Metal-Organic Framework Functionalized Bioceramic Scaffolds with Antioxidative Activity for Enhanced Osteochondral Regeneration.
Chaoqin ShuChen QinLei ChenYufeng WangZhe ShiJiangming YuJimin HuangChaoqian ZhaoZhiguang HuanChengtie WuMin ZhuYufang ZhuPublished in: Advanced science (Weinheim, Baden-Wurttemberg, Germany) (2023)
Osteoarthritis (OA) is a degenerative disease that often causes cartilage lesions and even osteochondral damage. Osteochondral defects induced by OA are accompanied by an inflammatory arthrosis microenvironment with overproduced reactive oxygen species (ROS), resulting in the exacerbation of defects and difficulty regenerating osteochondral tissues. Therefore, it is urgently needed to develop osteochondral scaffolds that can not only promote the integrated regeneration of cartilage and subchondral bone, but also possess ROS-scavenging ability to protect tissues from oxidative stress. Herein, zinc-cobalt bimetallic organic framework (Zn/Co-MOF) functionalized bioceramic scaffolds are designed for repairing osteochondral defects under OA environment. By functionalizing Zn/Co-MOF on the 3D-printed beta-tricalcium phosphate (β-TCP) scaffolds, the Zn/Co-MOF functionalized β-TCP (MOF-TCP) scaffolds with broad-spectrum ROS-scavenging ability are successfully developed. Benefiting from its catalytic active sites and degradation products, Zn/Co-MOF endows the scaffolds with excellent antioxidative and anti-inflammatory properties to protect cells from ROS invasion, as well as dual-bioactivities of simultaneously inducing osteogenic and chondrogenic differentiation in vitro. Furthermore, in vivo results confirm that MOF-TCP scaffolds accelerate the integrated regeneration of cartilage and subchondral bone in severe osteochondral defects. This study offers a promising strategy for treating defects induced by OA as well as other inflammatory diseases.
Keyphrases
- metal organic framework
- tissue engineering
- reactive oxygen species
- oxidative stress
- stem cells
- platelet rich plasma
- dna damage
- anti inflammatory
- cell death
- knee osteoarthritis
- heavy metals
- mesenchymal stem cells
- gene expression
- quantum dots
- bone mineral density
- rheumatoid arthritis
- extracellular matrix
- bone marrow
- gold nanoparticles
- ischemia reperfusion injury
- bone loss
- wound healing
- high resolution
- induced apoptosis
- drug induced
- heat stress
- heat shock protein