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1.
Braz. oral res. (Online) ; 33: e084, 2019. graf
Article in English | LILACS | ID: biblio-1019612

ABSTRACT

Abstract This study aimed to evaluate the role of photobiomodulation (PBM) in apexification and apexogenesis of necrotic rat molars with an open apex. Rat molars were exposed to the oral environment for 3 weeks. Canals were rinsed with 2.5% NaOCl and 17% EDTA, filled with antibiotic paste and sealed. After 7 days, canals were rinsed and divided into six groups (n=6): mineral trioxide aggregate (MTA); blood clot (BC); human dental pulp stem cells (hDPSC); MTA+PBM; BC+PBM; and hDPSC+PBM. In hDPSC groups, a 1% agarose gel scaffold was used. Two groups were not exposed: healthy tooth+PBM (n = 6), healthy tooth (n = 3); and one was exposed throughout the experiment: necrotic tooth (n = 3). In PBM groups, irradiation was performed with aluminum gallium indium phosphide (InGaAlP) diode laser for 30 days within 24-h intervals. After that, the specimens were processed for histological and immunohistochemical analyses. Necrotic tooth showed greater neutrophil infiltrate (p < 0.05). Necrotic tooth, healthy tooth, and healthy tooth+PBM groups showed absence of a thin layer of fibrous condensation in the periapical area. All the other groups stimulated the formation of a thicker layer of fibers (p < 0.05). All groups formed more mineralized tissue than necrotic tooth (p < 0.05). PBM associated with MTA, BC, or hDPSC formed more mineralized tissue (p < 0.05). MTA+PBM induced apexification (p < 0.05). Rabbit polyclonal anti-bone sialoprotein (BSP) antibody confirmed the histological findings of mineralized tissue formation, and hDPSC groups exhibited higher percentage of BSP-positive cells. It can be concluded that PBM improved apexification and favored apexogenesis in necrotic rat molars with an open apex.


Subject(s)
Animals , Tooth Diseases/radiotherapy , Dental Pulp Necrosis/radiotherapy , Tooth Apex/radiation effects , Low-Level Light Therapy/methods , Dental Pulp Cavity/radiation effects , Lasers, Semiconductor/therapeutic use , Apexification/methods , Oxides/therapeutic use , Stem Cells , Tooth Diseases/pathology , Immunohistochemistry , Random Allocation , Reproducibility of Results , Treatment Outcome , Rats, Wistar , Silicates/therapeutic use , Calcium Compounds/therapeutic use , Aluminum Compounds/therapeutic use , Dental Pulp Necrosis/pathology , Tooth Apex/pathology , Dental Pulp/cytology , Dental Pulp Cavity/pathology , Drug Combinations , Integrin-Binding Sialoprotein/analysis
2.
Braz. oral res. (Online) ; 32: e116, 2018. tab, graf
Article in English | LILACS | ID: biblio-974442

ABSTRACT

Abstract The aim of this study was to analyze the efficiency of experimental light-curing resin cements (ERCs) with a ternary photo-initiator system containing diphenyliodonium hexafluorphosphate (DPI) and different amines on retention of glass-fiber posts to dentin (GFP). ERCs formulations: a 1:1 mass ratio of 2,2-bis[4-(2-hydroxy-3-methacryloxypropoxy)phenylpropane and triethyleneglycol dimethacrylate. Camphorquinone was used as initiator. Six experimental groups were established according to the amine used: [ethyl-4-(dimethylamino)benzoate-EDMAB or 2-(dimethylamino)ethyl methacrylate-DMAEMA] and the concentration of DPI (0, 0.5 mol%, 1 mol%). The resin cements Variolink II (dual- and light-cured versions) were used as commercial reference. Eighty recently extracted bovine incisors (n = 10) were selected for this study. The roots were prepared and the fiber posts were cemented with the resin cement specified for each experimental group. Specimens from coronal, middle, and apical thirds of the root were subjected to push-out bond strength test 24 hours after bonding. Data were subjected to split-plot ANOVA and the Tukey test (p = 0.05). ERCs containing DPI showed statistically significant higher bond strengths compared with ERCs without DPI. ERCs containing DPI were statistically similar to VARIOLINK II - dual-cured and superior to VARIOLINK II - light-cured (except for EDMAB - 1DPI in the medium third and DMAEMA - 1DPI in the coronal third). Different amines did not influence post retention. The apical root region showed the lowest bond strength for the groups EDAB-0DPI, DMAEMA-0DPI and VARIOLINK II light-cured. Light-cured ERCs containing DPI were efficient for GFP retention to radicular dentin, with similar behaviour to that of dual-curing commercial resin cement.


