Ceria nanoparticles guard against glucocorticoid induced bone homeostasis imbalance through the promotion of osteogenesis and inhibition of osteoclastogenesis

破骨细胞 骨吸收 化学 平衡 骨质疏松症 细胞生物学 骨重建 信号转导 成骨细胞 糖皮质激素 吸收 细胞凋亡 活性氧 细胞内 骨愈合 骨细胞 骨免疫学 骨形成 内分泌学 内科学 癌症研究 细胞分化 药理学 细胞生长
作者
Anwei Zhang,Zhiwei Liu,Ling Zou,Lu Yang,Yonghui Wu,Xinxing Wang,Daigui Cao,Jun Liu,Xiaochao Yang,Shengli Zhang
出处
期刊:Materials today bio [Elsevier BV]
卷期号:35: 102308-102308 被引量:2
标识
DOI:10.1016/j.mtbio.2025.102308
摘要

Osteoporosis induced by the long-term administration of glucocorticoids is a common clinical problem. Current anti-osteoporosis therapies mainly focus on bone resorption inhibition or bone formation promotion unilaterally. However, the imbalance between bone formation and resorption often leads to suboptimal therapeutic outcomes. This study confirms the pathways through which dexamethasone (DEX), a typical glucocorticoid, triggers GIO, and explores both the therapeutic potential and underlying mechanisms of ceria nanoparticles (CNPs) in mitigating GIO. Our results demonstrate that DEX-induced bone homeostasis imbalance is the primary mechanism underlying GIO development in mice. Specifically, DEX inhibits pre-osteoblast proliferation and differentiation by inducing apoptosis and ferroptosis. Concurrently, DEX promotes osteoclast precursor proliferation and differentiation, significantly accelerating bone resorption. Administration of CNPs significantly mitigates DEX-induced disruption of bone homeostasis by ameliorating intracellular reactive oxygen species (ROS) accumulation via regulation of the Keap1/Nrf2 signaling pathway. Regarding osteogenesis, CNPs are capable of alleviating DEX-induced pre-osteoblast apoptosis and ferroptosis through the regulation of GPX4/ACSL4 signaling pathway. In terms of bone resorption, CNPs inhibit the RANKL-dependent osteoclast formation pathway. These findings validate the potential application of inorganic nanoparticles in GIO prevention.
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