Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Effect of Tannic Acid on the Protective Properties of the in situ Formed Pellicle

View through CrossRef
<b><i>Objectives:</i></b> In the present in situ/ex vivo study the impact of tannic acid on the erosion-protective properties of the enamel pellicle was tested. Additionally, the antiadherent and antibacterial effects of tannic acid were evaluated. <b><i>Methods:</i></b> The pellicle was formed in situ on bovine enamel samples fixed on individual splints worn by 6 subjects. Following 1 min of pellicle formation the volunteers rinsed for 10 min with tannic acid. After further oral exposure for 19 min, 109 min, and 8 h overnight, respectively, slabs were incubated in HCl ex vivo (pH 2.0, 2.3, 3.0) over 120 s. Subsequently, kinetics of calcium and phosphate release were measured photometrically. Samples after a 1-min fluoride mouth rinse as well as enamel samples with and without a 30-min in situ pellicle served as controls. Antiadherent effects were evaluated after a 1-min rinse with tannic acid and oral exposure of the slabs overnight. DAPI (4′,6-diamidino-2-phenylindole) combined with concanavalin A staining and live/dead staining was used for fluorescence microscopic visualization and quantification of adherent bacteria and glucans. Modification of the pellicle's ultrastructure by tannic acid was evaluated by transmission electron microscopy (TEM). <b><i>Results:</i></b> Tannic acid significantly improved the erosion-protective properties of the pellicle in a pH-dependent manner. Bacterial adherence and glucan formation on enamel were significantly reduced after rinses with tannic acid as investigated by fluorescence microscopy. TEM imaging indicated that rinsing with tannic acid yielded a sustainable modification of the pellicle; it was distinctly more electron dense. <b><i>Conclusion:</i></b> Tannic acid offers an effective and sustainable approach for the prevention of caries and erosion.
Title: Effect of Tannic Acid on the Protective Properties of the in situ Formed Pellicle
Description:
<b><i>Objectives:</i></b> In the present in situ/ex vivo study the impact of tannic acid on the erosion-protective properties of the enamel pellicle was tested.
Additionally, the antiadherent and antibacterial effects of tannic acid were evaluated.
<b><i>Methods:</i></b> The pellicle was formed in situ on bovine enamel samples fixed on individual splints worn by 6 subjects.
Following 1 min of pellicle formation the volunteers rinsed for 10 min with tannic acid.
After further oral exposure for 19 min, 109 min, and 8 h overnight, respectively, slabs were incubated in HCl ex vivo (pH 2.
0, 2.
3, 3.
0) over 120 s.
Subsequently, kinetics of calcium and phosphate release were measured photometrically.
Samples after a 1-min fluoride mouth rinse as well as enamel samples with and without a 30-min in situ pellicle served as controls.
Antiadherent effects were evaluated after a 1-min rinse with tannic acid and oral exposure of the slabs overnight.
DAPI (4′,6-diamidino-2-phenylindole) combined with concanavalin A staining and live/dead staining was used for fluorescence microscopic visualization and quantification of adherent bacteria and glucans.
Modification of the pellicle's ultrastructure by tannic acid was evaluated by transmission electron microscopy (TEM).
<b><i>Results:</i></b> Tannic acid significantly improved the erosion-protective properties of the pellicle in a pH-dependent manner.
Bacterial adherence and glucan formation on enamel were significantly reduced after rinses with tannic acid as investigated by fluorescence microscopy.
TEM imaging indicated that rinsing with tannic acid yielded a sustainable modification of the pellicle; it was distinctly more electron dense.
<b><i>Conclusion:</i></b> Tannic acid offers an effective and sustainable approach for the prevention of caries and erosion.

Related Results

Effect of Safflower Oil on the Protective Properties of the in situ Formed Salivary Pellicle
Effect of Safflower Oil on the Protective Properties of the in situ Formed Salivary Pellicle
<b><i>Aim:</i></b> The prevalence of dental erosion is still increasing. A possible preventive approach might be rinsing with edible oils to improve the pro...
Enzymes in the in‐situ pellicle of children with different caries activity
Enzymes in the in‐situ pellicle of children with different caries activity
The present study investigated, for the first time, enzymes in the in‐situ pellicle of children. Furthermore, it was purposed to detect glucosyltransferase (GTF) isoforms in each c...
Synergistic Effects of Polyphenols and Stannous Ions on Pellicle Modification and Erosion Protection In Situ
Synergistic Effects of Polyphenols and Stannous Ions on Pellicle Modification and Erosion Protection In Situ
Background: Stannous ions and polyphenols are effective substances in preventive dentistry. The present study’s aim was to investigate whether a combination of these substance grou...
Salivary Carbonic Anhydrase Isoenzyme VI Is Located in the Human Enamel Pellicle
Salivary Carbonic Anhydrase Isoenzyme VI Is Located in the Human Enamel Pellicle
Salivary carbonic anhydrase (CA VI) appears to protect teeth from caries via mechanisms other than direct regulation of salivary pH and buffering capacity. To elucidate whether CA ...
Electron microscopic detection of salivary α‐amylase in the pellicle formed in situ
Electron microscopic detection of salivary α‐amylase in the pellicle formed in situ
Immunological and biochemical analyses have shown that α‐amylase is an essential component of the acquired pellicle. After adsorption, this enzyme might act as a receptor for bacte...
Application of Plant Extracts for the Prevention of Dental Erosion: An in situ/in vitro Study
Application of Plant Extracts for the Prevention of Dental Erosion: An in situ/in vitro Study
<b><i>Objectives:</i></b> Antiadherent and antibacterial effects of certain plant extracts have been proven to be beneficial in preventive dentistry. In the...
Enzymes in the acquired enamel pellicle
Enzymes in the acquired enamel pellicle
The acquired pellicle is a biofilm, free of bacteria, covering oral hard and soft tissues. It is composed of mucins, glycoproteins and proteins, among which are several enzymes. Th...

Back to Top