齿表面生长的生物膜中EPS基质的作用在很大程度上尚未阐明。迄今为止,缺乏关于EPS基质与牙种植体环境之间的关系及其在种植体相关感染中作用的现有文献的全面概述。在此,我们讨论了EPS基质在牙种植体表面生物膜生长和毒性方面的关键作用的最新进展,以及它对种植体相关感染的病因和进展的影响。与其他与人类疾病/状况相关的生物膜类似,种植体表面富含EPS的生物膜促进微生物聚集、微生物群落转变、跨界相互作用、抗微生物耐药性、生物膜毒性,进而导致种植体周围组织损伤。但有趣的是,EPS在种植体相关感染中的主要作用以及基于基质的治疗策略的开发一直被忽视。最后,我们强调需要更深入地分析EPS基质内的多微生物相互作用,以及EPS靶向技术在不久的将来破坏复杂生物膜微环境并更好地转化为种植体应用的基本原理。

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