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1.
J. appl. oral sci ; 22(4): 302-306, Jul-Aug/2014. tab, graf
Artículo en Inglés | LILACS, BBO | ID: lil-718282

RESUMEN

Objectives: Tricalcium silicate is the major constituent phase in mineral trioxide aggregate (MTA). It is thus postulated that pure tricalcium silicate can replace the Portland cement component of MTA. The aim of this study was to evaluate bond strength of methacrylate-based (MB) composites, silorane-based (SB) composites, and glass ionomer cement (GIC) to Biodentine® and mineral trioxide aggregate (MTA). Material and Methods: Acrylic blocks (n=90, 2 mm high, 5 mm diameter central hole) were prepared. In 45 of the samples, the holes were fully filled with Biodentine® and in the other 45 samples, the holes were fully filled with MTA. The Biodentine® and the MTA samples were randomly divided into 3 subgroups of 15 specimens each: Group-1: MB composite; Group-2: SB composite; and Group-3: GIC. For the shear bond strength (SBS) test, each block was secured in a universal testing machine. Results: The highest (17.7±6.2 MPa) and the lowest (5.8±3.2 MPa) bond strength values were recorded for the MB composite-Biodentine® and the GIC-MTA, respectively. Although the MB composite showed significantly higher bond strength to Biodentine (17.7±6.2) than it did to MTA (8.9±5.7) (p<0.001), the SB composite (SB and MTA=7.4±3.3; SB and Biodentine®=8.0±3,6) and GIC (GIC and MTA=5.8±3.2; GIC and Biodentine=6.7±2.6) showed similar bond strength performance with MTA compared with Biodentine (p=0.73 and p=0.38, respectively). Conclusions: The new pure tricalcium-based pulp capping, repair, and endodontic material showed higher shear bond scores compared to MTA when used with the MB composite. .


Asunto(s)
Compuestos de Aluminio/química , Compuestos de Calcio/química , Resinas Compuestas/química , Recubrimiento Dental Adhesivo/métodos , Cementos de Ionómero Vítreo/química , Metacrilatos/química , Óxidos/química , Silicatos/química , Resinas de Silorano/química , Combinación de Medicamentos , Ensayo de Materiales , Valores de Referencia , Reproducibilidad de los Resultados , Resistencia al Corte , Propiedades de Superficie/efectos de los fármacos , Factores de Tiempo
2.
Journal of Korean Academy of Conservative Dentistry ; : 280-289, 2011.
Artículo en Inglés | WPRIM | ID: wpr-209278

RESUMEN

OBJECTIVES: The purpose of this study was to evaluate microTBS (microtensile bond strength) of current dentin bonding adhesives which have different hydrophobicity with low-shrinkage silorane resin. MATERIALS AND METHODS: Thirty-six human third molars were used. Middle dentin was exposed. The teeth were randomly assigned to nine experimental groups: Silorane self-etch adhesives (SS), SS + phosphoric acid etching (SS + pa), Adper easy bond (AE), AE + Silorane system bonding (AE + SSb), Clearfil SE bond (CSE), CSE + SSb, All-Bond 2 (AB2), AB2 + SSb, All-Bond 3 (AB3). After adhesive's were applied, the clinical crowns were restored with Filtek LS (3M ESPE). The 0.8 mm x 0.8 mm sticks were submitted to a tensile load using a Micro Tensile Tester (Bisco Inc.). Water sorption was measured to estimate hydrophobicity adhesives. RESULTS: microTBS of silorane resin to 5 adhesives: SS, 23.2 MPa; CSE, 19.4 MPa; AB3, 30.3 MPa; AB2 and AE, no bond. Additional layering of SSb: CSE + SSb, 26.2 MPa; AB2 + SSb, 33.9 MPa; AE + SSb, no bond. High value of microTBS was related to cohesive failure. SS showed the lowest water sorption. AE showed the highest solubility. CONCLUSIONS: The hydrophobicity of adhesive increased, and silorane resin bond-strength was also increased. Additional hydrophobic adhesive layer did not increase the bond-strength to silorane resin except AB2 + SSb. All-Bond 3 showed similar microTBS & water sorption with SS. By these facts, we could reach a conclusion that All-Bond 3 is a competitive adhesive which can replace the Silorane adhesive system.


Asunto(s)
Humanos , Adhesivos , Coronas , Dentina , Interacciones Hidrofóbicas e Hidrofílicas , Metacrilatos , Tercer Molar , Ácidos Fosfóricos , Cementos de Resina , Resinas de Silorano , Diente , Agua
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