破骨细胞
化学
炎症
下调和上调
骨重建
唑来膦酸
细胞生物学
骨愈合
成骨细胞
调节器
脚手架
血管生成
生物化学
巨噬细胞
糖尿病
碳水化合物代谢
双膦酸盐
骨吸收
葡萄糖氧化酶
药理学
转录因子
再生(生物学)
骨密度保护剂
氧化应激
癌症研究
小RNA
葡萄糖摄取
信号转导
活性氧
骨细胞
骨组织
作者
Xiaoxue Fu,Zhenyu Luo,Yuqi Guo,Weikun Meng,Shue Jin,Junyu Chen,Yong-Rui Cai,Zeyu Luo,Huang Chao,Anjing Chen,Siqin Guo,Maojia Chen,zongke Zhou,Weinan Zeng
标识
DOI:10.1038/s41467-025-65165-5
摘要
Diabetes mellitus (DM) bone defects face impaired healing due to hyperglycemia, chronic inflammation, and dysregulated bone remodeling, yet existing therapies lack comprehensive strategies targeting these interconnected issues. Herein, a glucose/ROS-responsive multifunctional hydrogel (AAT-ZCG) is designed, integrating tannic acid (TA)-mediated dynamic borate ester bonds and a cascade nanozyme comprising cerium-zoledronic acid-glucose oxidase (ZCG). The hydrogel enables stimuli-responsive release of TA and ZCG within DM microenvironments, depleting glucose via glucose oxidase-mediated catalysis and mitigating inflammation through cerium-mediated ROS scavenging. Moreover, ZCG modulates macrophage polarization, stimulates angiogenesis and enhances osteogenesis. Acidic byproducts trigger ZCG degradation, releasing zoledronic acid to inhibit excessive osteoclast activation. Transcriptomic analysis reveals upregulated forkhead box O1 transcription factor, a key regulator of bone metabolism and inflammation. This platform concurrently addresses pivotal mediators in DM bone defects, overcoming limitations of single-target approaches. By consolidating multifunctional responses, AAT-ZCG provides a concise yet effective strategy for DM bone defect regeneration.
科研通智能强力驱动
Strongly Powered by AbleSci AI