Bond Strength of Resin Cement Following Biomimetic Remineralization: An in vitro Study
Прочность сцепления цемента на основе смолы после биомиметической реминерализации: in vitro исследование
2024-05-03
SCID: 54.1/mj3rjqvn
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Curodont protectP11-4biomimetic remineralizationmicrotensile bond strengthresin-dentin bond
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Abstract (AI)
Objectives This research assessed the efficacy of self-assembling peptide P 11 -4 (Curodont protect) in promoting biomimetic remineralization of dentin, thereby stabilizing the hybrid layer and enhancing the long-lasting of the resin-dentin bond. Methods Five premolar teeth were longitudinally sectioned to assess dentin microhardness before and after demineralization, as well as after the application of P 11 -4 (Curodont protect). For the microtensile test, ten premolar teeth were sectioned perpendicular to their long axes. The teeth were assigned to different groups. Following acid etching and rinsing, samples in control group I received no pretreatment, while the prepared dentin surface of group II was treated with 0.1 mL of P 11 -4 before the placement of the adhesive restoration. All specimens were stored in distilled water at 37 ± 2 °C for 24 hours and then underwent thermocycling. The microtensile test was measured, and the type of bond failure was evaluated. The obtained information, expressed in megapascals, was analyzed using a one-way analysis of variance (ANOVA), followed by Tukey’s multiple post hoc test. Results There was a statistically significant difference in hardness values after demineralization, followed by a significant increase in hardness after the application of P 11 -4 (Curodont protect) (p < 0.001, effect size = 0.985). No statistically significant difference was found in the microtensile bond strength between the two groups (p = 0.384, effect size = 0.582). Adhesive-type failure was more commonly observed. Conclusion The use of self-assembling peptide P11-4 (Curodont protect) on dentin resulted in higher microhardness than the control group without adversely affecting resin cement bond strength.
Key Findings
1
Adhesive-type failures were more commonly observed in bond failure analysis after testing.
2
Application of self-assembling peptide P11-4 (Curodont protect) significantly increased dentin microhardness after demineralization (p < 0.001, effect size = 0.985).
3
No significant difference in microtensile resin-dentin bond strength was observed between P11-4 treated and control groups (p = 0.384, effect size = 0.582).
4
Use of P11-4 did not adversely affect resin cement bond strength while improving dentin surface hardness.
Research Object
Dentin treated with self-assembling peptide P11-4 (Curodont protect) in restorative procedures (resin–dentin bonded specimens)
Research Subject
Effect of biomimetic remineralization by P11-4 on dentin microhardness and the microtensile bond strength/failure mode of the resin–dentin bond
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2024-05-03
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