Biohybrid Systems Group, Coulter Department of Biomedical Engineering, Georgia Institute of Technology, Emory University School of Medicine, Atlanta, GA, 30322, USA.
Institute of Cell and Tissue Engineering, College of Medicine, The Catholic University of Korea, Seoul, 06591, the Republic of Korea.
Tissue Eng Regen Med. 2023 Jul;20(4):553-562. doi: 10.1007/s13770-023-00550-z. Epub 2023 Jun 6.
Tendon, connective tissue between bone and muscle has unique component of the musculoskeletal system. It plays important role for transporting mechanical stress from muscle to bone and enabling locomotive motion of the body. There are some restoration capacities in the tendon tissue, but the injured tendons are not completely regenerated after acute and chronic tendon injury. At this point, the treatment options for tendon injuries are limited and not that successful. Therefore, biomedical engineering approaches are emerged to cope with this issue. Among them, three-dimensional cell culture platforms provided similarity to in vivo conditions and suggested opportunities for new therapeutic approaches for treatment of tendon injuries. In this review, we focus on the characteristics of tendon tissue and tendon pathologies which can be targets for tendon tissue engineering strategies. Then proof-of-concept and pre-clinical studies leveraging advanced 3-dimensional cell culture platforms for tendon tissue regeneration have been discussed.
肌腱是连接骨骼和肌肉的结缔组织,是肌肉骨骼系统的独特组成部分。它在将机械应力从肌肉传递到骨骼并使身体运动方面发挥着重要作用。肌腱组织具有一定的修复能力,但在急性和慢性肌腱损伤后,受损的肌腱不能完全再生。此时,肌腱损伤的治疗选择有限,且效果并不理想。因此,出现了生物医学工程方法来应对这一问题。其中,三维细胞培养平台提供了与体内条件相似的环境,并为治疗肌腱损伤的新治疗方法提供了机会。在这篇综述中,我们重点介绍了肌腱组织的特征和可以作为肌腱组织工程策略靶点的肌腱病变。然后讨论了利用先进的三维细胞培养平台进行肌腱组织再生的概念验证和临床前研究。