Division of Biomaterials and Biomechanics, Department of Restorative Dentistry, Oregon Health and Science University, Portland, OR, USA.
Odontology. 2010 Feb;98(1):2-14. doi: 10.1007/s10266-009-0116-5. Epub 2010 Feb 16.
Understanding outcomes of the interaction between a dental material and tooth tissue is important in terms not only of biocompatibility but also of the potential for the material to modulate the response of the tissue. This interaction is influenced by many factors, including the chemistry of the material and any of its eluted components or degradation products, and the manner in which the tissue responds to these agents. Past studies of this interaction have primarily been aimed at identifying cytotoxic effects. More recently, investigations have focused on specific cellular responses, and in particular, on understanding how the materials themselves actually may contribute to regenerative processes in the tooth. Recent work has demonstrated the solubilization of proteins from dentin exposed to certain materials, such as calcium hydroxide, mineral trioxide aggregate, and acidic solutions that relate to those used in dentin bonding agents, with the subsequent modulation by these proteins of gene expression in odontoblast-like cells. This work suggests that dentin bridge formation under such materials may be stimulated through this process. Thus, there is much merit in examining both how new dental materials can be developed and how more traditional ones can be modified to preferentially stimulate regenerative processes when preferred. This review summarizes current knowledge about the potential beneficial effects derived from the interaction of dental materials with the dentin-pulp complex, as well as potential future developments in this exciting field.
了解牙科材料与牙齿组织之间相互作用的结果非常重要,这不仅关系到生物相容性,还关系到材料是否有潜力调节组织的反应。这种相互作用受到许多因素的影响,包括材料的化学性质及其任何洗脱成分或降解产物,以及组织对这些物质的反应方式。过去对这种相互作用的研究主要旨在确定细胞毒性作用。最近的研究则侧重于特定的细胞反应,特别是理解材料本身如何实际促进牙齿的再生过程。最近的研究表明,某些材料(如氢氧化钙、三氧化矿物聚合体和与牙本质粘结剂中使用的酸性溶液)暴露于牙本质后,可使蛋白质溶解,这些蛋白质随后可调节成牙本质样细胞中的基因表达。这项工作表明,在这些材料下,牙本质桥的形成可能是通过这个过程来刺激的。因此,研究新的牙科材料如何开发以及如何对更传统的材料进行改性,以在需要时优先刺激再生过程,是非常有价值的。这篇综述总结了当前关于牙科材料与牙髓复合体相互作用所带来的潜在有益效果的知识,以及该领域令人兴奋的未来发展。