Literature DB >> 34192754

Shear Bond Strength of Different MDP-Containing Adhesive Systems on Enamel and Dentin from Primary Teeth.

Min Jin Kim, Joonhee Kim, Ji-Soo Song, Shin Hye Chung, Hong-Keun Hyun.   

Abstract

OBJECTIVE: To compare the shear bond strength (SBS) after thermocycling of four universal adhesives applied in self-etch mode on dentin and etch-and-rinse mode on enamel. STUDY
DESIGN: Flat 144 buccal or lingual dentin and enamel surfaces from 72 non-carious primary molars were prepared. Samples were segregated into 12 groups (n=12): Adper Single Bond 2 etch-and-rinse (SB_T) and Clearfil SE Bond self-etch (SE_S) applied to enamel and dentin served as controls. Scotch Bond Universal Adhesive (SBU), Clearfil S3 Bond Universal Adhesive (SEU), Tetric N-Bond Universal Adhesive (TEN), and All Bond Universal (BIS) were applied in etch-and-rinse mode to enamel and in self-etch mode to dentin. They were thermocycled for 5000 cycles. SBS testing and the evaluation of fracture mode were performed.
RESULTS: SB_T showed statistically higher SBS than other adhesive groups using etch-and-rinse mode on enamel. SE_S and BIS had statistically higher SBS than other adhesive groups using self-etch mode on dentin. Mixed failure was the most common failure mode in each group.
CONCLUSION: The universal adhesives did not show higher SBS than SB_T when using etch-and-rinse on enamel. All universal adhesives showed higher SBS than SB_T and had SBS similar to SE_S, except SBU when using self-etch mode on dentin.

Entities:  

Keywords:  Primary Teeth; Selective etching; Shear bond strength; Thermocycling; Universal adhesive

Year:  2021        PMID: 34192754     DOI: 10.17796/1053-4625-45.3.7

Source DB:  PubMed          Journal:  J Clin Pediatr Dent        ISSN: 1053-4628            Impact factor:   1.065


  1 in total

1.  Shear Bond Strength and Mode of Failure of Polypropylene Fibers in Orthodontic Flash-Free Adhesive.

Authors:  Kitiporn Chaimaungchuen; Apiwat Riddhabhaya; Nattisa Niyomtham; Irin Sirisoontorn
Journal:  Polymers (Basel)       Date:  2022-10-04       Impact factor: 4.967

  1 in total

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