A Photoannealed Granular Hydrogel Facilitating Hyaline Cartilage Regeneration via Improving Chondrogenic Phenotype

软骨发生 软骨 软骨细胞 透明软骨 脚手架 材料科学 再生(生物学) 组织工程 生物医学工程 细胞生物学 透明质酸 自愈水凝胶 解剖 骨关节炎 生物 病理 医学 关节软骨 高分子化学 替代医学
作者
Yu Zhu,Yi Sun,Biyu Rui,Junqing Lin,Junjie Shen,Huimin Xiao,Xuanzhe Liu,Yimin Chai,Jia Xu,Yunlong Yang
出处
期刊:ACS Applied Materials & Interfaces [American Chemical Society]
卷期号:14 (36): 40674-40687 被引量:25
标识
DOI:10.1021/acsami.2c11956
摘要

Hydrogel-based chondrocyte implantation presents a promising tissue engineering strategy for cartilage repair. However, the widely used elastic hydrogels usually restrict cell volume expansion and induce the dedifferentiation of encapsulated chondrocytes. To address this limitation, a photoannealed granular hydrogel (GH) composed of hyaluronic acid, polyethylene glycol, and gelatin was formulated for cartilage regeneration in this study. The unannealed GH prepared by Diels-Alder cross-linked microgels could be mixed with chondrocytes and delivered to cartilage defects by injection, after which light was introduced to anneal the scaffold, leading to the formation of a stable and microporous chondrocyte deploying scaffold. The in vitro studies showed that GH could promote the volume expansion and morphology recovery of chondrocytes and significantly improve their chondrogenic phenotype compared to the nongranular hydrogel (nGH) with similar compositions. Further in vivo studies of subcutaneous culture and the rat full-thickness cartilage defect model proved that chondrocyte loaded GH could significantly stimulate hyaline cartilage matrix deposition and connection, therefore facilitating hyaline-like cartilage regeneration. Finally, the mechanistic study revealed that GH might improve chondrogenic phenotype via activating the AMP-activated protein kinase/glycolysis axis. This study proves the great feasibility of GHs as in situ chondrocyte deploying scaffolds for cartilage regeneration and brings new insights in designing hydrogel scaffold for cartilage tissue engineering.

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