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Influence of flavonoids on long-term bonding stability on caries-affected dentin

牙本质 材料科学 臼齿 柚皮苷 胶粘剂 槲皮素 橙皮苷 万能试验机 类黄酮 复合材料 粘结强度 牙科 色谱法 极限抗拉强度 化学 图层(电子) 医学 抗氧化剂 生物化学 病理 替代医学
作者
Andrés Dávila‐Sánchez,Mário Felipe Gutiérrez,J. Bermudez,Luján Méndez-Bauer,Bruna Hilgemberg,Salvatore Sauro,Alessandro Dourado Loguércio,César Augusto Galvão Arrais
出处
期刊:Dental Materials [Elsevier BV]
卷期号:36 (9): 1151-1160 被引量:54
标识
DOI:10.1016/j.dental.2020.05.007
摘要

To evaluate the effect of experimental dentin pre-treatment solutions formulated with different flavonoids on microtensile bond strength (μTBS), nanohardness (NH) and ultra-morphological characteristics of artificial caries-affected dentin (CAD) bonded using a universal bonding system. A microbiological method was used to create an artificial CAD in 91 human molars. Five experimental pre-treatment solutions were created using the following flavonoids: quercetin (QUE); hesperidin (HES); rutin (RUT); naringin (NAR), or proanthocyanidin (PRO). A placebo solution (PLA) with no flavonoids added was also evaluated. The flavonoids or placebo solutions were applied to the CAD prior to the application and photoactivation of a universal adhesive (Scotchbond Universal, 3M Oral Care). A control group (CON), in which only the bonding agent was applied without any flavonoid solution, was also evaluated. A 3-mm-thick block of resin composite (Opallis, FGM) was built up on the flat bonded CAD surfaces and was light-cured following the manufacturer’s instructions. Specimens were sectioned to obtain resin-dentin slices and sticks (cross-sectional area of 0.8 mm2). The μTBS, NH, and confocal ultramorphology analysis of resin-dentin interface was evaluated at 24 h and after thermo-cycling aging (25,000 cycles). The results were analyzed using 2-way ANOVA followed by Bonferroni's post hoc test (pre-set α = 0.05). The specimens from groups QUE, NAR, and RUT presented greater μTBS values than those from CON group (p<0.05). Specimens from some of these experimental groups presented greater nanomechanical properties (p<0.05), and no morphological degradation at the resin-dentin interface after aging. The use of exogenous cross-linkers as dentin pre-treatment before bonding procedures may represent a suitable strategy to improve the longevity of universal adhesive systems applied to caries-affected dentin.
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