制定机械坚固的高性能复合修复材料。

IF 5 3区 医学 Q1 ENGINEERING, BIOMEDICAL
Austyn Salazar, Natalie Anderson, Jeffrey Stansbury
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引用次数: 0

摘要

虽然牙科树脂复合修复体提供了一种广泛使用的直接放置治疗选择,旨在取代天然牙齿的形状和功能,但这些材料的几个临床相关性能方面可以改进。牙科复合材料的树脂基质相的配方,以实现高效光聚合,从而产生具有优异机械性能的聚合物,一直是一个挑战,通过使用结构新颖、反应性更强的单体以及形成包含非共价增强相互作用的聚合物网络来解决这个问题。本研究的目的是验证一组四氨基甲酸二丙烯酸酯(TUDAs),其氨基甲酸酯与酸性共聚物的新型配位构型可以被设计成高度坚固的新型复合材料。由于新型的分子设计,这种探索性方法通过反应动力学和三点弯曲测试来评估性能。在添加填料之前,对这些配方进行了转化率和力学性能的测量。最初的配方表现出出色的干力学测试结果,随后显示出对水储存的主要不耐受,这导致了使用二丙烯酸氨基甲酸酯(UDA)的模型研究,然后添加疏水性TUDA单体。一旦树脂配方优化,硅烷处理颗粒填料加入,以确定作为复合材料的有效性。最终配方使用疏水性芳香TUDA和4-甲基丙烯酸氧乙基偏苯三酸酐(4-META)作为潜酸性共聚单体,以及丙烯酸(AA)和甲基丙烯酸(MAA)的混合物。相对于目前的牙科复合修复材料,该配方具有非常高的反应性和机械性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Formulating Mechanically Robust Composite Restorative Materials for High Performance.

Although dental resin composite restoratives offer a widely used direct-placement treatment option aimed at replacing the form and function of a natural tooth, there are several clinically relevant performance aspects of these materials that can be improved. The formulation of the resin matrix phase of dental composites for high-efficiency photopolymerization leading to polymers with excellent mechanical properties has always been a challenge that is addressed here through the use of structurally new and more reactive monomers as well as the formation of polymer networks that incorporate non-covalent reinforcing interactions. The purpose of this study was to validate that a set of tetraurethane diacrylates (TUDAs) with a novel configuration of their urethane linkages in coordination with acidic comonomers could be devised to obtain highly robust new composite materials. Due to the novel molecular design, this exploratory approach was conducted using reaction kinetics and three-point bend testing to assess the performance. Conversion and mechanical properties were measured to refine these formulations prior to the addition of filler. The initial formulations demonstrated outstanding dry mechanical test results that subsequently showed a major intolerance to water storage, which led to a model study using urethane diacrylate (UDA) followed by the addition of hydrophobic TUDA monomers. Once the resin formulations were optimized, silane-treated particulate filler was added to determine the effectiveness as composite materials. The final formulation used a hydrophobic, aromatic TUDA along with 4-methacryloxyethyl trimellitic anhydride (4-META) as a latent acidic comonomer and a mixture of acrylic acid (AA) and methacrylic acid (MAA). This formulation achieves a very high level of both reactivity and mechanical properties relative to current dental composite restoratives.

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来源期刊
Journal of Functional Biomaterials
Journal of Functional Biomaterials Engineering-Biomedical Engineering
CiteScore
4.60
自引率
4.20%
发文量
226
审稿时长
11 weeks
期刊介绍: Journal of Functional Biomaterials (JFB, ISSN 2079-4983) is an international and interdisciplinary scientific journal that publishes regular research papers (articles), reviews and short communications about applications of materials for biomedical use. JFB covers subjects from chemistry, pharmacy, biology, physics over to engineering. The journal focuses on the preparation, performance and use of functional biomaterials in biomedical devices and their behaviour in physiological environments. Our aim is to encourage scientists to publish their results in as much detail as possible. Therefore, there is no restriction on the length of the papers. The full experimental details must be provided so that the results can be reproduced. Several topical special issues will be published. Scope: adhesion, adsorption, biocompatibility, biohybrid materials, bio-inert materials, biomaterials, biomedical devices, biomimetic materials, bone repair, cardiovascular devices, ceramics, composite materials, dental implants, dental materials, drug delivery systems, functional biopolymers, glasses, hyper branched polymers, molecularly imprinted polymers (MIPs), nanomedicine, nanoparticles, nanotechnology, natural materials, self-assembly smart materials, stimuli responsive materials, surface modification, tissue devices, tissue engineering, tissue-derived materials, urological devices.
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