壳聚糖
微球
化学
骨愈合
复合数
运行x2
再生(生物学)
白藜芦醇
材料科学
生物医学工程
体外
细胞生物学
成骨细胞
医学
解剖
化学工程
生物化学
复合材料
生物
工程类
作者
Limei Li,Mali Yu,Yao Li,Qing Li,Hongcai Yang,Meng Zheng,Yi Han,Di Lü,Sheng Lu,Li Gui
标识
DOI:10.1016/j.bioactmat.2020.10.018
摘要
release confirmed the feasibility of n-HA/Res/CS microspheres for controlled Res release. Notably, microspheres had anti-inflammatory activity evidenced by the decreased expression of pro-inflammatory cytokines TNF-α, IL-1β and iNOS in RAW264.7 cells in a dose dependent manner. Further, enhanced adhesion and proliferation of BMSCs seeded onto microspheres demonstrated that composite microspheres were conducive to cell growth. The ability to enhance osteo-differentiation was supported by up-regulation of Runx2, ALP, Col-1 and OCN, and substantial mineralization in osteogenic medium. When implanted into bone defects in the osteoporotic rat femoral condyles, enhanced entochondrostosis and bone regeneration suggested that the n-HA/Res/CS composite microspheres were more favorable for impaired fracture healing. The results indicated that optimized n-HA/Res/CS composite microspheres could serve as promising multifunctional fillers for osteoporotic bone defect/fracture treatment.
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