Guangxi Collaborative Innovation Center for Biomedicine, Guangxi Medical University, Nanning, Guangxi, China.
Dr. Li Dak Sum & Yip Yio Chin Center for Stem Cell and Regenerative Medicine, School of Medicine, Zhejiang University, Hangzhou, China.
J Tissue Eng Regen Med. 2020 Sep;14(9):1333-1348. doi: 10.1002/term.3078. Epub 2020 Aug 19.
The problem of tendon and ligament (T/L) regeneration in musculoskeletal diseases has long constituted a major challenge. In situ injection of formable biodegradable hydrogels, however, has been demonstrated to treat T/L injury and reduce patient suffering in a minimally invasive manner. An injectable hydrogel is more suitable than other biological materials due to the special physiological structure of T/L. Most other materials utilized to repair T/L are cell-based, growth factor-based materials, with few material properties. In addition, the mechanical property of the gel cannot reach the normal T/L level. This review summarizes advances in natural and synthetic polymeric injectable hydrogels for tissue engineering in T/L and presents prospects for injectable and biodegradable hydrogels for its treatment. In future T/L applications, it is necessary develop an injectable hydrogel with mechanics, tissue damage-specific binding, and disease response. Simultaneously, the advantages of various biological materials must be combined in order to achieve personalized precision therapy.
肌腱和韧带(T/L)再生在肌肉骨骼疾病中的问题长期以来一直是一个主要挑战。然而,可成型的可生物降解水凝胶的原位注射已被证明可微创治疗 T/L 损伤并减轻患者的痛苦。由于 T/L 的特殊生理结构,可注射水凝胶比其他生物材料更合适。大多数用于修复 T/L 的其他材料都是基于细胞的、基于生长因子的材料,材料性能有限。此外,凝胶的机械性能无法达到正常 T/L 水平。本综述总结了用于 T/L 组织工程的天然和合成聚合物可注射水凝胶的最新进展,并对可注射和可生物降解水凝胶的治疗前景进行了展望。在未来的 T/L 应用中,有必要开发一种具有力学性能、组织损伤特异性结合和疾病响应性的可注射水凝胶。同时,必须结合各种生物材料的优点,以实现个性化的精准治疗。