Dental biofilm: ecological interactions in health and disease
Зубной биопленочный матрикс: экологические взаимодействия в здоровье и болезни
2017-03-01
SCID: 54.1/thefqz32
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dental biofilminter-kingdom interactionsmicrobial ecological interactionsoral microbiomesynergistic and antagonistic interactions
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Abstract (AI)
BACKGROUND: The oral microbiome is diverse and exists as multispecies microbial communities on oral surfaces in structurally and functionally organized biofilms. AIM: To describe the network of microbial interactions (both synergistic and antagonistic) occurring within these biofilms and assess their role in oral health and dental disease. METHODS: PubMed database was searched for studies on microbial ecological interactions in dental biofilms. The search results did not lend themselves to systematic review and have been summarized in a narrative review instead. RESULTS: Five hundred and forty-seven original research articles and 212 reviews were identified. The majority (86%) of research articles addressed bacterial-bacterial interactions, while inter-kingdom microbial interactions were the least studied. The interactions included physical and nutritional synergistic associations, antagonism, cell-to-cell communication and gene transfer. CONCLUSIONS: Oral microbial communities display emergent properties that cannot be inferred from studies of single species. Individual organisms grow in environments they would not tolerate in pure culture. The networks of multiple synergistic and antagonistic interactions generate microbial inter-dependencies and give biofilms a resilience to minor environmental perturbations, and this contributes to oral health. If key environmental pressures exceed thresholds associated with health, then the competitiveness among oral microorganisms is altered and dysbiosis can occur, increasing the risk of dental disease.
Key Findings
1
A literature search identified 547 original research articles and 212 reviews about microbial ecological interactions in dental biofilms.
2
If environmental pressures exceed health-associated thresholds, microbial competitiveness shifts, leading to dysbiosis and increased dental disease risk.
3
Microbial interactions in dental biofilms include physical and nutritional synergism, antagonism, cell-to-cell communication, and gene transfer.
4
Most research (86%) focuses on bacterial-bacterial interactions; inter-kingdom interactions are least studied.
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Networks of synergistic and antagonistic interactions create inter-dependencies and confer resilience of biofilms to minor environmental perturbations, contributing to oral health.
6
Oral microbial communities exhibit emergent properties not predictable from single-species studies; individual organisms survive in conditions they cannot tolerate in pure culture.
7
Oral microbiome forms diverse, multispecies, structurally and functionally organized biofilms on oral surfaces.
Research Object
Multispecies dental biofilms (oral microbial communities on oral surfaces)
Research Subject
Ecological interactions within these biofilms (synergistic and antagonistic physical, nutritional, communicative, and gene-transfer interactions) and their role in oral health and dental disease, including resilience and dysbiosis mechanisms
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2017-03-01
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