Analysis of color stability and degree of conversion of different types of resin composites.

IF 1.5 4区 医学 Q3 DENTISTRY, ORAL SURGERY & MEDICINE Brazilian oral research Pub Date : 2024-01-05 eCollection Date: 2024-01-01 DOI:10.1590/1807-3107bor-2024.vol38.0003
Mylena Proença Costa, Juliana Carvalho Jacomine, Victor Mosquim, Daniella Cristo Santin, Giovanna Speranza Zabeu, Maria Angélica Silvério Agulhari, Rafael Francisco Lia Mondelli, Heitor Marques Honório, Linda Wang
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Abstract

Resin composites containing surface pre-reacted glass (S-PRG) have been introduced to reduce demineralization and improve remineralization of the tooth structure. However, water diffusion within the material is necessary for its action, which can impair its overall physicomechanical properties over time, including color stability. This study aimed to evaluate the color stability and related degree of conversion (DC) of four resin composites. Discs (6 x 4 mm, n = 5/group) of microhybrid (MH), nanofilled (NF), nanohybrid (NH), and S-PRG-based nanohybrid (S-PRG-NH) composites with two opacities (A2/A2E and A2O/A2D) were prepared. Color (CIELab and CIEDE2000) was evaluated with a spectrophotometer after aging in grape juice (2 x 10 min/10mL/7days). The DC was analyzed by using Fourier transform infrared spectroscopy before and after light-curing. Data were statistically analyzed by using two-way analysis of variance and post-hoc least significant difference tests (p<0.05). In the color stability analysis, the interaction between filler type and opacity was significant (CIELab, p = 0.0015; CIEDE2000, p = 0.0026). NH presented the highest color stability, which did not differ from that of MH. The greatest color alteration was observed for S-PRG-NH. S-PRG fillers also influenced DC (p < 0.05). The nanohybrid resin composite presented favorable overall performance, which is likely related to its more stable organic content. Notwithstanding the benefits of using S-PRG-based nanohybrid resins, mostly in aesthetic procedures, professionals should consider the susceptibility of such resins to color alteration, probably due to the water-based bioactive mechanism of action.

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分析不同类型树脂复合材料的颜色稳定性和转化程度。
含有表面预反应玻璃(S-PRG)的树脂复合材料被用来减少脱矿和改善牙齿结构的再矿化。然而,水在材料内部的扩散是其发挥作用的必要条件,这会随着时间的推移损害其整体物理机械性能,包括颜色稳定性。本研究旨在评估四种树脂复合材料的颜色稳定性和相关的转换度(DC)。制备了两种不透明度(A2/A2E 和 A2O/A2D)的微杂化(MH)、纳米填充(NF)、纳米杂化(NH)和基于 S-PRG 的纳米杂化(S-PRG-NH)复合材料的盘片(6 x 4 毫米,n = 5/组)。在葡萄汁中老化(2 x 10 分钟/10 毫升/7 天)后,用分光光度计对颜色(CIELab 和 CIEDE2000)进行了评估。在光固化前后,使用傅立叶变换红外光谱分析直流电。数据采用双向方差分析和事后最小显著差异检验进行统计分析(p
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来源期刊
CiteScore
3.70
自引率
4.00%
发文量
107
审稿时长
12 weeks
期刊最新文献
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