Liu Yuwei, Wang Gang, Luo Huitong, Zhao Bangjiao, Liao Muheng, Dai Qiyuan, Li Maocai, Li Qingtao, Cao Xiaodong
School of Materials Science and Engineering, South China University of Technology, Guangzhou 510641, P.R. China.
National Engineering Research Centre for Tissue Restoration and Reconstruction, Guangzhou 510006, P.R. China.
Regen Biomater. 2023 May 17;10:rbad054. doi: 10.1093/rb/rbad054. eCollection 2023.
Flexible hydrogels containing various osteogenic inorganic constituents, which can accommodate complicated shape variations, are considered as ideal grafts for craniofacial bone defect reconstruction. However, in most hybrid hydrogels, poor interaction between the polymer network and particles has detrimental effects on hydrogel rheological and structural properties, clinical manipulation and repair efficacy. In this article, we designed and prepared a series of hyaluronic acid composite hydrogel containing Cu-doped bioactive glass (CuBG) and phosphoserine (PS), in which hyaluronic acid was modified by methacrylate groups and phenylboronic acid groups to form a double crosslinked network. PS acted as an interaction bridge of CuBG particles and HAMA-PBA network to improve the mechanical properties of the composite hydrogels. The CuBG/PS hydrogels exhibited suitable rheological properties (injectable, self-healing, shape-adaptable), bone tissue integrating ability and anti-bacterial property. Meanwhile, we found that CuBG and PS have synergistic effect on improving osteogenic efficiency both and , particularly when the ratio of CuBG to PS is lower than 3 (9CB/3PS). This work provided a versatile and scalable approach to enhanced the interaction within inorganic particles and polymer network in hydrogels without extra modification on components.
含有各种成骨无机成分的柔性水凝胶能够适应复杂的形状变化,被认为是颅面骨缺损修复的理想移植物。然而,在大多数混合水凝胶中,聚合物网络与颗粒之间的不良相互作用会对水凝胶的流变学和结构性能、临床操作及修复效果产生不利影响。在本文中,我们设计并制备了一系列含有铜掺杂生物活性玻璃(CuBG)和磷酸丝氨酸(PS)的透明质酸复合水凝胶,其中透明质酸通过甲基丙烯酸酯基团和苯硼酸基团进行改性,形成双交联网络。PS作为CuBG颗粒与HAMA - PBA网络的相互作用桥梁,以改善复合水凝胶的力学性能。CuBG/PS水凝胶表现出合适的流变学性能(可注射、自愈合、形状适应性)、骨组织整合能力和抗菌性能。同时,我们发现CuBG和PS在促进成骨效率方面具有协同作用,特别是当CuBG与PS的比例低于3(9CB/3PS)时。这项工作提供了一种通用且可扩展的方法,无需对成分进行额外改性即可增强水凝胶中无机颗粒与聚合物网络之间的相互作用。