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Eur J Orthod ; 34(2): 257-61, 2012 Apr.
Article in English | MEDLINE | ID: mdl-21300729

ABSTRACT

The purpose of this study was to compare the shear bond strengths (SBSs) of orthodontic brackets bonded with self-etching primer (SEP) using different enamel surface preparations. A two-by-two factorial study design was used. Sixty human premolars were harvested, cleaned, and randomly assigned to four groups (n = 15 per group). Teeth were bathed in saliva for 48 hours to form a pellicle. Treatments were assigned as follows: group 1 was pumiced for 10 seconds and pre-etched for 5 seconds with 37 per cent phosphoric acid before bonding with SEP (Transbond Plus). Group 2 was pumiced for 10 seconds before bonding. Group 3 was pre-etched for 5 seconds before bonding. Group 4 had no mechanical or chemical preparation before bonding. All teeth were stored in distilled water for 24 hours at 37°C before debonding. The SBS values and adhesive remnant index (ARI) score were recorded. The SBS values (± 1 SD) for groups 1-4 were 22.9 ± 6.6, 16.1 ± 7.3, 36.2 ± 8.2, and 13.1 ± 10.1 MPa, respectively. Two-way analysis of variance and subsequent contrasts showed statistically significant differences among treatment groups. ARI scores indicated the majority of adhesive remained on the bracket for all four groups. Pre-etching the bonding surface for 5 seconds with 37 per cent phosphoric acid, instead of pumicing, when using SEPs to bond orthodontic brackets, resulted in greater SBSs.


Subject(s)
Acid Etching, Dental/methods , Dental Bonding , Dental Prophylaxis/methods , Resin Cements/chemistry , Silicates/chemistry , Adhesiveness , Dental Alloys/chemistry , Dental Enamel/ultrastructure , Dental Pellicle/ultrastructure , Dental Stress Analysis/instrumentation , Elastic Modulus , Humans , Light-Curing of Dental Adhesives , Materials Testing , Orthodontic Appliance Design , Orthodontic Brackets , Phosphoric Acids/chemistry , Shear Strength , Stainless Steel/chemistry , Stress, Mechanical , Surface Properties , Temperature , Time Factors , Water/chemistry
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