归巢(生物学)
间充质干细胞
软骨
间质细胞
骨关节炎
趋化性
细胞生物学
生物医学工程
组织工程
干细胞
化学
癌症研究
医学
病理
解剖
生物
生物化学
受体
替代医学
生态学
作者
Hui Liu,Xi Xiang,Jianbo Huang,Bihui Zhu,Liyun Wang,Yuanjiao Tang,Fangxue Du,Ling Li,Feng Yan,Lang Ma,Li Qiu
标识
DOI:10.1016/j.cclet.2020.12.004
摘要
The increasing incidence of osteoarthritis (OA) seriously affects life quality, posing a huge socioeconomic burden. Tissue engineering technology has become a hot topic in articular cartilage repair as one of the key treatment methods to alleviate OA. Hydrogel, one of the most commonly used scaffold materials, can provide a good extracellular matrix microenvironment for seed cells such as bone marrow mesenchymal stem cells (BMSCs), which can promote cartilage regeneration. However, the low homing rate of stem cells severely limits their role in promoting articular cartilage regeneration. Stromal cell-derived factor-1α (SDF-1α) plays a crucial role in the activation, mobilization, homing, and migration of MSCs. Herein, a novel injectable chemotaxis hydrogel, composed of chitosan-based injectable hydrogel and embedding SDF-1α-loaded nanodroplets ([email protected]α) was designed and fabricated. The ultrasound was then used to augment the injectable chemotaxis hydrogel and promote the homing migration of BMSCs for OA cartilage repair. The effect of ultrasound augmenting injectable [email protected]α/hydrogel on the migration of BMSCs was verified in vitro and in vivo, which remarkably promotes stem cell homing and the repair of cartilage in the OA model. Therefore, the treatment strategy of ultrasound augmenting injectable chemotaxis hydrogel has a bright potential for OA articular cartilage repair.
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