Scinovex
reviewTop 1% cited

The Role of Bacteria in the Caries Process

Journal of Dental Research · 2010 · Vol. 90(3) · pp. 294–303
Nana TakahashiBente Nyvad

Abstract

Dental biofilms produce acids from carbohydrates that result in caries. According to the extended caries ecological hypothesis, the caries process consists of 3 reversible stages. The microflora on clinically sound enamel surfaces contains mainly non-mutans streptococci and Actinomyces, in which acidification is mild and infrequent. This is compatible with equilibrium of the demineralization/remineralization balance or shifts the mineral balance toward net mineral gain (dynamic stability stage). When sugar is supplied frequently, acidification becomes moderate and frequent. This may enhance the acidogenicity and acidurance of the non-mutans bacteria adaptively. In addition, more aciduric strains, such as 'low-pH' non-mutans streptococci, may increase selectively. These microbial acid-induced adaptation and selection processes may, over time, shift the demineralization/remineralization balance toward net mineral loss, leading to initiation/progression of dental caries (acidogenic stage). Under severe and prolonged acidic conditions, more aciduric bacteria become dominant through acid-induced selection by temporary acid-impairment and acid-inhibition of growth (aciduric stage). At this stage, mutans streptococci and lactobacilli as well as aciduric strains of non-mutans streptococci, Actinomyces, bifidobacteria, and yeasts may become dominant. Many acidogenic and aciduric bacteria are involved in caries. Environmental acidification is the main determinant of the phenotypic and genotypic changes that occur in the microflora during caries.

Oral microbiology and periodontitis researchDental Health and Care UtilizationEndodontics and Root Canal TreatmentsActinomycesStreptococcus mutansDemineralizationBacteriaMicrobiologyBiofilmRoot cariesRemineralisationAcidogenesisChemistry

MeSH terms

ActinomycesAnimalsBifidobacteriumDental CariesDental PlaqueGlycolysisHumansHydrogen-Ion ConcentrationLactobacillusStreptococcusEcosystemBiofilmsHost-Pathogen Interactions
Citations
1,167
FWCI
26.74
field-weighted impact
References
104
Percentile
100%
vs. same field & year
Citations per year
Cited by
Diet and Dental Caries
Journal of Dental Research · 2015 · 498 citations
The oral microbiota: dynamic communities and host interactions
Nature Reviews Microbiology · 2018 · 2,058 citations
Human oral microbiota and its modulation for oral health
Biomedicine & Pharmacotherapy · 2018 · 529 citations
References
Bergey's Manual of Systematic Bacteriology
Annals of Internal Medicine · 1990 · 15,674 citations
Identification of early microbial colonizers in human dental biofilm
Journal of Applied Microbiology · 2004 · 451 citations
Defining the Normal Bacterial Flora of the Oral Cavity
Journal of Clinical Microbiology · 2005 · 3,070 citations
Bacteria of Dental Caries in Primary and Permanent Teeth in Children and Young Adults
Journal of Clinical Microbiology · 2008 · 951 citations
Role of Micro-organisms in Caries Etiology
Journal of Dental Research · 1994 · 683 citations
Molecular Analysis of Bacterial Species Associated with Childhood Caries
Journal of Clinical Microbiology · 2002 · 737 citations
Alkali production by oral bacteria and protection against dental caries
FEMS Microbiology Letters · 2000 · 385 citations
Bergey's Manual of Systematic Bacteriology.
Annals of Internal Medicine · 1985 · 4,940 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.