去卵巢大鼠
破骨细胞
兰克尔
骨吸收
骨重建
体内
化学
免疫印迹
骨溶解
骨质疏松症
癌症研究
体外
细胞生物学
医学
内科学
生物
受体
生物化学
激活剂(遗传学)
外科
生物技术
基因
激素
作者
Xixi Lin,Guixin Yuan,Bin Yang,Chun‐Lan Xie,Zhigao Zhou,Ying Liu,Zhijuan Liu,Zuoxing Wu,Yoshie Akimoto,Na Li,Ren Xu,Fangming Song
出处
期刊:Phytomedicine
[Elsevier]
日期:2024-03-20
卷期号:129: 155559-155559
被引量:1
标识
DOI:10.1016/j.phymed.2024.155559
摘要
Osteoclast plays an important role in maintaining the balance between bone anabolism and bone catabolism. The abnormality of osteoclast is closely related to osteolytic bone diseases such as osteoporosis, rheumatoid arthritis and tumor bone metastasis. We aim to search for natural compound that may suppress osteoclast formation and function. In this study, we assessed the impact of Dauricine (Dau) on the formation and function of osteoclasts in vitro, as well as its potential in preventing bone loss in an ovariectomy mouse model in vivo. Multiple in vitro experiments were carried out, including osteoclastogenesis, podosomal belt formation, bone resorption assay, RNA-sequencing, real-time quantitative PCR, ROS level detection, surface plasmon resonance assay, luciferase assay, and western blot. To verify the effect in vivo, an ovariectomized mouse model (OVX model) was constructed, and bone parameters were measured using micro-CT and histology. Furthermore, metabolomics analysis was performed on blood serum samples from the OVX model. In vitro experiments demonstrated that Dau inhibits RANKL-induced osteoclastogenesis, podosomal belt formation, and bone resorption function. RNA-sequencing results revealed that Dau significantly suppresses genes related to osteoclasts. Functional enrichment analysis indicated that Dau's inhibition of osteoclasts may be associated with NF-κB signaling pathways and reactive oxygen metabolism pathways. Molecular docking, surface plasmon resonance assay, and western blot analysis further confirmed that Dau inhibits RANKL-induced osteoclastogenesis by modulating the ROS/NF-κB/NFATc1 pathway. Moreover, administration of Dau to OVX-induced mice validated its efficacy in treating bone loss disease. Dau prevents OVX-induced bone loss by inhibiting osteoclast activity and bone resorption, potentially offering a new approach for preventing and treating metabolic bone diseases such as osteoporosis. This study provides innovative insights into the inhibitory effects of Dau in an in vivo OVX model and elucidates the underlying mechanism.
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