The dental plaque biofilm matrix

Матрикс биоплёнки зубного налёта
Nicholas S. Jakubovics, Fabian Cieplik, Steven D. Goodman, Graham P. Stafford, Lauren Mashburn‐Warren
2021-03-10

biofilm matrix targetingdental plaque biofilmextracellular polymeric substancesglucan and fructan polysaccharidessubgingival dental plaque
The extracellular matrix is a critical component of microbial biofilms, such as dental plaque, maintaining the spatial arrangement of cells and coordinating cellular functions throughout the structure. The extracellular polymeric substances that comprise the matrix include carbohydrates, nucleic acids, proteins, and lipids, which are frequently organized into macromolecular complexes and/or are associated with the surfaces of microbial cells within the biofilm. Cariogenic dental plaque is rich in glucan and fructan polysaccharides derived from extracellular microbial metabolism of dietary sucrose. By contrast, the matrix of subgingival dental plaque is a complex mixture of macromolecules that is still not well understood. Components of the matrix escape from microbial cells during lysis by active secretion or through the shedding of vesicles and serve to anchor microbial cells to the tooth surface. By maintaining the biofilm in close association with host tissues, the matrix facilitates interactions between microorganisms and the host. The outcome of these interactions may be the maintenance of health or the development of dental disease, such as caries or periodontitis. The matrix affords microbial cells protection against chemical and physical insults and hinders the eradication of pathogenic dental plaque. Therefore, strategies to control the matrix are critical to maintain oral health. This review discusses recent advances in our understanding of the composition, origins, and function of the dental plaque matrix, with a focus on subgingival dental plaque. New strategies to control subgingival dental plaque based on targeting the biofilm matrix are also considered.
1
Cariogenic plaque is enriched in glucan and fructan polysaccharides produced by microbial metabolism of dietary sucrose.
2
Matrix components anchor microbes to tooth surfaces and maintain close microorganism–host interactions that can support health or contribute to caries and periodontitis.
3
The dental plaque extracellular matrix organizes microbial cells and coordinates biofilm-wide functions through carbohydrates, nucleic acids, proteins, and lipids.
4
The matrix protects plaque microorganisms from chemical and physical insults, making matrix-targeted control strategies important for preventing or treating dental disease.
5
The subgingival plaque matrix is a poorly understood, complex mixture of macromolecules originating from cell lysis, active secretion, and vesicle shedding.

dental plaque biofilm matrix, particularly the subgingival dental plaque matrix

the composition, origins, functions, host–microorganism interactions, and matrix-targeted control strategies of the subgingival dental plaque matrix

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Publication Date
2021-03-10
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Authors
Nicholas S. Jakubovics
Fabian Cieplik
Steven D. Goodman
Graham P. Stafford
Lauren Mashburn‐Warren
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