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Influence of airborne particle abrasion on dentin bonding effectiveness of a 2-step universal adhesive. | LitMetric

Influence of airborne particle abrasion on dentin bonding effectiveness of a 2-step universal adhesive.

J Dent

Full Professor, KU Leuven (University of Leuven), Department of Oral Health Sciences, BIOMAT - Biomaterials Research Group & UZ Leuven (University Hospitals Leuven), Dentistry, Kapucijnenvoer 7, 3000 Leuven, Belgium.

Published: May 2024

AI Article Synopsis

  • The study aimed to assess how airborne particle abrasion (APA) affects the bond strength of a dental adhesive (G2 Bond Universal) to dentin using various polishing powders.
  • Researchers compared bond strength results on dentin treated with different abrasives and found that certain powders, like sodium bicarbonate and bioactive glass, significantly improved bond strength, especially in etch-and-rinse mode.
  • Overall, air abrasion didn't harm bond strength, except when using a specific powder (AO29) in self-etch mode, indicating that using APA can be safe and effective for dental bonding.

Article Abstract

Objective: To determine the effect of airborne particle abrasion (APA) on micro-tensile bond strength (µTBS) to dentin using different air-abrasion/polishing powders.

Methods: The bonding effectiveness of G2 Bond Universal (G2B), used in etch-and-rinse (E&R) and self-etch mode (SE), was tested on bur-cut dentin and dentin air abraded/polished using six different powders (aluminum oxide 29 µm (AO29) and 53 µm (AO53), aluminum trihydroxide (AT), sodium bicarbonate (SB), sodium bicarbonate soft (SB) and bioactive glass (BG); Velopex). Adhesive-composite resin specimens were immersed in distilled water at 37 °C for one week and cut into microspecimens. Half of the specimens were subjected to 50,000 thermocycles (aged). Immediate and aged μTBS to dentin were measured. Statistical analysis was performed using linear mixed-effects (LME) modeling (p < 0.05).

Results: Comparing the aged bond strengths to air-abraded/polished dentin with bur-cut dentin, pretreatment with SB and SB in combination with G2B used in E&R mode, and BG air polishing in combination with both application modes (E&R, SE), resulted in a significantly higher bond strength. Dentin bond strength was only significantly lower when air abraded with AO29 and using G2B in SE mode. Aging did not significantly influence bond strength for both application modes (E&R, SE), except for AO29 and AT-treated dentin, where bond strengths decrea sed significantly using G2B in SE mode. In general, G2B reached significantly higher bond strengths on air-abraded/polished dentin in E&R mode than in SE mode.

Conclusion: Air-abrasion/polishing did not impair dentin bond strength using G2B, except when dentin was air abraded with AO29 and using G2B in SE mode. Air polishing positively influenced the bond strength to dentin in specific groups.

Clinical Significance: APA is safe concerning bonding to dentin. The E&R application mode is preferred using G2B as adhesive on air-abraded/polished dentin. Air polishing with BG positively influenced dentin bond strength for both application methods.

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Source
http://dx.doi.org/10.1016/j.jdent.2024.104918DOI Listing

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