软骨发生
软骨
再生(生物学)
生物相容性
自愈水凝胶
脚手架
刺槐豆胶
材料科学
生物医学工程
阿格里坎
关节软骨修复
组织工程
间充质干细胞
细胞外基质
化学
细胞生物学
解剖
骨关节炎
生物
关节软骨
医学
生物化学
高分子化学
病理
复合材料
流变学
替代医学
冶金
黄原胶
作者
Yangyang Qu,Si He,Shixing Luo,Jinmin Zhao,Ruiming Liang,Chuanan Liao,Li Zheng
标识
DOI:10.1002/adhm.202203079
摘要
Due to the limited therapeutic efficacy of current treatments, articular cartilage regeneration is still challenging work. Scaffold-based tissue engineering provides a promising strategy for cartilage regeneration, but most scaffolds are limited by poor mechanical properties or unfavorable biocompatibility. Here, a novel photocrosslinkable, injectable locust bean gum (LBG)-methacrylate (MA) hydrogel is reported as a biomimetic extracellular matrix (ECM) for cartilage repair with minimal invasive operation. LBG-MA hydrogels show controllable degradation rate and improve mechanical properties and excellent biocompatibility. More importantly, LBG-MA hydrogel significantly induces bone mesenchymal stem cells to chondrogenic differentiation in vitro, as evidenced by high accumulation of cartilage-specific ECM components glycosaminoglycan and upregulated expression of key chondrogenic genes (collagen type II, aggrecan, and sex determining region Y-box9). Besides, the hydrogel is injectable, which can be in situ crosslinked via UV irradiation. Further, the photocrosslinkable hydrogels accelerate cartilage healing in vivo after 8 weeks of therapy. A strategy is provided here for photocrosslinkable, injectable, biodegradable scaffold fabrication based on native polysaccharide polymer for minimal invasive cartilage repair.
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