基于网络药理学与分子对接技术探讨木栓酮治疗骨质疏松的作用机制
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R589

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国家自然科学基金项目(82101640);医学影像四川省重点实验室开发课题(MIKL202313);新疆维吾尔自治区自然科学基金(2022D01F49);天津医科大学综合医学学科提升计划科研专项基金(2024XKZXY29)


Exploration of the mechanisms of friedelin in the treatment of osteoporosis based on network pharmacology and molecular docking
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    目的:本研究探讨木栓酮(Friedelin)对成骨分化和骨代谢的调节作用,及其对骨质疏松症中的治疗效果。方法: 采用 CCK-8、ALP染色、ARS染 色、RT-qPCR 检 测 木 栓 酮 对 hMSCs细 胞 活 性 及 成 骨 分 化 的 影 响;通 过 网 络 药 理 学、GO/ KEGG富集分析、分子对接、荧光素酶报告基因检测探究其分子机制;利用 C57BL/6小鼠及 OVX 小鼠模型评估其体内安全 性及疗效。结果:木栓酮对hMSCs无明显细胞毒性,促成骨分化效能优于利塞磷酸钠(P<0.05);筛选出52个木栓酮与骨 质疏松共同靶点,关键靶点为INS、EGFR、EGR1、PTGS2、CYP3A4、CYP19A1,其中 CYP19A1与木栓酮结合最稳定;木栓酮 可激活 RUNX2等转录因子,靶点富集于催乳素、FoxO 等相关通路;其灌胃给药安全性良好,可改善 OVX 小鼠骨微结构,疗 效优于利塞磷酸钠(P<0.05)。结论:木栓酮安全性良好、抗骨质疏松效能显著,以 CYP19A1为核心靶点,通过多靶点、多通 路调控成骨分化及骨代谢平衡,有望成为新型抗骨质疏松候选药物。

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    Objective: To investigate the therapeutic effects of friedelin in the treatment of osteoporosis, with a focus on its regulatory role in osteogenic differentiation and bone metabolism. Methods: CCK-8, ALP staining, ARS staining, and RT-qPCR were used to detect the effect of Friedelin on the cell activity and osteogenic differentiation of human mesenchymal stem cells (hMSCs). Network pharmacology, GO/KEGG enrichment analysis, molecular docking, and luciferase reporter assay were employed to explore its molecular mechanism. C57BL/6 mice and ovariectomized (OVX) mouse models were used to evaluate its in vivo biosafety and therapeutic effect. Results: Friedelin had no obvious cytotoxicity on hMSCs, and its efficacy in promoting osteogenic differentiation was superior to that of risedronate sodium (P<0.05). 52 common targets of Friedelin and osteoporosis were screened out, with 6 key targets including INS, EGFR, EGR1, PTGS2, CYP3A4, and CYP19A1, among which CYP19A1 had the most stable binding with Friedelin. Friedelin could activate transcription factors such as RUNX2, and its targets were enriched in prolactin, FoxO and other related pathways. Its intragastric administration had good safety and could improve the bone microstructure of OVX mice, with a therapeutic effect superior to that of risedronate sodium (P<0.05). Conclusion: Friedelin has good in vivo biosafety and significant anti-osteoporotic efficacy. With CYP19A1 as the core target, it regulates osteogenic differentiation and bone metabolism balance through multiple targets and pathways, and is expected to become a new candidate drug for osteoporosis.

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周雪雯;唐生安;张静;刘麟凤;陈伟;俞小琴;焦丽;梁骑.基于网络药理学与分子对接技术探讨木栓酮治疗骨质疏松的作用机制[J].川北医学院学报,2026,41(8):897-907.

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  • 在线发布日期: 2026-07-22
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