Luo Keyu, Jin Yufei, Liu Baiyi, Wang Yingbo, Liu Yaoyao, Qiu Si, Zhao Jianhua, Yin Xiang
Center of Orthopedics, Daping Hospital, Army Medical University (Third Military Medical University), Chongqing, P.R. China.
J Tissue Eng. 2024 Dec 20;15:20417314241306681. doi: 10.1177/20417314241306681. eCollection 2024 Jan-Dec.
Skeletal disorders pose significant challenges to health and quality of life, underscoring the critical need for innovative bone repair methods. Recent studies have spotlighted the promising role of extracellular vesicles (EVs) derived from bone marrow mesenchymal stem cells (BMSCs) in conjunction with biomimetic peptide (BP) WKYMVm (WK) for bone repair. This research leveraged a self-healing hydrogel as a carrier, effectively loading EVs and WK to enhance treatment efficacy. Through the regulation of vascular formation and osteoblast differentiation, notable advancements were achieved in mending femoral defect bone injuries, offering new possibilities for addressing bone metabolic disorders. The detailed methodology encompassed hydrogel preparation, EVs and WK loading, in vitro cell studies, and rat model experiments. Results unveiled that graphene oxide gelatin hydrogel loaded with wkymvm and extracellular vesicles (GOG@WK-EVs) notably bolstered osteogenic differentiation of bone cells and angiogenesis, while impeding osteoclast differentiation, culminating in potent bone regeneration within femoral defects.
骨骼疾病对健康和生活质量构成重大挑战,凸显了对创新骨修复方法的迫切需求。最近的研究突出了源自骨髓间充质干细胞(BMSCs)的细胞外囊泡(EVs)与仿生肽(BP)WKYMVm(WK)联合用于骨修复的潜在作用。本研究利用一种自愈水凝胶作为载体,有效负载EVs和WK以提高治疗效果。通过调节血管形成和成骨细胞分化,在修复股骨缺损骨损伤方面取得了显著进展,为解决骨代谢紊乱提供了新的可能性。详细的方法包括水凝胶制备、EVs和WK负载、体外细胞研究以及大鼠模型实验。结果表明,负载wkymvm和细胞外囊泡的氧化石墨烯明胶水凝胶(GOG@WK-EVs)显著促进了骨细胞的成骨分化和血管生成,同时抑制破骨细胞分化,最终在股骨缺损处实现了有效的骨再生。