Publication: Zinc and silica are active components to efficiently treat in vitro simulated eroded dentin.
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Identifiers
Date
2018-01-29
Authors
Osorio, Raquel
Toledano-Osorio, Manuel
Osorio, Estrella
Aguilera, Fátima S
Padilla-Mondéjar, Sussette
Toledano, Manuel
Advisors
Journal Title
Journal ISSN
Volume Title
Publisher
Springer
Abstract
Biomaterials for treating dentin hypersensitivity and dentin wear were evaluated to efficiently occlude the dentinal tubules and to increase dentin resistance to abrasion. Twenty-four dentin surfaces were treated with EDTA to expose dentinal tubules and were (1) non-brushed, (2) brushed with distilled water, or with pastes containing (3) monetite, (4) brushite, (5) Zn-monetite, (6) Zn-brushite, (7) Silica-brushite, and (8) NovaMin®. Topographical, nanomechanical, and chemical analysis were assessed on dentin surfaces (n = 3) after artificial saliva immersion for 24 h, and after citric acid challenge. Twenty-one further dentin specimens were created to evaluate dentin permeability after brushing, saliva storage, and acid application (n = 3). ANOVA, Student-Newman-Keuls (p Particles containing major proportion of silica attained intratubular occlusion by carbonate crystals (Raman carbonate peak heights 15.17 and 19.24 au; complex modulus 110 and 140 GPa, at intratubular dentin). When brushing with pastes containing higher proportion of silica or zinc, phosphate calcium compounds were encountered into tubules and over dentin surfaces (Raman intratubular phosphate peak heights 49 to 70 au, and at the intertubular dentin 78 to 92). The formed carbonated apatite and calcium phosphate layer were resistant to citric acid application. Zinc compounds drastically increased tubule occlusion, decreased dentin permeability (up to 30%), and augmented mechanical properties at the intertubular dentin (90-130 GPa); it was maintained after acid challenging. Zinc-containing pastes occluded dentinal tubules and improved dentin mechanical properties. Using zinc as an active component to treat eroded dentin is encouraged.
Description
MeSH Terms
Calcium Phosphates
Dentin Permeability
Dentin Sensitivity
Edetic Acid
Glass
In Vitro Techniques
Saliva, Artificial
Silicon Dioxide
Surface Properties
Tooth Erosion
Toothbrushing
Zinc
Dentin Permeability
Dentin Sensitivity
Edetic Acid
Glass
In Vitro Techniques
Saliva, Artificial
Silicon Dioxide
Surface Properties
Tooth Erosion
Toothbrushing
Zinc
DeCS Terms
Cepillado Dental
Dióxido de Silicio
Saliva artificial
Ácido Edético
Zinc
Sensibilidad de la dentina
Dióxido de Silicio
Saliva artificial
Ácido Edético
Zinc
Sensibilidad de la dentina
CIE Terms
Keywords
Dentin, Mechanical properties, Raman, Silica, Zinc
Citation
Osorio R, Toledano-Osorio M, Osorio E, Aguilera FS, Padilla-Mondéjar S, Toledano M. Zinc and silica are active components to efficiently treat in vitro simulated eroded dentin. Clin Oral Investig. 2018 Nov;22(8):2859-2870.