Authors
Hongwei Shao, Zehua Lei, Wenjie Yang, Jiaqi Zhou, Qian Li, Shunxiang Xu, Wenjie Shi, Ziyang Xu, Guowen Luo, Xin Qian, Zhiyang Zhou, Hongyi Liao, Xulin Jiang, Yu Zhang, Xiongfa Ji
Published in
Bioactive materials. Volume 66. Pages 1167-1185. Epub Jul 29, 2026.
Abstract
Osteoarthritis (OA) progression is fueled by a self-perpetuating cycle of synovitis and cartilage degradation. Current clinical therapies exhibit suboptimal efficacy, primarily due to the lack of strategies that target the multifactorial pathogenesis of OA. Herein, we developed an injectable thermosensitive hydroxypropyl chitin hydrogel (HPCH) loaded with an optimized concentration of dimethyloxalylglycine (DMOG), designated as HD25, to disrupt this pathological cycle and achieve multi-modal OA therapy. HD25 reprograms macrophages toward an anti-inflammatory M2 phenotype via the JAK-STAT pathway, thereby attenuating synovitis and inflammation-driven matrix degradation. In parallel, HD25 provides favorable lubrication to ameliorate mechanical stress-induced wear and tear, promotes mesenchymal stem cell recruitment and chondrogenesis, and directly protects cartilage by suppressing chondrocyte hypertrophy, apoptosis, and extracellular matrix catabolism. In surgery-induced OA mice, HD25 treatment effectively preserved cartilage integrity, attenuated synovitis, and restored subchondral bone remodeling. At 10 weeks, HD25 reduced the proportion of MMP13-positive chondrocytes from approximately 35% to 13%. Moreover, it decreased the proportion of pro-inflammatory F4/80+iNOS+ synovial macrophages from approximately 60% to 20%, while increasing anti-inflammatory F4/80+CD206+ macrophages from approximately 15% to 30%. Crucially, in situ macrophage-depletion experiments confirmed that the therapeutic efficacy of HD25 largely depends on macrophage reprogramming, underscoring the superiority of immunomodulation over cell clearance. This multifunctional hydrogel platform orchestrates chondroprotection, immunomodulation, and tissue remodeling to break the OA vicious cycle, presenting a promising disease-modifying strategy for OA management.
PMID:
42571192
Bibliographic data and abstract were imported from PubMed on 09 Aug 2026.
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