Subject(s)
Onium Compounds/chemistry , Biphenyl Compounds/chemistry , Post and Core Technique , Tooth Apex/drug effects , Resin Cements/chemistry , Dentin/drug effects , Light-Curing of Dental Adhesives/methods , Photoinitiators, Dental/chemistry , Onium Compounds/radiation effects , Time Factors , Tooth Fractures , Biphenyl Compounds/radiation effects , Materials Testing , Analysis of Variance , Tooth Apex/radiation effects , Resin Cements/radiation effects , Dentin/radiation effects , Curing Lights, Dental , Photoinitiators, Dental/radiation effects , Polymerization , para-Aminobenzoates/radiation effects , para-Aminobenzoates/chemistry , Glass/radiation effects , Glass/chemistry , Methacrylates/radiation effects , Methacrylates/chemistry
3.
Braz. dent. j ; 22(5): 377-381, 2011. ilus
Article in English | LILACS | ID: lil-601837

ABSTRACT

The purpose of this in vitro study was to evaluate the effect of neodymium:yttrium-aluminum-garnet (Nd:YAG) laser irradiation on intracanal dentin surface by SEM analysis and its interference in the apical seal of filled canals. After endodontic treatment procedures, 34 maxillary human incisors were randomly assigned to 2 groups. In the negative control group (n=17), no additional treatment was performed and teeth were filled with vertically condensed gutta-percha; in the laser-treated group (n=17), the root canals were irradiated with Nd:YAG laser (1.5 W, 100 mJ, 15 Hz) before filling as described for the control group. Two specimens of each group were prepared for SEM analysis to evaluate the presence and extent of morphological changes and removal of debris; the other specimens were immersed in 0.5 percent methylene blue dye (pH 7.2) for 24 h for evaluation of the linear dye leakage at the apical third. SEM analysis of the laser-treated group showed dentin fusion and resolidification without smear layer or debris. The Student’s t-test showed that the laser-treated group had significantly less leakage in apical third than the control group. Within the limitations of this study, it may be concluded that the morphological changes on the apical intraradicular dentin surface caused by Nd:YAG laser resulted in less linear dye apical leakage.


Subject(s)
Humans , Dental Leakage/classification , Dental Pulp Cavity/radiation effects , Dentin/radiation effects , Lasers, Solid-State/therapeutic use , Root Canal Filling Materials/therapeutic use , Tooth Apex/radiation effects , Coloring Agents , Dental Bonding , Dental Pulp Cavity/ultrastructure , Dentin/ultrastructure , Epoxy Resins/chemistry , Epoxy Resins/therapeutic use , Gutta-Percha/chemistry , Gutta-Percha/therapeutic use , Materials Testing , Microscopy, Electron, Scanning , Methylene Blue , Root Canal Filling Materials/chemistry , Root Canal Obturation/methods , Root Canal Preparation/methods , Smear Layer , Time Factors , Tooth Apex/ultrastructure
4.
Braz. dent. j ; 22(5): 382-387, 2011. ilus, tab
Article in English | LILACS | ID: lil-601838

