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1.
Dent Mater J ; 30(4): 493-500, 2011.
Artículo en Inglés | MEDLINE | ID: mdl-21778601

RESUMEN

A newly designed, light-curing adhesive was investigated for its bonding effectiveness to porcelain, alumina, zirconia, Au, Au alloy, Ag alloy, Au-Ag-Pd alloy, and Ni-Cr alloy. Four experimental adhesives were prepared using varying contents of the following: a silane coupling agent [3-methacryloyloxypropyltriethoxysilane (3-MPTES)], acidic adhesive monomers [6-methacryloyloxyhexyl phosphonoacetate(6-MHPA),6-methacryloyloxyhexyl3-phosphonopropionate(6-MHPP)and 4-methacryloyloxyethoxycarbonylphthalic acid (4-MET)], and dithiooctanoate monomers [6-methacryloyloxyhexyl 6,8-dithiooctanoate (6-MHDT) and 10-methacryloyloxydecyl 6,8-dithiooctanoate (10-MDDT)]. After all adherend surfaces were sandblasted and applied with an experimental adhesive, shear bond strengths (SBSs) of a light-curing resin composite (Beautifil II, Shofu Inc., Kyoto, Japan) to the adherend materials after 2,000 times of thermal cycling were measured. For the experimental adhesive which contained 3-MPTES (30.0 wt%), 6-MHPA (1.0 wt%), 6-MHPP (1.0 wt%), 4-MET (1.0 wt%), 6-MHDT (0.5 wt%) and 10-MDDT (0.5 wt%), it consistently yielded the highest SBS for all adherend surfaces in the range of 20.8 (4.8)-30.3 (7.9) MPa, with no significant differences among all the adherend materials (p>0.05). Therefore, the newly designed, multi-purpose, light-curing adhesive was able to deliver high SBS to all the adherend materials tested.


Asunto(s)
Caprilatos/química , Aleaciones Dentales/química , Cementos Dentales/química , Porcelana Dental/química , Curación por Luz de Adhesivos Dentales , Metacrilatos/química , Silanos/química , Óxido de Aluminio/química , Bisfenol A Glicidil Metacrilato/química , Aleaciones de Cromo/química , Resinas Compuestas/química , Grabado Dental/métodos , Aleaciones de Oro/química , Humanos , Ensayo de Materiales , Organofosfonatos/química , Paladio/química , Ácido Fosfonoacético/análogos & derivados , Ácido Fosfonoacético/química , Ácidos Ftálicos/química , Polietilenglicoles/química , Ácidos Polimetacrílicos/química , Propionatos/química , Resistencia al Corte , Plata/química , Estrés Mecánico , Propiedades de Superficie , Temperatura , Itrio/química , Circonio/química
2.
Dent Mater J ; 30(3): 300-7, 2011.
Artículo en Inglés | MEDLINE | ID: mdl-21597216

RESUMEN

The effect of metal primers on adhesion of a resin composite to dental metal alloys was investigated. Experimental primers containing a dithiooctanoate monomer [10-methacryloyloxydecyl 6,8-dithiooctanoate (10-MDDT) or 6-methacryloyloxyhexyl 6,8-dithiooctanoate (6-MHDT)] and a phosphonic acid monomer [6-methacryloyloxyhexyl phosphonoacetate (6-MHPA) or 6-methacryloyloxyhexyl 3-phosphonopropionate (6-MHPP)] were prepared. After treating Au, Au alloy, Ag alloy, Au-Ag-Pd alloy, and Ni-Cr alloy with the experimental primers, their shear bond strengths (SBSs) with a prosthetic light-curing resin composite (Solidex, Shofu Inc., Japan) were measured after 1-day storage followed by 5,000 thermal cycles. The SBSs between Solidex and the primer-treated metals which were incubated in air at 50°C for 2 months were further measured. Results showed that the SBSs [mean (SD)] of all metal adherends treated with primer DT-PA-1 (5.0 wt% 10-MDDT, 1.0 wt% 6-MHPA) ranged between 31.2 (5.2) and 34.5 (5.8) MPa. The SBSs of the primer-treated metals did not degrade after 2-month incubation at 50°C. Therefore, a combined primer application consisting of a dithiooctanoate monomer and a phosphonic acid monomer provided efficacious bonding to Au as well as precious and non-precious metal alloys.


Asunto(s)
Caprilatos/química , Resinas Compuestas/química , Aleaciones Dentales/química , Recubrimiento Dental Adhesivo , Materiales Dentales/química , Aleaciones de Oro/química , Organofosfonatos/química , Cementos de Resina/química , Compuestos de Azufre/química , Aleaciones de Cromo/química , Coronas con Frente Estético , Humanos , Ensayo de Materiales , Metacrilatos/química , Compuestos Organofosforados/química , Paladio/química , Ácido Fosfonoacético/análogos & derivados , Ácido Fosfonoacético/química , Resistencia al Corte , Plata/química , Temperatura , Factores de Tiempo
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