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Innovative Strategies in Tendon Tissue Engineering

机译:肌腱组织工程中的创新策略

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摘要

The tendon is a highly aligned connective tissue that transmits force from muscle to bone. Each year, more than 32 million tendon injuries have been reported, in fact, tendinopathies represent at least 50% of all sports injuries, and their incidence rates have increased in recent decades due to the aging population. Current clinical grafts used in tendon treatment are subject to several restrictions and there is a significant demand for alternative engineered tissue. For this reason, innovative strategies need to be explored. Tendon replacement and regeneration are complex since scaffolds need to guarantee an adequate hierarchical structured morphology and mechanical properties to stand the load. Moreover, to guide cell proliferation and growth, scaffolds should provide a fibrous network that mimics the collagen arrangement of the extracellular matrix in the tendons. This review focuses on tendon repair and regeneration. Particular attention has been devoted to the innovative approaches in tissue engineering. Advanced manufacturing techniques, such as electrospinning, soft lithography, and three-dimensional (3D) printing, have been described. Furthermore, biological augmentation has been considered, as an emerging strategy with great therapeutic potential.
机译:肌腱是高度对齐的结缔组织,其将力从肌肉传递到骨骼。每年,据报道,超过3200万肌腱伤害,其实肌腱病有至少50%的体育伤害,近几十年来的寿命率增加了由于人口老龄化。用于肌腱处理的当前临床移植物受到几种限制,并且对替代工程组织具有显着的需求。因此,需要探索创新策略。肌腱置换和再生是复杂的,因为支架需要保证足够的分层结构化形态和机械性能以抵抗负荷。此外,为了引导细胞增殖和生长,支架应提供一种纤维网络,用于模拟肌腱中细胞外基质的胶原蛋白布置。该评论重点介绍肌腱修复和再生。组织工程中的创新方法已经特别注意。已经描述了先进的制造技术,例如静电纺丝,软光刻和三维(3D)印刷。此外,被认为是具有巨大治疗潜力的新出现策略的生物学增强。

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