Institute for Bioengineering Research, University of Kansas, Lawrence, KS 66045, USA.
Department of Mechanical Engineering, Georgia Southern University, Statesboro, GA 30460, USA.
Molecules. 2022 Aug 27;27(17):5505. doi: 10.3390/molecules27175505.
The low-viscosity adhesive that is used to bond composite restorative materials to the tooth is readily damaged by acids, enzymes, and oral fluids. Bacteria infiltrate the resulting gaps at the composite/tooth interface, demineralize the tooth, and further erode the adhesive. This paper presents the preparation and characterization of a low-crosslink-density hydrophilic adhesive that capitalizes on sol-gel reactions and free-radical polymerization to resist hydrolysis and provide enhanced mechanical properties in wet environments. Polymerization behavior, water sorption, and leachates were investigated. Dynamic mechanical analyses (DMA) were conducted using water-saturated adhesives to mimic load transfer in wet conditions. Data from all tests were analyzed using appropriate statistical tests (α = 0.05). The degree of conversion was comparable for experimental and control adhesives at 88.3 and 84.3%, respectively. HEMA leachate was significantly lower for the experimental (2.9 wt%) compared to control (7.2 wt%). After 3 days of aqueous aging, the storage and rubbery moduli and the glass transition temperature of the experimental adhesive (57.5MPa, 12.8MPa, and 38.7 °C, respectively) were significantly higher than control (7.4MPa, 4.3 MPa, and 25.9 °C, respectively). The results indicated that the autonomic sol-gel reaction continues in the wet environment, leading to intrinsic reinforcement of the polymer network, improved hydrolytic stability, and enhanced mechanical properties.
用于将复合修复材料粘结到牙齿上的低粘度胶粘剂很容易被酸、酶和口腔液破坏。细菌渗透到复合材料/牙齿界面的缝隙中,使牙齿脱矿,并进一步侵蚀胶粘剂。本文介绍了一种低交联密度亲水性胶粘剂的制备和性能表征,该胶粘剂利用溶胶-凝胶反应和自由基聚合来抵抗水解,并在潮湿环境中提供增强的机械性能。研究了聚合行为、吸水率和浸出物。使用水饱和的胶粘剂进行动态力学分析(DMA),以模拟湿条件下的载荷传递。使用适当的统计检验(α=0.05)对所有测试的数据进行了分析。实验和对照胶粘剂的转化率分别为 88.3%和 84.3%,相当。实验胶粘剂(2.9wt%)的 HEMA 浸出物明显低于对照胶粘剂(7.2wt%)。在水老化 3 天后,实验胶粘剂的储能模量、橡胶模量和玻璃化转变温度(分别为 57.5MPa、12.8MPa 和 38.7°C)明显高于对照胶粘剂(分别为 7.4MPa、4.3MPa 和 25.9°C)。结果表明,自主溶胶-凝胶反应在潮湿环境中持续进行,导致聚合物网络的内在增强、水解稳定性的提高和机械性能的增强。