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Article type: Research Article
Authors: Gray, G.B. | Kataria, V. | McManus, S. | Jagger, D.C.
Affiliations: Division of Restorative Dentistry, Bristol Dental School, Lower Maudlin Street, Bristol, BS1 2LY, UK
Note: [] Corresponding author: Professor D.C. Jagger, Division of Restorative Dentistry, Bristol Dental School, Lower Maudlin Street, Bristol, BS1 2LY, UK. Tel.: +44 117 928 4225; E-mail: [email protected].
Abstract: The aim of this study was to investigate the effect of one step adhesives on the shear bond strength of a compomer restorative material to both enamel and dentine. Human extracted teeth were used for the study. Ten samples were prepared for both enamel and dentine specimens for each of the five groups: Tooth, no etch, Prime and Bond NT (P+B NT); tooth, Non-Rinse Conditioner (NRC), P+B NT; tooth, NRC, Prime and Bond 2.1 (P+B 2.1); tooth, etch, P+B NT; tooth, etch, P+B 2.1. The specimens were subjected to bond testing. The shear bond strength was measured using an Inston 1193 testing machine using a cross head speed of 1 mm/minute. The specimens were tested to destruction. The results show that for the enamel specimens the highest bond strength was recorded for those specimens subjected to Etch, P+B 2.1 (22.1 MPa) and Etch P+B NT (20.0 MPa). The groups of specimens which did not undergo etching had very low bond strengths ranging from 11.4 MPa for NRC, P+B 2.1, 8.5 MPa for NRC P+B NT to 6.9 MPa for P+B NT. For the dentine specimens, for all of the groups, the shear bond strengths were low. Those groups subjected to etching produced the highest values of 7.9 MPa for NRC P+B 2.1 with the lowest value of 6.1 MPa for NRC P+B NT. These bond strengths were significantly lower than those achieved for bonding to enamel. Prime and Bond NT and Prime and Bond 2.1, used in conjunction with acid etching, produce satisfactory bond strengths of compomer restorative material to enamel. Bond strengths to dentine were low.
Keywords: Compomer, bond strength, enamel, dentine
Journal: Bio-Medical Materials and Engineering, vol. 16, no. 4, pp. 237-241, 2006
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