Trindade Daniela, Cordeiro Rachel, José Henrique Cardoso, Ângelo David Faustino, Alves Nuno, Moura Carla
Centre for Rapid and Sustainable Product Development, Polytechnic of Leiria, 2430-028 Marinha Grande, Portugal.
Instituto Português da Face, 1050-227 Lisboa, Portugal.
Biomolecules. 2021 Jun 23;11(7):933. doi: 10.3390/biom11070933.
The temporomandibular joint (TMJ) is an important structure for the masticatory system and the pathologies associated with it affect a large part of the population and impair people's lifestyle. It comprises an articular disc, that presents low regeneration capacities and the existing clinical options for repairing it are not effective. This way, it is imperative to achieve a permanent solution to guarantee a good quality of life for people who suffer from these pathologies. Complete knowledge of the unique characteristics of the disc will make it easier to achieve a successful tissue engineering (TE) construct. Thus, the search for an effective, safe and lasting solution has already started, including materials that replace the disc, is currently growing. The search for a solution based on TE approaches, which involve regenerating the disc. The present work revises the TMJ disc characteristics and its associated diseases. The different materials used for a total disc replacement are presented, highlighting the TE area. A special focus on future trends in the field and part of the solution for the TMJ problems described in this review will involve the development of a promising engineered disc approach through the use of decellularized extracellular matrices.
颞下颌关节(TMJ)是咀嚼系统的重要结构,与之相关的病理状况影响着很大一部分人群,并损害人们的生活方式。它包含一个关节盘,该关节盘再生能力低,现有的修复临床方法效果不佳。因此,必须找到一个永久性的解决方案,以保证患有这些病症的人的生活质量。全面了解关节盘的独特特性将有助于成功构建组织工程(TE)结构。因此,寻找一种有效、安全且持久的解决方案已经开始,包括替代关节盘的材料,目前这方面的研究正在不断增加。寻找基于TE方法的解决方案,即再生关节盘。本研究回顾了颞下颌关节盘的特征及其相关疾病。介绍了用于全关节盘置换的不同材料,重点突出了组织工程领域。特别关注该领域的未来趋势,本综述中描述的颞下颌关节问题的部分解决方案将涉及通过使用脱细胞细胞外基质开发一种有前景的工程化关节盘方法。