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

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Author(s):
Costa, Raphael C. ; Bertolini, Martinna ; Costa Oliveira, Barbara E. ; Nagay, Bruna E. ; Dini, Caroline ; Benso, Bruna ; Klein, Marlise I. ; Barao, Valentim A. R. ; Souza, Joao Gabriel S.
Total Authors: 9
Document type: Journal article
Source: CRITICAL REVIEWS IN MICROBIOLOGY; v. N/A, p. 21-pg., 2022-05-18.
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. (AU)

FAPESP's process: 20/10436-4 - Synthesis, characterization and biological performance of pH-sensitive nanopolymers produced by molecular printing for the treatment of peri-implant infections
Grantee:Raphael Cavalcante Costa
Support Opportunities: Scholarships in Brazil - Doctorate
FAPESP's process: 20/05231-4 - Development of a new thermosensitive hydrogel for controlled release of drugs to prevent and treat peri-implant inflammations
Grantee:Valentim Adelino Ricardo Barão
Support Opportunities: Regular Research Grants