The 'sialo-microbial-dental complex' in oral health and disease

Ann Anat. 2016 Jan:203:85-9. doi: 10.1016/j.aanat.2015.02.002. Epub 2015 Feb 24.

Abstract

Biofilms are naturally found in all wet environments including the oral structures of nearly all species. Human oral biofilms have existed since our earliest ancestors and have evolved symbiotically with the dentition over many millennia within a Palaeolithic, hunter-gatherer setting. Irrespective of the plant-animal ratio, it can be argued that the Palaeolithic diet was essentially acidic, and acted as a selective force for much of the evolution of the stomatognathic system. The relationship between saliva, biofilm and teeth, the 'sialo-microbial-dental complex', provides oral health benefits and offers a different perspective to the old dental paradigm that only associated oral biofilms (plaque) with disease (caries). This new paradigm emphasises that oral biofilms are essential for the 'mineral maintenance' of teeth. Oral biofilms provide physical protection from dietary acid and together with bacterial metabolic acids cause the resting pH of the biofilm to fall below neutral. This is then followed by the re-establishment of a neutral environment by chemical interactions mediated by the saliva within the biofilm. Such pH fluctuations are often responsible for the cyclic demineralisation, then remineralisation of teeth, a process necessary for tooth maturation. However, since the advent of farming and especially since the industrial revolution, the increase in consumption of carbohydrates, refined sugars and acidic drinks has changed the ecology of biofilms. Biofilm biodiversity is significantly reduced together with a proliferation of acidogenic and aciduric organisms, tipping the balance of the 'demin-remin' cycle towards net mineral loss and hence caries. In addition, the consumption of acidic drinks in today's societies has removed the protective nature of the biofilm, leading to erosion. Erosion and caries are 'modern-day' diseases and reflect an imbalance within the oral biofilm resulting in the demineralisation of teeth.

Keywords: Caries; Erosion; Oral biofilms; Oral diseases; Palaeolithic diet; Sialo–microbial–dental complex.

Publication types

  • Review

MeSH terms

  • Acids
  • Biofilms*
  • Dental Caries / microbiology
  • Dental Plaque / microbiology
  • Diet
  • Humans
  • Hydrogen-Ion Concentration
  • Mouth / microbiology*
  • Oral Health*
  • Saliva / physiology*
  • Tooth / anatomy & histology
  • Tooth / growth & development
  • Tooth / physiology*
  • Tooth Demineralization
  • Tooth Erosion / microbiology

Substances

  • Acids