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Published on: December 26, 2016
Catechol-Phosphonate-Augmented Universal Adhesive for Hydrolysis-Resistant Dentin Bonds: A µTBS and Spectroscopic
Rabeia J Khalil1, Suha K Ibrahim1, Athraa H Madhat1
1Department of Clinical Dental Sciences, College of Dentistry, University of Diyala, Diyala, Iraq.
Objective:
Hydrolytic degradation at the resin-dentin interface remains a major challenge for the long-term success of adhesive restorations in dentistry. This study evaluated whether augmenting a 10-methacryloyloxydecyl dihydrogen phosphate (10-MDP)-based universal adhesive with a catechol-phosphonate (CatP) co-monomer could enhance resin-dentin bond durability and interfacial stability after aggressive hydrolytic aging.
Materials And Methods:
Fifty extracted human third molars were randomly assigned to receive either the original universal adhesive or the same adhesive modified by 3 wt% CatP. After standardized bonding to mid-coronal dentin and composite build-up, specimens underwent a combined aging regimen of 10,000 thermocycles and 6 months of water storage.
Results:
The CatP-modified adhesive yielded significantly higher aged microtensile bond strength (34.10 ± 2.99 MPa) than control (27.01 ± 2.87 MPa; p < 0.001, g = 2.38). Interfacial hydraulic conductance was reduced by half in the CatP group (0.1923 ± 0.0416 vs. 0.3836 ± 0.0584 µL·min-1·cm-2·cm H2O-1; p = 0.002, g = -3.28). CatP modification led to significantly lower water sorption and solubility.
Conclusion:
Incorporation of CatP into a universal adhesive significantly improved the hydrolytic stability, bond strength, and sealing of resin-dentin interfaces, without compromising polymerization.
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