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Enzyme kinetic and molecular docking studies for the inhibitions of miltirone on major human cytochrome P450 isozymes
Zhou X.1; Wang Y.1; Hu T.1; Or P.M.Y.1; Wong J.2; Kwan Y.W.1; Wan D.C.C.1; Hoi P.M.3; Lai P.B.S.4; Yeung J.H.K.1
2013-02-15
Source PublicationPhytomedicine
ISSN0944-7113
Volume20Issue:3-4Pages:367-374
Abstract

Previous studies have shown that major tanshinones isolated from Danshen (Salvia miltiorrhiza) inhibited human and rat CYP450 enzymes-mediated metabolism of model probe substrates, with potential in causing herb-drug interactions. Miltirone, another abietane type-diterpene quinone isolated from Danshen, has been reported for its anti-oxidative, anxiolytic and anti-cancer effects. The aim of this study was to study the effect of miltirone on the metabolism of model probe substrates of CYP1A2, 2C9, 2D6 and 3A4 in pooled human liver microsomes. Miltirone showed moderate inhibition on CYP1A2 (IC50 = 1.73 μM) and CYP2C9 (IC50 = 8.61 μM), and weak inhibition on CYP2D6 (IC50 = 30.20 μM) and CYP3A4 (IC50 = 33.88 μM). Enzyme kinetic studies showed that miltirone competitively inhibited CYP2C9 (Ki = 1.48 μM), and displayed mixed type inhibitions on CYP1A2, CYP2D6 and CYP3A4 with Ki values of 3.17 μM, 24.25 μM and 35.09 μM, respectively. Molecular docking study further confirmed the ligand-binding conformations of miltirone in the active sites of these human CYP450 isoforms, and provided some information on structure-activity relationships for the CYPs inhibition by tanshinones. Taken together, CYPs inhibitions of miltirone were weaker than dihydrotanshinone, but stronger than cryptotanshinone, tanshinone I and tanshinone IIA. 

KeywordCytochrome P450 Miltirone Molecular Docking Probe Substrates Salvia Miltiorrhiza
DOI10.1016/j.phymed.2012.09.021
URLView the original
Indexed BySCIE
Language英語English
WOS Research AreaIntegrative & Complementary Medicine ; Plant Sciences ; Pharmacology & Pharmacy
WOS SubjectPlant Sciences ; Chemistry, Medicinal ; Integrative & Complementary Medicine ; Pharmacology & Pharmacy
WOS IDWOS:000317320000025
PublisherELSEVIER GMBHHACKERBRUCKE 6, 80335 MUNICH, GERMANY
The Source to ArticleScopus
Scopus ID2-s2.0-84873724973
Fulltext Access
Citation statistics
Document TypeJournal article
CollectionInstitute of Chinese Medical Sciences
Corresponding AuthorZhou X.; Kwan Y.W.
Affiliation1.School of Biomedical Sciences, Faculty of Medicine, The Chinese University of Hong Kong, Shatin, N.T., Hong Kong, China
2.Department of Surgery, Prince of Wales Hospital, Shatin, N.T., Hong Kong, China
3.Institute of Chinese Medical Sciences, University of Macau, Macao, China
4.Department of Surgery, Faculty of Medicine, The Chinese University of Hong Kong, Shatin, N.T., Hong Kong, China
Recommended Citation
GB/T 7714
Zhou X.,Wang Y.,Hu T.,et al. Enzyme kinetic and molecular docking studies for the inhibitions of miltirone on major human cytochrome P450 isozymes[J]. Phytomedicine, 2013, 20(3-4), 367-374.
APA Zhou X.., Wang Y.., Hu T.., Or P.M.Y.., Wong J.., Kwan Y.W.., Wan D.C.C.., Hoi P.M.., Lai P.B.S.., & Yeung J.H.K. (2013). Enzyme kinetic and molecular docking studies for the inhibitions of miltirone on major human cytochrome P450 isozymes. Phytomedicine, 20(3-4), 367-374.
MLA Zhou X.,et al."Enzyme kinetic and molecular docking studies for the inhibitions of miltirone on major human cytochrome P450 isozymes".Phytomedicine 20.3-4(2013):367-374.
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