Document details

Collagen cross-linking agents + dimethyl sulfoxide improving the adhesive properties of erosive lesion dentin

Author(s): Siqueira,Fabiana Suelen Figueredo de ; Szesz,Anna Luiza ; Moreira,Pedro Henrique de Aguiar ; Araujo,Lucila Cristina Rodrigues ; Reis,Alessandra ; Cardenas,Andres Felipe Millan ; Loguercio,Alessandro D.

Date: 2021

Origin: Oasisbr

Subject(s): Erosive tooth wear; Microtensile bond strength, Nanoleakage; Cross-linking agents, DMSO


Description

Abstract To investigate the effect of the dimethyl sulfoxide combined with cross-linking agents on microtensile bond strength, silver nitrate penetration and in situ degree of conversion analysis of adhesives to the erosive dentin treatment with Cola-based soft drink. One hundred and sixty-six molars were assigned to 20 groups: (1) Treatment: Sound dentin; Erosive dentin; Erosive dentin treated with primer of dimethyl sulfoxide; Erosive dentin treated with DMSO primer containing proanthocyanidin and rivoflavin; (2) Adhesive systems: iBond Universal and Scotchbond Universal; and (3) adhesive strategy: etch-and-rinse or self-etch strategy. After restoration, specimens were sectioned into sticks to be tested. The data from microtensile bond strength (MPa), silver nitrate penetration (%) and in situ degree of conversion (%) were analyzed by (three- and two-factor ANOVA; Tukey's test α=5%). The application of dimethyl sulfoxide combined of not with cross-linkers improved all properties evaluated when compared to only erosive dentin treatment with Cola-based soft drink. However, only when dimethyl sulfoxide was combined to cross-linkers, the values of the microtensile bond strength, silver nitrate penetration and in situ degree of conversion in erosive dentin treatment with Cola-based soft drink was similar to sound dentin, for both adhesives and adhesive strategies. The application of dimethyl sulfoxide combined with the collagen cross-linking agent contributed to increasing the bond strength and degree of conversion in erosive lesion dentin, at the same time that significantly reduction of nanoleakage in this substrate.

Document Type Journal article
Language English
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