Tang Xunmeng, Wang Yawen, Liu Na, Deng Xinyuan, Zhou Ziyi, Yu Chenghao, Wang Yuanfei, Fang Kuanjun, Wu Tong
Shandong Key Laboratory of Medical and Health Textile Materials, College of Textile & Clothing, Collaborative Innovation Center for Eco-textiles of Shandong Province and the Ministry of Education, Qingdao University, Qingdao 266071, China.
Institute of Neuroregeneration & Neurorehabilitation, Department of Pathophysiology, School of Basic Medicine, Qingdao University, Qingdao 266071, China.
ACS Biomater Sci Eng. 2024 Aug 12;10(8):5181-5193. doi: 10.1021/acsbiomaterials.4c00707. Epub 2024 Jun 27.
Bone defects typically result in bone nonunion, delayed or nonhealing, and localized dysfunction, and commonly used clinical treatments (i.e., autologous and allogeneic grafts) have limited results. The multifunctional bone tissue engineering scaffold provides a new treatment for the repair of bone defects. Herein, a three-dimensional porous composite scaffold with stable mechanical support, effective antibacterial and hemostasis properties, and the ability to promote the rapid repair of bone defects was synthesized using methacrylated carboxymethyl chitosan and icariin-loaded poly-l-lactide/gelatin short fibers (M-CMCS-SFs). Icariin-loaded SFs in the M-CMCS scaffold resulted in the sustained release of osteogenic agents, which was beneficial for mechanical reinforcement. Both the porous structure and the use of chitosan facilitate the effective absorption of blood and fluid exudates. Moreover, its superior antibacterial properties could prevent the occurrence of inflammation and infection. When cultured with bone mesenchymal stem cells, the composite scaffold showed a promotion in osteogenic differentiation. Taken together, such a multifunctional composite scaffold showed comprehensive performance in antibacterial, hemostasis, and bone regeneration, thus holding promising potential in the repair of bone defects and related medical treatments.
骨缺损通常会导致骨不连、延迟愈合或不愈合以及局部功能障碍,而常用的临床治疗方法(即自体和异体移植物)效果有限。多功能骨组织工程支架为骨缺损的修复提供了一种新的治疗方法。在此,使用甲基丙烯酸化羧甲基壳聚糖和载有淫羊藿苷的聚左旋乳酸/明胶短纤维(M-CMCS-SFs)合成了一种具有稳定机械支撑、有效抗菌和止血性能以及促进骨缺损快速修复能力的三维多孔复合支架。M-CMCS支架中载有淫羊藿苷的短纤维导致成骨剂的持续释放,这有利于机械增强。多孔结构和壳聚糖的使用都有助于有效吸收血液和液体渗出物。此外,其优异的抗菌性能可防止炎症和感染的发生。当与骨间充质干细胞一起培养时,复合支架显示出促进成骨分化的作用。综上所述,这种多功能复合支架在抗菌、止血和骨再生方面表现出综合性能,因此在骨缺损修复和相关医学治疗中具有广阔的应用前景。