纤维软骨
脚手架
生物医学工程
材料科学
去细胞化
间充质干细胞
肌腱
骨愈合
细胞外基质
组织工程
骨髓
医学
解剖
细胞生物学
病理
生物
骨关节炎
替代医学
关节软骨
作者
Yifu Tang,Can Chen,Fei Liu,Shanshan Xie,Jin Qu,Muzhi Li,Zan Li,Xiaoning Li,Qiang Shi,Shengcan Li,Xing Li,Jianzhong Hu,Hongbin Lü
出处
期刊:Biomaterials
[Elsevier]
日期:2020-05-01
卷期号:241: 119837-119837
被引量:53
标识
DOI:10.1016/j.biomaterials.2020.119837
摘要
Tendon attaches to bone across a robust fibrocartilaginous tissue termed the bone-tendon interface (BTI), commonly injured in the field of sports medicine and orthopedics with poor prognosis. So far, there is still a lack of effective clinical interventions to achieve functional healing post BTI injury. However, tissue-engineering may be a promising treatment strategy. In this study, a gradient book-type triphasic (bone-fibrocartilage-tendon) scaffold is fabricated based on the heterogeneous structure and ingredient of BTI. After decellularization, the scaffold exhibits no residual cells, while the characteristic extracellular matrix of the original bone, fibrocartilage and tendon is well preserved. Meanwhile, the bone, fibrocartilage and tendon regions of the acellular scaffold are superior in osteogenic, chondrogenic and tenogenic inducibility, respectively. Furthermore, autologous bone marrow mesenchymal stem cell (BMSC) sheets (CS) combined with the acellular scaffolds is transplanted into the lesion site of a rabbit BTI injury model to investigate the therapeutic effects. Our results show that the CS modified scaffold not only successfully achieves triple biomimetic of BTI in structure, ingredient and cell distribution, but also effectively accelerates bone-tendon (B-T) healing. In general, this work demonstrates book-type acellular triphasic scaffold combined with autologous BMSCs sheets is a promising graft for repairing BTI injury.
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