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Artigo 2026

Incorporation of Nanoparticles in Coatings on Acrylic Resin: Impact on Wettability and Antifungal Action

Autores

Silva, Juliana de Freitas Gouveia
Leite, Lady Daiane Pereira
Campos, Tiago Moreira Bastos
Koga-Ito, Cristiane Yumi
Paes Junior, Tarcisio José de Arruda

Materials , vol. 19 , no. 10 , Article 2130

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Resumo

© 2026 by the authors.Acrylic resin is widely used in the fabrication of complete dentures, interacting significantly with the intraoral environment. However, complete dentures face challenges such as stability issues and biofilm accumulation. Glaze application is a common method to reduce surface porosity and microbial adhesion, but it also decreases surface wettability, potentially impairing salivary film formation essential for peripheral sealing. This study aimed to incorporate titanium dioxide and zinc oxide nanoparticles into the glaze applied to thermally activated acrylic resin (TAAR) via spray coating to enhance surface wettability and antifungal activity. Four groups were tested: G (TAAR + commercial glaze − control); AlG (TAAR + commercial glaze + aluminum oxide − roughness control); TiG (TAAR + commercial glaze + titanium dioxide); and ZnG (TAAR + commercial glaze + zinc oxide). Evaluations included flexural strength, color and translucency, surface analysis and antibiofilm activity against Candida albicans. Data were analyzed using one-way ANOVA. No statistically significant differences in mechanical strength (MPa) were observed (G: 108.54 ± 8.36; AlG: 113.60 ± 11.95; ZnG: 111.98 ± 9.27; TiG: 113.66 ± 10.41). Surface roughness significantly increased, and contact angle decreased, indicating improved wettability. Regardless of the antifungal activity no improvement was detected (G: 6.71 ± 0.10; AlG: 6.82 ± 0.08; ZnG: 6.72 ± 0.20; TiG: 6.66 ± 0.18). In conclusion, the incorporation of nanoparticles into the glaze improves the wettability of acrylic resin surfaces, potentially enhancing peripheral sealing and denture retention, which is beneficial for patients with reduced alveolar ridge height.

Palavras-chave

acrylic resin nanoparticles titanium dioxide wettability zinc oxide

Materials Science (all) (MATE) Condensed Matter Physics (PHYS)
: Scopus
Última atualização: 2026-08-20
: 2-s2.0-105040065206