ABSTRACT

This study evaluated the effect of 980-nm diode laser on apical microleakage and intraradicular dentin morphology. Roots of 110 mandibular incisors were used in the study: 92 for microleakage test and 18 for scanning electron microscopy (SEM). Roots were randomly assigned to 3 groups according to the irrigating solution (water, NaOCl and NaOCl/EDTA) and were divided into 3 subgroups according to the laser irradiation protocol (without irradiation, irradiated at 1.5 W and irradiated at 3.0 W). Two specimens of each subgroup were prepared for SEM. The remaining roots were filled with AH Plus and gutta-percha. Apical leakage was assessed by ink penetration and data were analyzed statistically by ANOVA and Tukey-Krammer test (α=0.05). SEM analysis showed intensification of changes with increase of laser power as well as variations according to the irrigating solution. Modified smear layer was observed in specimens treated with water and irradiated with laser. Roots irrigated with NaOCl/EDTA had lower levels of infiltration (0.17 ± 0.18 mm) differing significantly (p<0.05) from those of roots irrigated with water (0.34 ± 0.30 mm), but similar (p>0.05) to those irrigated with NaOCl (0.28 ± 0.29 mm). Non-irradiated roots had lower levels of infiltration (0.10 ± 0.14 mm), differing (p<0.05) from those irradiated at 1.5 W (0.32 ± 0.22 mm) and 3.0 W (0.37 ± 0.32 mm). The 980 nm diode laser modified dentin morphology and increased apical microleakage.


Este estudo avaliou o efeito do laser de diodo 980 nm na microinfiltração apical e na morfologia intrarradicular da dentina. Raízes de 110 incisivos inferiores foram utilizadas no estudo: 92 para o teste de microinfiltração e 18 para microscopia eletrônica de varredura (MEV). As raízes foram divididas em 3 grupos de acordo com a solução irrigante (água, NaOCl e NaOCl/EDTA) e subdivididas em 3 de acordo com a irradiação laser (sem irradiação, irradiados com 1,5 W e irradiados com 3,0 W). Duas amostras de cada subgrupo foram preparadas para MEV. As raízes restantes foram preenchidas com AH Plus e guta percha. A infiltração apical foi avaliada nas raízes por meio da penetração do corante e os dados foram analisados por ANOVA e teste de Tukey-Krammer (α=0,05). Os resultados da MEV mostraram intensificação das mudanças quando se aumentou a potência do laser e variações de acordo com a solução irrigadora. Camada de smear modificada foi observada em espécimes tratados com água e irradiados com laser. Raízes irrigadas com NaOCl/EDTA tiveram níveis menores de infiltração (0,17 ± 0,18 mm) estatisticamente diferente (p<0,05) das raízes irrigadas com água (0,34 ± 0,30 mm), mas semelhante (p>0,05) aos irrigados com NaOCl (0,28 ± 0,29 mm). As raízes não irradiadas tiveram níveis menores de infiltração (0,10 ± 0,14 mm), diferente (p<0,05) de 1,5 W (0,32 ± 0,22 mm) e 3.0 W (0,37 ± 0,32 mm). O laser de diodo 980 nm alterou a morfologia da dentina e aumentou a infiltração marginal apical.


Subject(s)
Humans , Dental Leakage/classification , Dental Pulp Cavity/radiation effects , Dentin/radiation effects , Lasers, Semiconductor/therapeutic use , Tooth Apex/radiation effects , Coloring Agents , Cuspid/radiation effects , Cuspid/ultrastructure , Dental Bonding , Dental Pulp Cavity/ultrastructure , Dentin/ultrastructure , Edetic Acid/therapeutic use , Epoxy Resins/therapeutic use , Gutta-Percha/therapeutic use , Incisor/radiation effects , Incisor/ultrastructure , Materials Testing , Microscopy, Electron, Scanning , Radiation Dosage , Root Canal Filling Materials/therapeutic use , Root Canal Irrigants/therapeutic use , Root Canal Preparation/methods , Smear Layer , Sodium Hypochlorite/therapeutic use , Tooth Apex/ultrastructure , Water
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