Full-thickness osteochondral defect repair using a biodegradable bilayered scaffold of porous zinc and chondroitin sulfate hydrogel

脚手架 透明软骨 材料科学 软骨 再生(生物学) 生物医学工程 硫酸软骨素 软骨发生 纤维软骨 松质骨 化学 糖胺聚糖 解剖 骨关节炎 关节软骨 病理 医学 细胞生物学 生物化学 替代医学 生物
作者
Fan Yang,Y. Li,Lei Wang,Haodong Che,Xin Zhang,Holger Jahr,Lu‐Ning Wang,Dong Jiang,Hongjie Huang,Jianquan Wang
出处
期刊:Bioactive Materials [Elsevier]
卷期号:32: 400-414 被引量:16
标识
DOI:10.1016/j.bioactmat.2023.10.014
摘要

The regeneration of osteochondral tissue necessitates the re-establishment of a gradient owing to the unique characteristics and healing potential of the chondral and osseous phases. As the self-healing capacity of hyaline cartilage is limited, timely mechanical support during neo-cartilage formation is crucial to achieving optimal repair efficacy. In this study, we devised a biodegradable bilayered scaffold, comprising chondroitin sulfate (CS) hydrogel to regenerate chondral tissue and a porous pure zinc (Zn) scaffold for regeneration of the underlying bone as mechanical support for the cartilage layer. The photocured CS hydrogel possessed a compressive strength of 82 kPa, while the porous pure Zn scaffold exhibited a yield strength of 11 MPa and a stiffness of 0.8 GPa. Such mechanical properties are similar to values reported for cancellous bone. In vitro biological experiments demonstrated that the bilayered scaffold displayed favorable cytocompatibility and promoted chondrogenic and osteogenic differentiation of bone marrow stem cells. Upon implantation, the scaffold facilitated the simultaneous regeneration of bone and cartilage tissue in a porcine model, resulting in (i) a smoother cartilage surface, (ii) more hyaline-like cartilage, and (iii) a superior integration into the adjacent host tissue. Our bilayered scaffold exhibits significant potential for clinical application in osteochondral regeneration.
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