骨质疏松症
破骨细胞
成骨细胞
去卵巢大鼠
脂质过氧化
间充质干细胞
化学
癌症研究
细胞生物学
抗氧化剂
骨吸收
医学
氧化应激
骨重建
药理学
内科学
内分泌学
治疗效果
作者
Jingcheng Cao,Qi Dong,Kezheng Du,Mo Zhang,Wei Chen,Zhiyong Hou
标识
DOI:10.1002/adhm.202505203
摘要
ABSTRACT Ferroptosis plays a critical role in postmenopausal osteoporosis (PMOP) pathogenesis, but targeted therapies remain limited. In this study, we have developed bone‐targeting selenium‐doped carbon dots conjugated with alendronate (ASCDs) with the dual functionality of suppressing ferroptosis and promoting osteogenesis. In vitro, ASCDs mitigated erastin‐induced ferroptosis in osteoblasts and bone‐marrow mesenchymal stem cells by activating the system Xc − ‐GSH‐GPX4 antioxidant pathway, which reduced lipid peroxidation and restored mitochondrial function. Furthermore, ASCDs induced ALP activation and mineralized nodule formation under ferroptosis conditions, and enhanced expression of osteogenic markers, including RUNX2, OPN, and OSX. In vivo, ASCDs demonstrated superior efficacy compared to non‐targeted selenium‐doped carbon dots (SCDs), significantly reversing trabecular bone loss in ovariectomized mice, reducing osteoclast activity, and suppressing ferroptosis in bone tissue. Proteomics and biochemical analyses further validated that ASCDs exert therapeutic effects by rescuing GPX4 expression and redox homeostasis. Such dual‐functional carbon dots present a targeted strategy to treat PMOP by concurrently inhibiting ferroptosis and restoring bone formation.
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