Characterization of chemical reactions of silver diammine fluoride and hydroxyapatite under remineralization conditions.
Front Oral Health
; 5: 1332298, 2024.
Article
em En
| MEDLINE
| ID: mdl-38496333
ABSTRACT
Introduction:
Silver Diammine Fluoride (SDF) is a clinically used topical agent to arrest dental caries. However, the kinetics of its chemical interactions with hydroxyapatite (HA), the principal inorganic component of dental enamel, are not known. The aim was to characterize the step-wise chemical interactions between SDF and HA powder during the clinically important process of remineralization.Methods:
Two grams of HA powder were immersed in 10â ml acetic acid pH = 4.0 for 2â h to mimic carious demineralization. The powder was then washed and dried for 24â h and mixed with 1.5â ml SDF (Riva Star) for 1â min. The treated powder was then air-dried for 3â min, and 0.2â g was removed and stored in individual tubes each containing 10â ml remineralizing solution. Powder was taken from each tube at various times of exposure to remineralization solution (0â min, 10â min, 2â h, 4â h, 8â h, 24â h, and 10 days), and characterized using Magic Angle Spinning-Nuclear Magnetic Resonance (MAS-NMR) spectroscopy. Results anddiscussion:
19F MAS-NMR spectra showed that calcium fluoride (CaF2) started to form almost immediately after HA was in contact with SDF. After 24â h, the peak shifted to -104.5â ppm suggesting that fluoride substituted hydroxyapatite (FSHA) was formed with time at the expense of CaF2. The 31P MAS-NMR spectra showed a single peak at 2.7â ppm at all time points showing that the only phosphate species present was crystalline apatite. The 35Cl MAS-NMR spectra showed formation of silver chloride (AgCl) at 24â h. It was observed that after the scan, the whitish HA powder changed to black color. In conclusion, this time sequence study showed that under remineralization conditions, SDF initially reacted with HA to form CaF2 which is then transformed to FSHA over time. In the presence of chloride, AgCl is formed which is subsequently photo-reduced to black metallic silver.
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Coleções:
01-internacional
Base de dados:
MEDLINE
Idioma:
En
Revista:
Front Oral Health
Ano de publicação:
2024
Tipo de documento:
Article
País de afiliação:
Reino Unido
País de publicação:
Suíça