Spatiotemporal regulation of endogenous MSCs using a functional injectable hydrogel system for cartilage regeneration

软骨发生 间充质干细胞 自愈水凝胶 丝素 软骨 材料科学 生物医学工程 再生(生物学) 组织工程 间质细胞 关节软骨修复 体内 药物输送 生物物理学 细胞生物学 纳米技术 解剖 骨关节炎 关节软骨 丝绸 复合材料 生物 病理 生物技术 医学 高分子化学 替代医学
作者
Yunsheng Dong,Yufei Liu,Yuehua Chen,Xun Sun,Lin Zhang,Zhiling Zhang,Yanying Wang,Chunxiao Qi,Shufang Wang,Qiang Yang
出处
期刊:Npg Asia Materials [Nature Portfolio]
卷期号:13 (1) 被引量:49
标识
DOI:10.1038/s41427-021-00339-3
摘要

Abstract Hydrogels have been extensively favored as drug and cell carriers for the repair of knee cartilage defects. Recruiting mesenchymal stem cells (MSCs) in situ to the defect region could reduce the risk of contamination during cell delivery, which is a highly promising strategy to enhance cartilage repair. Here, a cell-free cartilage tissue engineering (TE) system was developed by applying an injectable chitosan/silk fibroin hydrogel. The hydrogel system could release first stromal cell-derived factor-1 (SDF-1) and then kartogenin (KGN) in a unique sequential drug release mode, which could spatiotemporally promote the recruitment and chondrogenic differentiation of MSCs. This system showed good performance when formulated with SDF-1 (200 ng/mL) and PLGA microspheres loaded with KGN (10 μΜ). The results showed that the hydrogel had good injectability and a reticular porous structure. The microspheres were distributed uniformly in the hydrogel and permitted the sequential release of SDF-1 and KGN. The results of in vitro experiments showed that the hydrogel system had good cytocompatibility and promoted the migration and differentiation of MSCs into chondrocytes. In vivo experiments on articular cartilage defects in rabbits showed that the cell-free hydrogel system was beneficial for cartilage regeneration. Therefore, the composite hydrogel system shows potential for application in cell-free cartilage TE.
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