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Seamless and early gap healing of osteochondral defects by autologous mosaicplasty combined with bioactive supramolecular nanofiber-enabled gelatin methacryloyl (BSN-GelMA) hydrogel

纳米纤维 再生(生物学) 软骨 生物医学工程 材料科学 间充质干细胞 明胶 组织工程 关节软骨修复 桥(图论) 透明软骨 伤口愈合 软骨发生 透明质酸 骨髓 自愈水凝胶 软骨细胞 组织学 化学
作者
Hongwei Wu,Yuna Shang,Wei Sun,Xinyi Ouyang,Wenyan Zhou,Jieji Lu,Yang Shuhui,Wei Wei,Xudong Yao,Xiaozhao Wang,Xianzhu Zhang,Yishan Chen,Qiulin He,Zhimou Yang,Hongwei Ouyang
出处
期刊:Bioactive Materials [Elsevier BV]
卷期号:19: 88-102 被引量:45
标识
DOI:10.1016/j.bioactmat.2022.03.038
摘要

Autologous mosaicplasty is a common approach used to treat osteochondral defects in clinical practice. Gap integration between host and transplanted plugs requires bone tissue reservation and hyaline cartilage regeneration without uneven surface, graft necrosis and sclerosis. However, poor gap integration is a serious concern, which eventually leads to deterioration of joint function. To deal with such complications, this study has developed a strategy to effectively enhance integration of the gap region following mosaicplasty by applying injectable bioactive supramolecular nanofiber-enabled gelatin methacryloyl (GelMA) hydrogel (BSN-GelMA). A rabbit osteochondral defect model demonstrated that BSN-GelMA achieved seamless osteochondral healing in the gap region between plugs of osteochondral defects following mosaicplasty, as early as six weeks. Moreover, the International Cartilage Repair Society score, histology score, glycosaminoglycan content, subchondral bone volume, and collagen II expression were observed to be the highest in the gap region of BSN-GelMA treated group. This improved outcome was due to bio-interactive materials, which acted as tissue fillers to bridge the gap, prevent cartilage degeneration, and promote graft survival and migration of bone marrow mesenchymal stem cells by releasing bioactive supramolecular nanofibers from the GelMA hydrogel. This study provides a powerful and applicable approach to improve gap integration after autologous mosaicplasty. It is also a promising off-the-shelf bioactive material for cell-free in situ tissue regeneration.
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