Abstract

This study evaluated the shear bond strength (SBS) of self-adhesive resin cements (SARCs) to dentin and their physical-chemical properties. Five commercial SARCs were evaluated [SmartCem®2 - DENTSPLY (SC2); BisCem® - Bisco (BC); SeT PP® - SDI (SeT); Relyx U100® - 3M ESPE (U100) and YCEM® SA - Yller (YCEM)]. The SARCs were evaluated for SBS to dentin (n = 10) after 24 h, 6 months, and 12 months. The dentin demineralization caused by acidic monomers was observed by SEM, and pH-neutralization of eluate was observed for 24 h. Degree of conversion (DC), rate of polymerization (Rp), flexural strength (FS), and elastic modulus (E) were evaluated. Immediate SBS of SC2, SET, U100, and YCEM were statistically higher than that of BC (p < 0.001). After 12 months, all SARCs showed reduced SBS values and U100 showed values similar to those of SET and YCEM, and higher than those of BC and SC2 (p = 0.001). Demineralization pattern of SARCs was similar. At 24h, all SARCs showed no differences in the pH-value, except BC and U100 (p < 0.001). YCEM showed the highest Rp. U100, YCEM, and SC2 showed statistically higher FS (p<0.001) and E (p < 0.001) when compared with SET and BC. U100 and YCEM showed the best long-term bonding irrespective of the storage period. A significant reduction in SBS was found for all groups after 12 months. SBS was not shown to be correlated with physical-chemical properties, and appeared to be material-dependent. The polymerization profile suggested that an increased time of light activation, longer than that recommended by manufacturers, would be necessary to optimize DC of SARCs.

Highlights

  • ObjectivesThe aim of this study was to evaluate the long-term bond strength to dentin, Potential hydrogen (pH)-neutralization, kinetics of polymerization, and mechanical properties produced by five commercial self-adhesive resin cements (SARCs)

  • After 12 months of water storage, all self-adhesive resin cements (SARCs) showed reduced bonding effectiveness when compared with 24 h, except BC; U100® – 3M ESPE (U100) bond strength values were similar to those of SET and YCEM, and significantly higher than those of BC and SmartCem®2 – DENTSPLY (SC2) (p < 0.001)

  • All SARCs showed a typical profile of decreased Potential hydrogen (pH)-values in the first minutes after immersion, followed by incremental increase in pH during 24 h storage, except for material YCEM that remained constant in the first hours after immersion, and showed subsequent decrease in pH

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Summary

Objectives

The aim of this study was to evaluate the long-term bond strength to dentin, pH-neutralization, kinetics of polymerization, and mechanical properties produced by five commercial SARCs

Methods
Results
Discussion
Conclusion
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