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Orthod Craniofac Res ; 20 Suppl 1: 134-138, 2017 Jun.
Article in English | MEDLINE | ID: mdl-28643906

ABSTRACT

OBJECTIVES: To evaluate the surface properties of two commercially available sealants (Pro Seal® (PS) and Opal® SealTM (OS)) in terms of fluoride(F) release, biofilm formation of Streptococcus mutans and Lactobacillus and the ability to resist acid penetration. SETTING: University of Nebraska Medical Center. MATERIAL & METHODS: Discs of similar diameter and thickness were made from OS and PS. Discs were soaked in double-distilled water, and F released was measured with fluoride meter daily for 14 consecutive days, then at 21 and 28 days. Biofilm formation was evaluated with Streptococcus mutans and Lactobacilli grown on sealant discs using confocal microscopy. Extracted human teeth (n=8) with sealant-coated buccal surfaces and untreated lingual surfaces were exposed to 0.1M lactic acid(pH=4.5) to test the acid penetration. After 1-4 weeks of exposure, teeth were subjected to microhardness testing and SEM microscopy. RESULTS: PS released significantly higher levels of F than OS. PS showed more S. mutans adherence than OS, whereas Lactobacillus did not show any differences in adherence. Both sealants protected enamel surfaces, showing statistically significant difference in the depth of acid penetration compared to their unsealed control sides. CONCLUSION: F release was adequate to aid in remineralization, although clinically it would not likely aid in preventing demineralization as there was no prolonged release of F by both sealants tested. S. mutans adherence to OS surface was less compared to PS surface, which could be of relevance in biofilm formation and white spot lesions. Both sealants protected enamel surfaces from acid penetration.


Subject(s)
Dental Enamel/drug effects , Resin Cements/chemistry , Resin Cements/pharmacology , Tooth Demineralization/prevention & control , Biofilms/drug effects , Fluorides, Topical/pharmacokinetics , Hardness Tests , Humans , In Vitro Techniques , Lactobacillus/drug effects , Microscopy, Confocal , Microscopy, Electron, Scanning , Streptococcus mutans/drug effects , Surface Properties
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