Vasiliadis Angelo V, Katakalos Konstantinos
School of Medicine, Aristotle University of Thessaloniki, 54124 Thessaloniki, Greece.
2nd Department of Orthopedic Surgery, General Hospital of Thessaloniki, 56403 Thessaloniki, Greece.
J Funct Biomater. 2020 Nov 1;11(4):78. doi: 10.3390/jfb11040078.
Tendons are unique forms of connective tissue aiming to transmit the mechanical force of muscle contraction to the bones. Tendon injury may be due to direct trauma or might be secondary to overuse injury and age-related degeneration, leading to inflammation, weakening and subsequent rupture. Current traditional treatment strategies focus on pain relief, reduction of the inflammation and functional restoration. Tendon repair surgery can be performed in people with tendon injuries to restore the tendon's function, with re-rupture being the main potential complication. Novel therapeutic approaches that address the underlying pathology of the disease is warranted. Scaffolds represent a promising solution to the challenges associated with tendon tissue engineering. The ideal scaffold for tendon tissue engineering needs to exhibit physiologically relevant mechanical properties and to facilitate functional graft integration by promoting the regeneration of the native tissue.
肌腱是一种独特的结缔组织形式,旨在将肌肉收缩产生的机械力传递至骨骼。肌腱损伤可能源于直接创伤,也可能继发于过度使用损伤和与年龄相关的退变,进而导致炎症、肌腱弱化及随后的断裂。当前传统治疗策略侧重于缓解疼痛、减轻炎症和恢复功能。对于肌腱损伤患者可进行肌腱修复手术以恢复肌腱功能,再次断裂是主要的潜在并发症。有必要研发针对该疾病潜在病理机制的新型治疗方法。支架为肌腱组织工程相关挑战提供了一种有前景的解决方案。理想的肌腱组织工程支架需具备与生理相关的力学性能,并通过促进天然组织再生来推动功能性移植物整合。