肌腱
跟腱
体内
介孔二氧化硅
生物医学工程
人口
材料科学
医学
介孔材料
外科
化学
生物
生物技术
生物化学
环境卫生
催化作用
作者
Renwen Wan,Zhiwen Luo,Xiaoshuang Nie,Xinting Feng,Yanwei He,Fangqi Li,Shan Liu,Wenbo Chen,Beijie Qi,Haocheng Qin,Wei Luo,Hanli Zhang,Hongyi Jiang,Junming Sun,Xuanyong Liu,Qing Wang,Xiliang Shang,Jiajun Qiu,Shiyi Chen
标识
DOI:10.1002/adhm.202400968
摘要
Abstract Tendon injuries are pervasive orthopedic injuries encountered by the general population. Nonetheless, recovery after severe injuries, such as Achilles tendon injury, is limited. Consequently, there is a pressing need to devise interventions, including biomaterials, that foster tendon healing. Regrettably, tissue engineering treatments have faced obstacles in crafting appropriate tissue scaffolds and efficacious nanomedical approaches. To surmount these hurdles, an innovative injectable hydrogel (CP@SiO 2 ), comprising puerarin and chitosan through in situ self‐assembly, is pioneered while concurrently delivering mesoporous silica nanoparticles for tendon healing. In this research, CP@SiO 2 hydrogel is employed for the treatment of Achilles tendon injuries, conducting extensive in vivo and in vitro experiments to evaluate its efficacy. This reults demonstrates that CP@SiO 2 hydrogel enhances the proliferation and differentiation of tendon‐derived stem cells, and mitigates inflammation through the modulation of macrophage polarization. Furthermore, using histological and behavioral analyses, it is found that CP@SiO 2 hydrogel can improve the histological and biomechanical properties of injured tendons. This findings indicate that this multifaceted injectable CP@SiO 2 hydrogel constitutes a suitable bioactive material for tendon repair and presents a promising new strategy for the clinical management of tendon injuries.
科研通智能强力驱动
Strongly Powered by AbleSci AI