骨质疏松症
破骨细胞
间充质干细胞
成骨细胞
细胞生物学
医学
信号转导
蔷薇花
骨髓
胞外囊泡
药理学
间质细胞
去卵巢大鼠
癌症研究
基质金属蛋白酶
细胞外
不利影响
生物
动物研究
化学
骨重建
失调
骨免疫学
内科学
斑马鱼
骨矿物
细胞外小泡
细胞外基质
生物信息学
炎症
益生菌
骨吸收
转录组
矿化(土壤科学)
免疫学
内分泌学
脂肪组织
细胞分化
代谢物
钙
作者
Jiaxu Lu,Liu Y,Jiaxian Chen,Sheng Yu,Shukai Yang,Chengshuo Huang,J Chen,Jianhao Li,Hao Lin,Jiaqi Chu,Peng Li
标识
DOI:10.1038/s42003-026-10401-x
摘要
Osteoporosis (OP), characterized by reduced bone mass and microarchitectural deterioration, significantly impairs patient health and quality of life. Conventional therapies are often limited by long-term safety concerns and adverse effects. Recent studies suggest that extracellular vesicles (EVs) play a critical role in bone remodeling by promoting osteoblast differentiation and mineralization while inhibiting osteoclast activity, offering a potential therapeutic avenue for OP. In this study, we observed a significant reduction of Roseburia intestinalis (R.intestinalis), an anaerobic, gram-positive bacterium, in both OP patients and ovariectomized (OVX) model rats by 16S rRNA sequencing. We successfully isolated and characterized R.intestinalis-derived EVs (REVs), which were found to promote the differentiation and mineralization of human bone marrow mesenchymal stromal cells (hBMSCs) in vitro. Mechanistically, REVs were shown to enhance the production of histidylleucine, and the administration of histidylleucine alone was sufficient to promote hBMSCs differentiation and mineralization through the Akt/FOXO1 signaling pathway. Furthermore, both REVs and histidylleucine were effective in reversing gut microbiota dysbiosis and improving bone mineral density in vivo. These findings highlight the therapeutic potential REVs and their metabolite histidylleucine in OP treatment through modulation of the "gut-bone" axis, which providing insights into histidylleucine as a promising therapeutic agent for OP.
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