Huyang George, Debertin Anne E, Sun Jirun
Dr. Anthony Volpe Research Center, American Dental Association Foundation, National Institute of Standards and Technology, 100 Bureau Dr., Gaithersburg, MD 20899, USA.
Mater Des. 2016 Mar 15;94:295-302. doi: 10.1016/j.matdes.2016.01.046.
The purpose of this project is to design and develop a clinically applicable self-healing dental composite (SHDC). The value of resin-based dental restorations could be improved by increasing their service lives. One way to improve longevity is to obturate micro-cracks that form during or after the composite hardens in the dental cavity. Toward this end, we introduce here a new type of SHDC made with contemporary dental components plus two additional ingredients: a healing powder (HP, strongtium fluoroaluminosilicate particles) and a healing liquid (HL, aqueous solutions of polyacrylic acids) that is enclosed within silica microcapsules. As micro-cracks develop, they will break the microcapsules in their propagation path, thereby releasing HL. This liquid will then react with particles of HP exposed by the crack formation, forming an insoluble reaction product that fills and seals the cracks. The key factors to achieve this self-healing of cracks are discussed. The elastic modulus of a SHDC appeared to be satisfactory. The healing process was confirmed by means of mechanical, morphological, and chemical methods. The SHDC restored micro-cracks without external intervention, thereby showing potential for increasing the service lives of dental restorations. Importantly, this SHDC contains only clinically-tested, biocompatible materials, making it readily applicable.
本项目的目的是设计并开发一种临床适用的自修复牙科复合材料(SHDC)。通过延长树脂基牙科修复体的使用寿命,可以提高其价值。提高使用寿命的一种方法是封闭在牙科窝洞中复合材料硬化期间或之后形成的微裂纹。为此,我们在此介绍一种新型的SHDC,它由当代牙科成分以及另外两种成分制成:一种愈合粉末(HP,氟铝硅酸锶颗粒)和一种愈合液体(HL,聚丙烯酸水溶液),该愈合液体封装在二氧化硅微胶囊内。随着微裂纹的发展,它们会在传播路径中破坏微胶囊,从而释放出HL。然后这种液体将与因裂纹形成而暴露的HP颗粒发生反应,形成一种不溶性反应产物,填充并密封裂纹。讨论了实现这种裂纹自修复的关键因素。一种SHDC的弹性模量似乎令人满意。通过机械、形态学和化学方法证实了愈合过程。SHDC在无外部干预的情况下修复了微裂纹,从而显示出延长牙科修复体使用寿命的潜力。重要的是,这种SHDC仅包含经过临床测试的生物相容性材料,使其易于应用。