Deng Rong, Xie Yuzheng, Chan Unman, Xu Tao, Huang Yue
School of Stomatology, Jinan University, Guangdong, China.
Department of Mechanical Engineering, Tsinghua University, Beijing, China.
J Dent Res Dent Clin Dent Prospects. 2022 Winter;16(1):1-10. doi: 10.34172/joddd.2022.001. Epub 2022 May 29.
Periodontal tissues are organized in a complex three-dimensional (3D) architecture, including the alveolar bone, cementum, and a highly aligned periodontal ligament (PDL). Regeneration is difficult due to the complex structure of these tissues. Currently, materials are developing rapidly, among which synthetic polymers and hydrogels have extensive applications. Moreover, techniques have made a spurt of progress. By applying guided tissue regeneration (GTR) to hydrogels and cell sheets and using 3D printing, a scaffold with an elaborate biomimetic structure can be constructed to guide the orientation of fibers. The incorporation of cells and biotic factors improves regeneration. Nevertheless, the current studies lack long-term effect tracking, clinical research, and in-depth mechanistic research. In summary, periodontal tissue engineering still has considerable room for development. The development of materials and techniques and an in-depth study of the mechanism will provide an impetus for periodontal regeneration.
牙周组织以复杂的三维(3D)结构组织起来,包括牙槽骨、牙骨质和高度排列的牙周韧带(PDL)。由于这些组织的复杂结构,再生很困难。目前,材料发展迅速,其中合成聚合物和水凝胶有广泛应用。此外,技术也有了突飞猛进的进步。通过将引导组织再生(GTR)应用于水凝胶和细胞片,并使用3D打印,可以构建具有精细仿生结构的支架来引导纤维的取向。细胞和生物因子的加入可改善再生。然而,目前的研究缺乏长期效果跟踪、临床研究和深入的机制研究。总之,牙周组织工程仍有相当大的发展空间。材料和技术的发展以及对机制的深入研究将为牙周再生提供动力。