Department of Biosystems Engineering, Institute of Forest Science, Kangwon National University, Chuncheon 24341, Republic of Korea.
Department of Biosystems Engineering, Institute of Forest Science, Kangwon National University, Chuncheon 24341, Republic of Korea.
Int J Biol Macromol. 2021 Feb 15;170:178-188. doi: 10.1016/j.ijbiomac.2020.12.145. Epub 2020 Dec 23.
Chitosan-based hydrogels have received significant interest in tissue engineering and regenerative medicine applications owing to their superior biocompatibility. However, their applications are restricted owing to their weak mechanical strength. Cellulose nanocrystals (CNCs) are often explored as reinforcing agents to improve the native properties of polymers owing to their superior physicochemical properties. We fabricated a multi-functional hydrogel scaffold of chitosan/CNCs by incorporating different amounts of CNCs into a chitosan (CH) hydrogel. Significant enhancement in the mechanical strength was noted in the CH/CNCs as compared to that in pure CH hydrogel scaffolds. The cytocompatibility of the fabricated scaffolds was monitored in the presence of bone-marrow-derived mesenchymal stem cells (BMSCs). Improved cell viability and mineralization were observed with CH/CNC hydrogel scaffolds than those with pure CH hydrogel scaffolds. Enhanced osteogenic-related gene expression was observed in the CH/CNC hydrogel scaffold environment than that in the control, indicating their osteogenic potential, in addition to enhanced antibacterial activity. Developed composite scaffolds exhibited improved sustained drug release compared to that by pure polymer scaffolds, and this was more sustained in the scaffolds with higher CNC content. Therefore, the fabricated scaffolds may have been used in tissue engineering for osteogenesis, as antibacterial agents, and in sustained drug delivery.
壳聚糖基水凝胶因其优异的生物相容性而在组织工程和再生医学应用中受到广泛关注。然而,由于其机械强度较弱,其应用受到限制。由于具有优异的物理化学性能,纤维素纳米晶体(CNC)通常被探索作为增强剂来改善聚合物的固有性能。我们通过将不同量的 CNC 掺入壳聚糖(CH)水凝胶中来制备壳聚糖/CNC 的多功能水凝胶支架。与纯 CH 水凝胶支架相比,CH/CNC 中的机械强度显著提高。在存在骨髓间充质干细胞(BMSCs)的情况下监测了所制备支架的细胞相容性。与纯 CH 水凝胶支架相比,CH/CNC 水凝胶支架观察到细胞活力和矿化的改善。在 CH/CNC 水凝胶支架环境中观察到增强的成骨相关基因表达,表明其成骨潜力,以及增强的抗菌活性。与纯聚合物支架相比,开发的复合支架表现出改善的持续药物释放,并且在含有更高 CNC 含量的支架中更持续。因此,所制备的支架可用于组织工程中的成骨、抗菌剂和持续药物输送。