Nanomaterials (May 2024)

Nanoparticle-Modified 3D-Printed Denture Base Resins: Influence of Denture Cleansers on the Color Stability and Surface Roughness In Vitro

  • Mohammed M. Gad,
  • Abdulrahman Khattar,
  • Doha M. Alramadan,
  • Zainab H. Al Dawood,
  • Sujood S. Al Shehab,
  • Rabab H. Al Zaher,
  • Layal Osama Alzain,
  • Soban Q. Khan,
  • Mohamed Y. Abdelfattah

DOI
https://doi.org/10.3390/nano14100891
Journal volume & issue
Vol. 14, no. 10
p. 891

Abstract

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This study aimed to evaluate the influence of denture cleansers on the color, stability, and surface roughness of three-dimensional (3D)-printed denture base resins modified with zirconium dioxide nanoparticles (nano-ZrO2). A total of 440 specimens were fabricated using one heat-polymerized resin, and two 3D-printed resins (NextDent and ASIGA). According to the nano-ZrO2 content, the specimens for each resin were divided into five groups (0%, 0.5%wt, 1%wt, 3%wt, and 5%wt). Each concentration was divided into four subgroups (n = 10) based on the immersion solution (distilled water, sodium hypochlorite, Corega, and Fittydent) and immersion duration (360 and 720 days). The color changes (∆E00) and surface roughness (Ra, µm) of each specimen were measured at different time intervals (base line, 360 days, 720 days) using a spectrophotometer and a non-contact profilometer, respectively. The results were statistically analyzed using ANOVA and a post hoc Tukey’s test (α = 0.05). Sodium hypochlorite showed the highest significant color change of all the denture base resins (p 00 for sodium hypochlorite was significantly higher than the values for the other solutions (Fittydent, Corega, and water) (p p p p < 0.001). Denture cleansers can result in substantial color change and affect the surface roughness of unmodified and nanoparticle-modified denture base resins. Therefore, the selection of denture cleanser and appropriate types of material is critical for denture longevity.

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