Wu Di, Qin Hao, Wang Zixuan, Yu Mingzhao, Liu Zhe, Peng Hao, Liang Leilei, Zhang Changqing, Wei Xiaojuan
Department of Orthopedic Surgery, Shanghai Jiao Tong University Affiliated Shanghai Sixth People's Hospital, Shanghai, China.
Center for Reproductive Medicine, Department of Obstetrics and Gynecology, Peking University Third Hospital, Beijing, China.
Front Bioeng Biotechnol. 2022 Jan 19;9:829136. doi: 10.3389/fbioe.2021.829136. eCollection 2021.
Angiogenesis has been recognized to play an essential role in remodeling new bone (osteogenesis). Small extracellular vesicles (sEVs), the endogenously secreted nanovesicles by cells, exhibit great potential in the regeneration of bone defects and the realization of cell-free therapy. Chitosan, a natural polysaccharide, can form a thermosensitive injectable hydrogel through the addition of β-glycerophosphate. Herein, we developed injectable thermosensitive hydrogel-encapsulated sEVs derived from bone mesenchymal stem cells, which significantly prolonged delivery and release and synergistically enhanced bone regeneration. sEVs were isolated and characterized, and the physicochemical properties, release kinetics, and biocompatibility of the hydrogels were analyzed. experiments were performed to investigate osteogenic differentiation, cell proliferation and migration, and tube formation. Thereafter, sEVs were added to the chitosan/β-glycerophosphate hydrogel (sEV@CS/β-GP composite) to repair calvarial defects in rats. The results showed that sEV-loaded hydrogels were biocompatible, exhibiting excellent thermosensitive properties and enhancing bone regeneration. Furthermore, mechanistic studies revealed that exosomal miR-21 targeted SPRY2, thereby promoting angiogenesis. Our study provides new insights on the repair of bone defects with multifunctional controlled-sEV-release hydrogels, which shows great potential in the repair of tissues in the future.
血管生成已被认为在新骨重塑(骨生成)中起重要作用。小细胞外囊泡(sEVs)是细胞内源性分泌的纳米囊泡,在骨缺损再生和实现无细胞治疗方面具有巨大潜力。壳聚糖是一种天然多糖,通过添加β-甘油磷酸可以形成热敏性可注射水凝胶。在此,我们开发了一种由骨间充质干细胞来源的可注射热敏水凝胶包裹的sEVs,其显著延长了递送和释放时间,并协同增强了骨再生。对sEVs进行了分离和表征,并分析了水凝胶的物理化学性质、释放动力学和生物相容性。进行实验以研究成骨分化、细胞增殖和迁移以及血管生成。此后,将sEVs添加到壳聚糖/β-甘油磷酸水凝胶(sEV@CS/β-GP复合材料)中以修复大鼠颅骨缺损。结果表明,负载sEVs的水凝胶具有生物相容性,表现出优异的热敏性能并增强了骨再生。此外,机制研究表明,外泌体miR-21靶向SPRY2,从而促进血管生成。我们的研究为多功能可控sEV释放水凝胶修复骨缺损提供了新的见解,其在未来组织修复中显示出巨大潜力。