Ning Chao, Li Pinxue, Gao Cangjian, Fu Liwei, Liao Zhiyao, Tian Guangzhao, Yin Han, Li Muzhe, Sui Xiang, Yuan Zhiguo, Liu Shuyun, Guo Quanyi
Chinese PLA Medical School, Beijing, China.
Beijing Key Lab of Regenerative Medicine in Orthopedics, Key Laboratory of Musculoskeletal Trauma and War Injuries PLA, Institute of Orthopedics, Chinese PLA General Hospital, Beijing, China.
Front Bioeng Biotechnol. 2023 Feb 20;11:1115312. doi: 10.3389/fbioe.2023.1115312. eCollection 2023.
Tendon injuries often result in significant pain and disability and impose severe clinical and financial burdens on our society. Despite considerable achievements in the field of regenerative medicine in the past several decades, effective treatments remain a challenge due to the limited natural healing capacity of tendons caused by poor cell density and vascularization. The development of tissue engineering has provided more promising results in regenerating tendon-like tissues with compositional, structural and functional characteristics comparable to those of native tendon tissues. Tissue engineering is the discipline of regenerative medicine that aims to restore the physiological functions of tissues by using a combination of cells and materials, as well as suitable biochemical and physicochemical factors. In this review, following a discussion of tendon structure, injury and healing, we aim to elucidate the current strategies (biomaterials, scaffold fabrication techniques, cells, biological adjuncts, mechanical loading and bioreactors, and the role of macrophage polarization in tendon regeneration), challenges and future directions in the field of tendon tissue engineering.
肌腱损伤常常导致严重的疼痛和功能障碍,给社会带来沉重的临床和经济负担。尽管在过去几十年里再生医学领域取得了显著成就,但由于肌腱细胞密度低和血管化程度差导致其自然愈合能力有限,有效的治疗方法仍然是一个挑战。组织工程的发展在再生具有与天然肌腱组织相当的组成、结构和功能特征的肌腱样组织方面取得了更有前景的成果。组织工程是再生医学的一个学科,旨在通过细胞和材料的组合以及合适的生化和物理化学因素来恢复组织的生理功能。在这篇综述中,在讨论了肌腱结构、损伤和愈合之后,我们旨在阐明肌腱组织工程领域的当前策略(生物材料、支架制造技术、细胞、生物辅助物、机械加载和生物反应器以及巨噬细胞极化在肌腱再生中的作用)、挑战和未来方向。