Hypouricaemic action of mangiferin results from metabolite norathyriol via inhibiting xanthine oxidase activity
Niu, Yanfen1; Liu, Jia1; Liu, Hai-Yang2; Gao, Li-Hui1; Feng, Guo-Hua1; Liu, Xu1; Li, Ling1
2016-09-01
发表期刊PHARMACEUTICAL BIOLOGY
卷号54期号:9页码:1680-1686
摘要Context Mangiferin has been reported to possess a potential hypouricaemic effect. However, the pharmacokinetic studies in rats showed that its oral bioavailability was only 1.2%, suggesting that mangiferin metabolites might exert the action.Objective The hypouricaemic effect and the xanthine oxidase inhibition of mangiferin and norathyriol, a mangiferin metabolite, were investigated. Inhibition of norathyriol analogues (compounds 3-9) toward xanthine oxidase was also evaluated.Materials and methods For a dose-dependent study, mangiferin (1.5-6.0mg/kg) and norathyriol (0.92-3.7mg/kg) were administered intragastrically to mice twice daily for five times. For a time-course study, mice received mangiferin and norathyriol both at a single dose of 7.1mol/kg. In vitro, inhibition of test compounds (2.4-2.4mM) against xanthine oxidase activity was evaluated by the spectrophotometrical method. The inhibition type was identified from Lineweaver-Burk plots.Results Norathyriol (0.92, 1.85 and 3.7mg/kg) dose dependently decreased the serum urate levels by 27.0, 33.6 and 37.4%, respectively. The action was more potent than that of mangiferin at the low dose, but was equivalent at the higher doses. Additionally, the hypouricaemic action of them exhibited a time dependence. In vitro, norathyriol markedly inhibited the xanthine oxidase activities, with the IC50 value of 44.6M, but mangiferin did not. The kinetic studies showed that norathyriol was an uncompetitive inhibitor by Lineweaver-Burk plots. The structure-activity relationships exhibited that three hydroxyl groups in norathyriol at the C-1, C-3 and C-6 positions were essential for maintaining xanthine oxidase inhibition.Discussion and conclusion Norathyriol was responsible for the hypouricaemic effect of mangiferin via inhibiting xanthine oxidase activity.
关键词Active Metabolite Hyperuricaemia Structure-activity Relationship Uric Acid Production
DOI10.3109/13880209.2015.1120322
收录类别SCI
语种英语
WOS记录号WOS:000382572400021
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被引频次:23[WOS]   [WOS记录]     [WOS相关记录]
文献类型期刊论文
条目标识符http://ir.kib.ac.cn/handle/151853/33584
专题植物化学与西部植物资源持续利用国家重点实验室
作者单位1.Kunming Med Univ, Biomed Engn Res Ctr, Kunming, Peoples R China
2.Chinese Acad Sci, Kunming Inst Bot, State Key Lab Phytochem & Plant Resources West Ch, Kunming, Peoples R China
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Niu, Yanfen,Liu, Jia,Liu, Hai-Yang,et al. Hypouricaemic action of mangiferin results from metabolite norathyriol via inhibiting xanthine oxidase activity[J]. PHARMACEUTICAL BIOLOGY,2016,54(9):1680-1686.
APA Niu, Yanfen.,Liu, Jia.,Liu, Hai-Yang.,Gao, Li-Hui.,Feng, Guo-Hua.,...&Li, Ling.(2016).Hypouricaemic action of mangiferin results from metabolite norathyriol via inhibiting xanthine oxidase activity.PHARMACEUTICAL BIOLOGY,54(9),1680-1686.
MLA Niu, Yanfen,et al."Hypouricaemic action of mangiferin results from metabolite norathyriol via inhibiting xanthine oxidase activity".PHARMACEUTICAL BIOLOGY 54.9(2016):1680-1686.
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