School of Resources and Chemical Engineering, Sanming University, Sanming, 365004, China.
Department of Orthopedics, Shanghai Tongji Hospital, School of Medicine, Tongji University, Shanghai, 200092, China.
Macromol Biosci. 2024 Feb;24(2):e2300325. doi: 10.1002/mabi.202300325. Epub 2023 Oct 15.
The clinical treatment of bone defects presents ongoing challenges. One promising approach is bone tissue engineering (BTE), wherein hydrogels have garnered significant attention. However, the application of hydrogels in BTE is severely limited due to their poor mechanical properties, as well as their inferior proangiogenic and osteogenic activities. To address these limitations, our develop a dual cross-linked alendronate (ALN)-Ca /Mg -doped sulfated hyaluronic acid (SHA@CM) hydrogel, using a one-step mixing injection molding method known as "three-in-one" approach. This approach enabled the simultaneous formation of Schiff-Base crosslinking and electric attraction-based crosslinking within the hydrogel. The Schiff-Base crosslinking contributed to the majority of the hydrogel's mechanical strength, while the electric attraction-based crosslinking served as a release reservoir for Ca /Mg and ALN, promoting enhanced osteogenic activities and providing additional mechanical reinforcement to the hydrogel. These experimental data demonstrates several favorable properties of the SHA@CM hydrogel, including satisfactory injectability, rapid gelation, self-healing capacity, and excellent cytocompatibility. Moreover, the presence of sulfated groups and Mg within the SHA@CM hydrogel exhibited pro-angiogenic effects, while the controlled release of nanoparticles formed by Ca /Mg and ALN further enhanced the osteogenesis of the hydrogel. Overall, these results indicate that the SHA@CM hydrogel holds significant potential for the clinical translation of BTE.
骨缺损的临床治疗仍然存在挑战。一种很有前途的方法是骨组织工程(BTE),其中水凝胶受到了广泛关注。然而,由于其机械性能差以及促血管生成和成骨活性差,水凝胶在 BTE 中的应用受到严重限制。为了解决这些限制,我们开发了一种双交联的阿仑膦酸钠(ALN)-Ca/Mg 掺杂硫酸化透明质酸(SHA@CM)水凝胶,使用一种称为“三位一体”的一步混合注塑方法。这种方法能够在水凝胶中同时形成席夫碱交联和基于静电吸引的交联。席夫碱交联贡献了水凝胶大部分的机械强度,而基于静电吸引的交联作为 Ca/Mg 和 ALN 的释放库,促进了增强的成骨活性,并为水凝胶提供了额外的机械增强。这些实验数据表明 SHA@CM 水凝胶具有几种有利的性质,包括令人满意的可注射性、快速凝胶化、自修复能力和良好的细胞相容性。此外,SHA@CM 水凝胶中存在的硫酸根和 Mg 具有促血管生成作用,而 Ca/Mg 和 ALN 形成的纳米颗粒的控制释放进一步增强了水凝胶的成骨作用。总的来说,这些结果表明 SHA@CM 水凝胶在 BTE 的临床转化中具有重要的应用潜力。