2023
DOI: 10.3390/polym15020283
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Marginal Micro-Seal and Tensile Bond Strength of a Biopolymer Hybrid Layer Coupled with Dental Prosthesis Using a Primerless-Wet System

Abstract: The aim of this study is to compare the marginal seal and tensile bond strength (TBS) of prostheses fixed to enamel-dentin using different adhesive systems. Resin-composite inlays directly fabricated from Class V cavities of extracted human molars/premolars and mini-dumbbell-shaped specimens of bonded enamel-dentin were prepared for microleakage and tensile tests, respectively. Four adhesive systems were used: primerless-wet (1-1 etching for 10-, 30-, or 60-s, and 4-META/MMA-TBB), primer-moist (All-Bond2 + Duo… Show more

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Cited by 2 publications
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“…3 ) similar to the hybridized enamel [ [28] , [29] , [30] ]. Hybridized enamel formed using Super-Bond C&B could provide a leakage-free interface that resists HCl acid, dye, and silver nitrate penetration [ 28 , 29 ] and survive under long-term cyclic loading (2,500,000 cycles) [ 30 ].…”
Section: Discussionmentioning
confidence: 99%
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“…3 ) similar to the hybridized enamel [ [28] , [29] , [30] ]. Hybridized enamel formed using Super-Bond C&B could provide a leakage-free interface that resists HCl acid, dye, and silver nitrate penetration [ 28 , 29 ] and survive under long-term cyclic loading (2,500,000 cycles) [ 30 ].…”
Section: Discussionmentioning
confidence: 99%
“…The cohesive failure in luting resin of the experimental enamel-based biopolymer, which consisted of 90% hydroxyapatite by weight in a network pattern and provided the highest retention for dental veneers, created an interfacial layer ( Fig. 3 ) similar to the hybridized enamel [ [28] , [29] , [30] ]. Hybridized enamel formed using Super-Bond C&B could provide a leakage-free interface that resists HCl acid, dye, and silver nitrate penetration [ 28 , 29 ] and survive under long-term cyclic loading (2,500,000 cycles) [ 30 ].…”
Section: Discussionmentioning
confidence: 99%