Luo Zhiqiang, Wang Yu, Xu Ye, Wang Jinglin, Yu Yunru
Department of Rheumatology and Immunology Nanjing Drum Tower Hospital School of Biological Science and Medical Engineering Southeast University Nanjing China.
Pharmaceutical Sciences Laboratory Åbo Akademi University Turku Finland.
Smart Med. 2023 Oct 30;2(4):e20230029. doi: 10.1002/SMMD.20230029. eCollection 2023 Nov.
Hyaluronic acid (HA) is an attractive extracellular matrix-derived polymer. The related HA-based hydrogels are emerging to be the hotspots in the cutting edge of biomaterials. The continuous sights concentrate on exploring modification methods and crosslinking strategies to promote the advancement of HA-based hydrogels with enhanced physical/chemical properties and enriched biological performance. Here, the advances on modification methods and crosslinking strategies for fabricating HA-based hydrogels with diverse capacities are summarized. Firstly, the modification reactions that occur on the active hydroxyl, carboxyl and N-acetyl groups of HA molecule are discussed. Next, the emphasis is put on various crosslinking strategies including physical crosslinking, covalent crosslinking and dynamic covalent crosslinking. Finally, we provide a general summary and give a critical viewpoint on the remaining challenges and the future development of HA-based hydrogels. It is hoped that this review can provide new proposals for the specific design of functional hydrogel biomaterials.
透明质酸(HA)是一种具有吸引力的细胞外基质衍生聚合物。相关的基于HA的水凝胶正逐渐成为生物材料前沿领域的热点。持续的研究集中在探索修饰方法和交联策略,以推动具有增强物理/化学性质和丰富生物学性能的基于HA的水凝胶的发展。在此,总结了用于制备具有多种功能的基于HA的水凝胶的修饰方法和交联策略的进展。首先,讨论了在HA分子的活性羟基、羧基和N-乙酰基上发生的修饰反应。接下来,重点介绍了各种交联策略,包括物理交联、共价交联和动态共价交联。最后,我们进行了总体总结,并对基于HA的水凝胶的剩余挑战和未来发展给出了批判性观点。希望这篇综述能够为功能性水凝胶生物材料的具体设计提供新的建议。