氢氧化铌作为生物活性剂和高粘度散装填充树脂复合材料的强化剂。

IF 2.2 3区 医学 Q2 DENTISTRY, ORAL SURGERY & MEDICINE
Journal of Applied Oral Science Pub Date : 2024-03-22 eCollection Date: 2024-01-01 DOI:10.1590/1678-7757-2023-0278
Alyssa Teixeira Obeid, Tatiana Rita de Lima Nascimento, Ana Carolina Agassi, Ana Zélia Falcão Almeida, Ana Paula de Melo Alves Guedes, João Marco Alves, Juliana Fraga Soares Bombonatti, Marilia Mattar de Amoêdo Campos Velo
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引用次数: 0

摘要

目的:本体外研究将氧氢氧化铌填料加入到实验性高粘度大块填充树脂复合材料中,以改善其机械性能,并使其具有生物活性潜力:本体外研究将氧氢氧化铌填料加入到实验性高粘度散装填料树脂复合材料中,以改善其机械性能并使其具有生物活性潜力:扫描电子显微镜合成并鉴定了 0.5% 的氧氢氧化铌填料,其均匀的形态代表了该特征的强化。将填料称重,逐渐添加到实验用树脂复合材料中,均匀搅拌一分钟,形成三组:BF(实验性高粘度松散填充树脂复合材料;对照组)、BF0.5(实验性高粘度松散填充树脂复合材料,用 0.5% 氧氢化铌填料改性)和 BFC(商用松散填充树脂复合材料 Beautifil Bulk U,正孚;阳性对照组)。共有 10 个试样/组(8 × 2 × 2 毫米)在万能试验机(Instron)上进行了抗弯强度(FS)测试(500N)。此外,还对树脂复合材料的努氏硬度(KH)、固化深度(DoC)、转化度(DC)、弹性模量(E)和变色度(ΔE)进行了评估。将试样浸入模拟体液的体外溶液中,并使用带有衰减全反射附件的傅立叶变换红外光谱仪对其进行评估后,对所开发的树脂复合材料的生物活性潜力进行了评价。进行单因素方差分析,然后进行 Tukey 检验(p 结论:含有 0.5% 氧氢氧化铌填料的高粘度块状填充树脂复合材料作为增强剂显示出了良好的效果,并且在生物活性潜能方面表现出色,但与采用 Giomer 技术的商用树脂复合材料相比,其可预测性较差。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Niobium oxyhydroxide as a bioactive agent and reinforcement to a high-viscosity bulk-fill resin composite.

Objective: The present in vitro study incorporated niobium oxyhydroxide fillers into an experimental high-viscosity bulk-fill resin composite to improve its mechanical performance and provide it a bioactive potential.

Methodology: Scanning electron microscopy synthesized and characterized 0.5% niobium oxyhydroxide fillers, demonstrating a homogeneous morphology that represented a reinforcement for the feature. Fillers were weighed, gradually added to the experimental resin composite, and homogenized for one minute, forming three groups: BF (experimental high-viscosity bulk-fill resin composite; control), BF0.5 (experimental high-viscosity bulk-fill resin composite modified with 0.5% niobium oxyhydroxide fillers), and BFC (commercial bulk-fill resin composite Beautifil Bulk U, Shofu; positive control). In total, 10 specimens/groups (8 × 2 × 2 mm) underwent flexural strength (FS) tests in a universal testing machine (Instron) (500N). Resin composites were also assessed for Knoop hardness (KH), depth of cure (DoC), degree of conversion (DC), elastic modulus (E), and degree of color change (ΔE). The bioactive potential of the developed resin composite was evaluated after immersing the specimens into a simulated body fluid in vitro solution and assessing them using a Fourier-transformed infrared spectroscope with an attenuated total reflectance accessory. One-way ANOVA, followed by the Tukey's test (p<0.05), determined FS, DC, KH, and ΔE. For DoC, ANOVA was performed, which demonstrated no significant difference between groups (p<0.05).

Conclusions: The high-viscosity bulk-fill resin composite with 0.5% niobium oxyhydroxide fillers showed promising outcomes as reinforcement agents and performed well for bioactive potential, although less predictable than the commercial resin composite with Giomer technology.

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来源期刊
Journal of Applied Oral Science
Journal of Applied Oral Science 医学-牙科与口腔外科
CiteScore
4.80
自引率
3.70%
发文量
46
审稿时长
4-8 weeks
期刊介绍: The Journal of Applied Oral Science is committed in publishing the scientific and technologic advances achieved by the dental community, according to the quality indicators and peer reviewed material, with the objective of assuring its acceptability at the local, regional, national and international levels. The primary goal of The Journal of Applied Oral Science is to publish the outcomes of original investigations as well as invited case reports and invited reviews in the field of Dentistry and related areas.
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