Abstract

To evaluate the influence of rewetting solutions on bond strength to root dentin of conventional gutta-percha (GP) or niobium phosphate glass-based gutta-percha (GNb) associated with a bioceramic sealer. The root canals of 80 human mandibular premolars were prepared using nickel-titanium instruments and irrigation with sodium hypochlorite and EDTA. The teeth were randomly divided into four groups according to the gutta-percha used: GNb or GP associated with EndoSequence BC Sealer (BC) and the solution for rewetting dentin before filling (distilled water; phosphate buffer saline solution - PBS; simulated body fluid - SBF; or no solution). The root canals were filled with a single cone using warm vertical condensation. Micropush-out bond strengths associated with the filling materials in slices from middle root thirds was determined 30 days after root filling. The failure mode was analyzed with stereoscopic lens. The data were statistically analyzed by two-way ANOVA and Holm-Sidak test (p < 0.05). There was significant difference in the types of gutta-percha (p < 0.001) and in the different rewetting solutions (p = 0.003). The interaction between gutta-percha and rewetting solutions was not significant (p = 0.53). The SBF solution provided an increase in bond strength for both gutta-percha solutions. The GNb+BC (3.42 MPa) association increased bond strength when compared with GP+BC (2.0 MPa). The use of SBF as a dentin rewetting solution increased bond strength in the groups studied. Association of GNb with bioceramic sealer was beneficial, increasing the bond strength to dentin when compared with the association with GP.

Highlights

  • simulated body fluid (SBF) had the highest bond strength when compared to the other groups (PBS, DW, and control)

  • This study revealed that the groups in which the SBF rewetting solution was used showed the highest bond strength

  • Experimental GNb showed self-adhesiveness to the surface when the dentin was rewetted with SBF without the use of sealer, showing a similar performance to that of the group in which AH Plus was combined with conventional gutta-percha,[6] suggesting the experimental material had a self-adhesive capacity originating from the bioactive potential of the niobium phosphate glass associated with gutta-percha

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Summary

Objectives

The aim of this study was to evaluate the influence of rewetting dentin with several solutions on the bond strength of a conventional and an experimental bioactive niobium phosphate glass-based composite and gutta-percha (GNb) associated with a bioceramic sealer

Methods
Results
Conclusion
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