生物相容性
骨关节炎
活性氧
纳米医学
体内
炎症
调解人
氧化应激
纳米颗粒
软骨
化学
药理学
材料科学
生物医学工程
医学
纳米技术
病理
生物化学
免疫学
解剖
生物
内科学
生物技术
冶金
替代医学
作者
Lei Chen,Shashi Ranjan Tiwari,Yingqi Zhang,Jincheng Zhang,Yeqing Sun
标识
DOI:10.1021/acsbiomaterials.1c00005
摘要
Osteoarthritis (OA) is a progressive degenerative joint disease whose molecular mechanism has not been revealed clearly, and there is still no effective approach to cure OA completely. Recently, reactive oxygen species (ROS) are exposed as an important mediator of OA's inflammatory response, and it has been regarded as a therapeutic target for OA treatment. MnO2 nanoparticles possess good biocompatibility and can act as an artificial nanoenzyme to scavenge ROS in various diseases effectively. In this study, the modified Stöber method was applied to synthesize hollow MnO2 (H-MnO2) and H-MnO2 was modified with NH2-PEG-NH2, which possesses excellent biological stability and biocompatibility. It induced a change in the articular cartilage structure changes in vivo, with the knee tissue staining and micro-CT scanning of the whole knee suggesting that H-MnO2 nanoparticles could effectively remove ROS and significantly relieve the inflammatory response of OA without obvious side effects. This study reveals the therapeutic effects of MnO2-based nanomedicine toward OA, which provides potential alternative therapeutic options for patients with inflammation tissue.
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