透明质酸
骨关节炎
发病机制
糖基化
医学
活性氧
药理学
化学
软骨
铁质
治疗效果
光热治疗
糖尿病
单宁酸
伤口愈合
平衡
螯合疗法
内生
癌症研究
螯合作用
联合疗法
滑液
生物化学
内科学
氧化应激
作者
Rui Chen,Yanguo Su,Guiyuan Zhao,Jiaojiao Tao,Qijie Diao,Guangli Xiang,Tianze Jiang,Han Lu,Xia Zhao
标识
DOI:10.1002/advs.202516389
摘要
Advanced glycation end-products (AGEs) play a crucial role in the pathogenesis of diabetic osteoarthritis (DOA), contributing to cartilage degradation and impaired joint lubrication, which complicate clinical management. However, no therapeutics specifically targeting AGEs are developed for DOA treatment. Here, a composite hydrogel (PTC-MP) incorporated with polydopamine-coated tannic cerium (PTC) nanozymes and magnesium ions (Mg2+), implementing a strategy of "restrain-restore-reinforce (3R)" for AGEs-directed DOA therapy is reported. PTC-MP hydrogel effectively restrains the formation of AGEs by scavenging free radicals, chelating ferrous ions, and competitive hydrophobic site binding. By leveraging mild photothermal therapy (mPTT), PTC-MP hydrogel restores cartilage homeostasis by reducing AGEs-induced reactive oxygen species (ROS) overproduction and mitochondrial dysfunction. Furthermore, Mg2+ in PTC-MP hydrogel reinforces joint repair by stimulating endogenous hyaluronic acid (HA) secretion to improve lubrication. In a rat DOA model, PTC-MP hydrogel with mPTT significantly attenuated DOA progression, reduced osteophytes formation and synovial inflammation, and improved motor function. Therefore, the "3R" strategy targeting AGEs provides a promising therapeutic approach for recalcitrant DOA.
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