Author/Authors :
De- Deus, Gustavo Department of Endodontics - Fluminense Federal University, Rio de Janeiro, Brazil , Claudia Brandão, Maria Department of Peridontology - Central Airforce Hospital, Rio de Janeiro, Brazil , Miranda Souza, Erick Department of Endodontics - Federal University of Maranhão, Maranhão, Brazil , Reis, Claudia Department of Dental Clinic - Federal University of Espirito Santo, Espirito Santo, Brazil , Reis, Kátia Department of Prosthodontics and Dental Materials - Federal University of Rio de Janeiro, Rio de Janeiro, Brazil , Machado, Ricardo Clinical Practice Limited to Endodontics, Navegantes, Brazil , Neelakantan, Prasanna Department of Endodontics - University of Hong Kong, Hong Kong
Abstract :
This study sought to evaluate the effect of the penetration of an epoxy resin-based root canal sealer into dentin tubules on the force required to dislodge the root canal filling.
Methods: Sixty extracted human central incisors with single canals were decoronated, instrumented, and filled with gutta-percha and AH Plus sealer labeled with 0.1% rhodamine B dye. The roots were further sec- tioned horizontally at 3, 6, and 8 mm from the apex. The coronal surfaces of the resulting 180 slices were evaluated using confocal laser scanning microscopy to measure the amount of sealer that penetrated into the dentin tubules. To quantify the force required to dislocate the root filling material, the root fillings of the slices were subjected to a dislodgement resistance test (push-out). Spearman’s rho correlation test was fur- ther used to test the correlation between the push-out bond strength and sealer penetration into the dentin tubules (P<0.05).
Results: No significant correlation was observed between sealer penetration into the dentin tubules and the force required to dislodge the root canal filling (P=0.626).
Conclusion: Following the results of this study, the penetrating ability of the AH Plus sealer into dentin tu- bules has no correlation with the force required to dislodge the root canal filling.
Keywords :
Dentin tubules , dislodgement resistance , epoxy sealer , obturation