植物黄酮抗骨质疏松作用的研究进展
Research progress on the anti-osteoporosis effect of plant flavones
  
DOI:10.3969/j.issn.1006-7108.2021.10.024
中文关键词:  植物黄酮  骨质疏松症  网络药理学
英文关键词:flavonoids  osteoporosis  network pharmacology
基金项目:恩泽医疗中心(集团)重大课题(19EZZDB4)
作者单位
屈杭帅 郑敬民* 浙江省台州医院浙江 台州 317000 
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中文摘要:
      骨质疏松症是一种以骨量减少为特征的骨病,导致骨折的风险增加,给社会及患者带来极大的经济和生活负担。鉴于目前用于临床治疗相关药物在抗骨质疏松方面尚有诸多不良反应,寻找潜在的抗骨质疏松药物对于以后开发新的靶向药物具有迫切的现实意义。长期以来研究人员通过体外细胞实验、动物研究以及临床实验报告证实植物黄酮具有抗骨质疏松作用,其作用机制与植物黄酮促进骨髓间充质干细胞(BMSCs)的成骨分化以及骨形成,抑制破骨细胞的破骨分化和骨吸收活性有关。近年来,研究人员运用网络药理学筛选出植物黄酮中有效成分,得到成分-疾病-靶标调控网络,为进一步将基础研究成果转化为临床应用提供有效的途径。本文通过查阅国内外文献,对植物黄酮抗骨质疏松作用及机制研究进行综述,旨在为进一步挖掘植物黄酮中高活性的成分以及相关分子机制研究提供研究思路和理论依据。
英文摘要:
      Osteoporosis is a bone disease characterized by a decrease in bone mass, which leads to an increased risk of fracture and brings great economic and life burden to the society and patients.In view of the many side effects of anti-osteoporosis drugs currently used in clinical treatment, looking for potential anti-osteoporosis compounds has urgent practical significance for the development of new targeted drugs in the future.For a long time, researchers have confirmed the anti-osteoporosis effect of plant flavones through in vitro cell experiments, animal studies and clinical experiments. The mechanism of action is related to the promotion of osteogenic differentiation and bone formation of BMSCs and the inhibition of osteoclast differentiation and bone resorptive activity.In recent years, researchers have used network pharmacology to screen out the effective components in plant flavones that are closely related to the target, so as to obtain the component-disease-target regulation network, which provides an effective way to further transform the basic research results into clinical applications.This paper reviewed the studies on the anti-osteoporosis effect and mechanism of plant flavones by referring to the literature , aimed to provide research ideas and theoretical basis for further exploring the highly active components and related molecular mechanisms of plant flavones.
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