Escuela de Pregrado, Dirección Académica, Vicerrectoría de Sede, Universidad Nacional de Colombia, Sede de La Paz, Cesar, Colombia.
Biomimetics Laboratory, Biotechnology Institute, Universidad Nacional de Colombia, Bogotá, Colombia.
J Biomed Mater Res B Appl Biomater. 2023 Sep;111(9):1705-1722. doi: 10.1002/jbm.b.35261. Epub 2023 May 13.
Cartilage damage caused by trauma or osteoarthritis is a common joint disease that can increase the social and economic burden in society. Due to its avascular characteristics, the poor migration ability of chondrocytes, and a low number of progenitor cells, the self-healing ability of cartilage defects has been significantly limited. Hydrogels have been developed into one of the most suitable biomaterials for the regeneration of cartilage because of its characteristics such as high-water absorption, biodegradation, porosity, and biocompatibility similar to natural extracellular matrix. Therefore, the present review article presents a conceptual framework that summarizes the anatomical, molecular structure and biochemical properties of hyaline cartilage located in long bones: articular cartilage and growth plate. Moreover, the importance of preparation and application of hyaluronic acid - gelatin hydrogels for cartilage tissue engineering are included. Hydrogels possess benefits of stimulating the production of Agc1, Col2α1-IIa, and SOX9, molecules important for the synthesis and composition of the extracellular matrix of cartilage. Accordingly, they are believed to be promising biomaterials of therapeutic alternatives to treat cartilage damage.
创伤或骨关节炎引起的软骨损伤是一种常见的关节疾病,会增加社会的经济负担。由于软骨缺乏血管、软骨细胞迁移能力差、祖细胞数量少,其自我修复能力受到显著限制。水凝胶因其高吸水性、可生物降解性、多孔性和与天然细胞外基质相似的生物相容性等特点,已被开发成为最适合软骨再生的生物材料之一。因此,本文综述了位于长骨中的透明软骨(关节软骨和生长板)的解剖学、分子结构和生化特性。此外,还包括透明质酸-明胶水凝胶在软骨组织工程中的制备和应用。水凝胶具有刺激 AGC1、COL2α1-IIa 和 SOX9 等分子产生的作用,这些分子对软骨细胞外基质的合成和组成很重要。因此,它们被认为是治疗软骨损伤的有前途的治疗替代生物材料。