How Universal Adhesive Systems With Nanoencapsulated Flavonoids Improve Long-Term Bonding to Caries-Affected Dentin

IF 4.1 3区 医学 Q1 DENTISTRY, ORAL SURGERY & MEDICINE Journal of Esthetic and Restorative Dentistry Pub Date : 2025-02-02 DOI:10.1111/jerd.13426
Camila Falconi-Páez, Mayra Alejandra Nuñez Aldaz, Tobia Gastón Navarro, Claudia Carolina González-Vaca, Lucas Arrais Campos, Andres Davila-Sanchez, Cesar Augusto Galvão Arrais
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Abstract

Objectives

To determine the presence of nano-encapsulated flavonoids and their effect in universal adhesives on resin-dentin bond-strength (μTBS) and nanoleakage (NL) on artificial caries-affected dentin (CAD) after 24-h and 6 months of water storage (WS).

Materials and Methods

Artificial CAD was created on the occlusal dentin surfaces of 60 human third molars by a microbiological assay. Nanoencapsulated quercetin (Q) and naringin (N) were incorporated into Prime&Bond Universal (PBU; Dentsply-Sirona) and Single Bond Universal (SBU, 3M ESPE). The adhesive systems with and without (control) flavonoids were applied to the CAD surface, and a 4-mm resin composite block (TPH Spectrum, Dentsply Sirona) was built up and light-cured. Specimens were sectioned into resin-dentin beams (0.8 mm2). The hybrid layer (HL) was subjected to micro-Raman analysis to detect N and Q. The specimens were tested in tension in a universal testing machine at 0.5 mm/min. μTBS and NL tests were performed after 24-h and WS. μTBS and NL data were analyzed using a nonparametric three-way ANOVA test followed by Bonferroni's test (α = 5%).

Results

Q and N were detected within the HL. N and Q nanocapsules increased μTBS and reduced NL values after WS. At 24 h, the PBU group showed higher NL values than the SBU group, and the values decreased after WS.

Conclusions

Incorporating nanoencapsulated flavonoids may improve the longevity of universal bonding systems applied to CAD.

Clinical Relevance

Adhesive restorations incorporating nanoencapsulated quercetin or naringin might be a promising alternative for achieving long-term bonding stability.

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纳米封装类黄酮的通用粘合剂系统如何改善与受龋影响的牙本质的长期结合。
目的:测定纳米包埋黄酮类化合物的含量,以及纳米包埋黄酮类化合物在万向胶粘剂中对树脂-牙本质结合强度(μTBS)和纳米渗漏率(NL)的影响。材料与方法:采用微生物测定法,在60例人第三磨牙合牙本质表面制备人工CAD。将槲皮素(Q)和柚皮素(N)纳米胶囊化,加入Prime&Bond Universal (PBU);dentspy - sirona)和Single Bond Universal (SBU, 3M ESPE)。将含(对照)黄酮类化合物和不含(对照)黄酮类化合物的粘接体系涂在CAD表面,建立4mm树脂复合块(TPH Spectrum, Dentsply Sirona)并进行光固化。将标本切成0.8 mm2的树脂-牙本质梁。对混合层(HL)进行微拉曼分析以检测N和q。试样在万能试验机上以0.5 mm/min的速度拉伸。24 h和WS后进行μTBS和NL试验。μTBS和NL数据采用非参数三因素方差分析和Bonferroni检验(α = 5%)。结果:HL内检测到Q和N。N和Q纳米胶囊增加了WS后的μTBS,降低了NL值。24 h时,PBU组NL值高于SBU组,WS后NL值下降。结论:加入纳米黄酮类化合物可提高CAD通用键合系统的使用寿命。临床意义:含有纳米胶囊槲皮素或柚皮苷的粘接剂修复体可能是实现长期粘接稳定性的有希望的替代方法。
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来源期刊
Journal of Esthetic and Restorative Dentistry
Journal of Esthetic and Restorative Dentistry 医学-牙科与口腔外科
CiteScore
6.30
自引率
6.20%
发文量
124
审稿时长
>12 weeks
期刊介绍: The Journal of Esthetic and Restorative Dentistry (JERD) is the longest standing peer-reviewed journal devoted solely to advancing the knowledge and practice of esthetic dentistry. Its goal is to provide the very latest evidence-based information in the realm of contemporary interdisciplinary esthetic dentistry through high quality clinical papers, sound research reports and educational features. The range of topics covered in the journal includes: - Interdisciplinary esthetic concepts - Implants - Conservative adhesive restorations - Tooth Whitening - Prosthodontic materials and techniques - Dental materials - Orthodontic, periodontal and endodontic esthetics - Esthetics related research - Innovations in esthetics
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