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茵陈蒿提取物的抗破骨细胞活性取决于绿原酸、金丝桃苷和滨蒿内酯对破骨细胞分化及骨吸收相关酸化作用的减弱。

Anti-Osteoclastic Activity of Artemisia capillaris Thunb. Extract Depends upon Attenuation of Osteoclast Differentiation and Bone Resorption-Associated Acidification Due to Chlorogenic Acid, Hyperoside, and Scoparone.

作者信息

Lee Sang-Hyun, Lee Jung-Yun, Kwon Young-In, Jang Hae-Dong

机构信息

Department of Food and Nutrition, Hannam University, Daejeon 34430, Korea.

出版信息

Int J Mol Sci. 2017 Feb 4;18(2):322. doi: 10.3390/ijms18020322.

Abstract

The present study attempts to elucidate the anti-osteoporotic activity of Thunb. in the form of anti-osteoclastic effect and responsible bioactive compounds. The contents of chlorogenic acid, caffeic acid, hyperoside, isoquercitrin, isochlorogenic acid A, and scoparone in hydroethanolic extract (ACHE) were 38.53, 0.52, 4.07, 3.03, 13.90, and 6.59 mg/g, respectively. ACHE diminished osteoclast differentiation and bone resorption due to chlorogenic acid, hyperoside, and scoparone. In addition, ACHE attenuated acidification as well as reducing tumor necrosis factor receptor-associated factor 6 (TRAF6) expression and its association with vacuolar H⁺-adenosine triphosphatase (V-ATPase). Furthermore, chlorogenic acid, hyperoside, and scoparone from abrogated the association of V-ATPase with TRAF6, suggesting that the blockage of bone resorption by was partially mediated by reducing acidification through down-regulating interaction of V-ATPase with TRAF6 due to scoparone as well as chlorogenic acid and hyperoside. These results imply that the anti-osteoclastic effect of through down-regulating osteoclast differentiation and bone resorption may contribute to its anti-osteoporotic effect.

摘要

本研究旨在以抗破骨细胞作用及相关生物活性化合物的形式阐明[植物名称未给出]的抗骨质疏松活性。水乙醇提取物(ACHE)中绿原酸、咖啡酸、金丝桃苷、异槲皮苷、异绿原酸A和滨蒿内酯的含量分别为38.53、0.52、4.07、3.03、13.90和6.59 mg/g。ACHE可减少破骨细胞分化和骨吸收,这归因于绿原酸、金丝桃苷和滨蒿内酯。此外,ACHE可减弱酸化作用,并降低肿瘤坏死因子受体相关因子6(TRAF6)的表达及其与液泡H⁺ - 腺苷三磷酸酶(V - ATPase)的关联。此外,[植物名称未给出]中的绿原酸、金丝桃苷和滨蒿内酯消除了V - ATPase与TRAF6的关联,这表明[植物名称未给出]对骨吸收的阻断部分是通过滨蒿内酯以及绿原酸和金丝桃苷下调V - ATPase与TRAF6的相互作用来减少酸化作用介导的。这些结果表明,[植物名称未给出]通过下调破骨细胞分化和骨吸收产生的抗破骨细胞作用可能有助于其抗骨质疏松作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fb30/5343858/502defc073b8/ijms-18-00322-g001.jpg

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