Cartilage Injury Repair by Human Umbilical Cord Wharton's Jelly/Hydrogel Combined with Chondrocyte

软骨 沃顿果冻 软骨细胞 脐带 组织工程 细胞外基质 去细胞化 自愈水凝胶 再生(生物学) 医学 关节软骨修复 脚手架 自体软骨细胞移植 生物医学工程 骨关节炎 外科 化学 解剖 病理 关节软骨 细胞生物学 生物 生物化学 替代医学 有机化学
作者
Jianhua Yang,Ying Zhao,Lei Fan,Cao Gao,Xuejian Liu,Xiaoguang Jing,Hongjun Zhang,Yong Huang,Rui Guo,Canling Long,Quanyi Guo,Jia Liu
出处
期刊:Tissue Engineering Part C-methods [Mary Ann Liebert]
卷期号:29 (3): 110-120 被引量:2
标识
DOI:10.1089/ten.tec.2022.0202
摘要

Purpose: There is still a lack of effective treatments for cartilage damage. Cartilage tissue engineering could be a promising treatment method. Human umbilical cord Wharton's jelly (HUCWJ) and hydrogels have received wide attention as a scaffold for tissue engineering. They have not been widely used in clinical studies as their effectiveness and safety are still controversial. This study systematically compared the ability of these two biological tissue engineering materials to carry chondrocytes to repair cartilage injury in vivo. Methods: Chondrocytes were cocultured with HUCWJ or hydrogel for in vivo transplantation. The treatments comprised the HUCWJ+cell, hydrogel+cell, and blank groups. A rabbit model with articular cartilage defect in the knee joint area was established. The defective knee cartilage of different rabbit groups was treated for 3 and 6 months. The efficacy of the various treatments on articular cartilage injury was evaluated by immunohistochemistry and biochemical indices. Results: We found that the HUCWJ+cell and hydrogel+cell groups promoted cartilage repair compared with the blank group, which had no repair effect. The treatment efficacy of each group at 6 months was significantly better than that at 3 months. HUCWJ showed accelerated cartilage repair ability than the hydrogel. Conclusion: This study showed that HUCWJ is useful in cartilage tissue engineering to enhance the efficacy of chondrocyte-based cartilage repair, providing new insights for regenerative medicine. Human umbilical cord Wharton's jelly (HUCWJ) and hydrogel are the suitable extracellular matrix for cartilage tissue engineering. This study assessed the capacity of HUCWJ- and hydrogel-loaded chondrocytes to repair cartilage injury in vivo. The data demonstrate that both HUCWJ and hydrogel effectively facilitated cartilage repair, and the repair effects of HUCWJ were significantly better compared with hydrogel, therefore providing a potential candidate for clinical practice of cartilage regeneration therapy.
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