The effect of red wine in modifying the salivary pellicle and modulating dental erosion kinetics. Article

Carvalho, Thiago S, Pham, Khoa N, Niemeyer, Samira H et al. (2021). The effect of red wine in modifying the salivary pellicle and modulating dental erosion kinetics. . 129(1), e12749. 10.1111/eos.12749

cited authors

  • Carvalho, Thiago S; Pham, Khoa N; Niemeyer, Samira H; Baumann, Tommy

authors

abstract

  • This study investigated the potential of red wine in modulating dental erosion kinetics in the presence or absence of salivary pellicle. Polished human enamel specimens were used in two conditions; presence or absence of acquired enamel pellicle; and subdivided according to exposure: red wine, orange juice, apple juice, or citric acid. The specimens were incubated in clarified whole human saliva (presence of acquired enamel pellicle) or in a humid chamber (absence of acquired enamel pellicle) for 2 h at 37°C, then in the test substances for 1 min, at 25°C, under shaking. This was repeated four times. Surface hardness was measured initially and after each cycle and surface reflection intensity was measured initially and after all cycles. In the presence of acquired enamel pellicle, red wine caused the least surface hardness loss, followed by orange juice, apple juice, and citric acid. Statistically significantly less surface reflection intensity loss was observed for red wine and orange juice than for apple juice and citric acid. In the absence of acquired enamel pellicle, red wine and orange juice caused less surface hardness loss than apple juice and citric acid. Orange juice showed the least surface reflection intensity loss, followed by red wine, citric acid, and apple juice. The polyphenol composition of these drinks can notably modulate the erosion kinetics.

publication date

  • February 1, 2021

keywords

  • Dental Enamel
  • Dental Pellicle
  • Humans
  • Kinetics
  • Saliva
  • Tooth Erosion
  • Wine

Digital Object Identifier (DOI)

Medium

  • Print-Electronic

start page

  • e12749

volume

  • 129

issue

  • 1