In Vitro Studies on the Oxidative Metabolism of 20(S)-Ginsenoside Rh2 in Human, Monkey, Dog, Rat, and Mouse Liver Microsomes, and Human Liver S9

被引:29
|
作者
Li, Liang [1 ]
Chen, Xiaoyan [1 ]
Zhou, Jialan [1 ]
Zhong, Dafang [1 ]
机构
[1] Chinese Acad Sci, Shanghai Inst Mat Med, Shanghai 201203, Peoples R China
关键词
DRUG-METABOLISM; GINSENOSIDE RH2; INHIBITION; ACTIVATION; IDENTIFICATION; PATHWAY; VIVO;
D O I
10.1124/dmd.112.046995
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
20(S)-Ginsenoside Rh2 (Rh2)-containing products are widely used in Asia, Europe, and North America. However, extremely limited metabolism information greatly impedes the complete understanding of its clinical safety and effectiveness. The present study aims to systematically investigate the oxidative metabolism of Rh2 using a complementary set of in vitro models. Twenty-five oxidative metabolites were found using liquid chromatography-electrospray ionization ion-trap mass spectrometry. Six metabolites and a metabolic intermediate were synthesized. The metabolites were structurally identified as 26-hydroxy Rh2 (M1-1), (20S,24S)-epoxydammarane-12,25-diol-3-beta-D-glucopyranoside (M1-3), (20S,24R)-epoxydammarane-12,25-diol-3-beta-D-glucopyranoside (M1-5), 26,27-dihydroxy Rh2 (M3-6), (20S,24S)-epoxydammarane-12,25,26-triol-3-beta-D-glucopyranoside (M3-10), (20S,24R)-epoxydammarane-12,25,26-triol-3-beta-D-glucopyranoside (M3-11), and 26-aldehyde Rh2 on the basis of detailed mass spectrometry and nuclear magnetic resonance data analysis. Double-bond epoxidation followed by rearrangement and vinyl-methyl group hydroxylation represent the initial metabolic pathways generating monooxygenated metabolites M1-1 to M1-5. Further sequential metabolites (M2-M5) from the dehydrogenation and/or oxygenation of M1 were also detected. CYP3A4 was the predominant enzyme involved in the oxidative metabolism of Rh2, whereas alcohol dehydrogenase and aldehyde dehydrogenase mainly catalyzed the metabolic conversion of alcohol to the corresponding carboxylic acid. No significant differences were observed in the phase I metabolite profiles of Rh2 among the five species tested. Reactive epoxide metabolite formation in both humans and animals was evident. However, GSH conjugate M6 was detected only in cynomolgus monkey liver microsomal incubations. In conclusion, Rh2 is a good substrate for CYP3A4 and could undergo extensive oxidative metabolism under the catalysis of CYP3A4.
引用
收藏
页码:2041 / 2053
页数:13
相关论文
共 50 条
  • [21] In vitro metabolism of 2-ethylhexyldiphenyl phosphate (EHDPHP) by human liver microsomes
    Ballesteros-Gomez, Ana
    Erratico, Claudio A.
    Van den Eede, Nele
    Ionas, Alin C.
    Leonards, Pim E. G.
    Covaci, Adrian
    TOXICOLOGY LETTERS, 2015, 232 (01) : 203 - 212
  • [22] Comparative Metabolism Study of Five Protoberberine Alkaloids in Liver Microsomes from Rat, Rhesus Monkey, and Human
    Li, Yan
    Zhou, Yanyan
    Si, Nan
    Han, Lingyu
    Ren, Wei
    Xin, Shaokun
    Wang, Hongjie
    Zuo, Ran
    Wei, Xiaolu
    Yang, Jian
    Zhao, Haiyu
    Bian, Baolin
    PLANTA MEDICA, 2017, 83 (16) : 1281 - 1288
  • [23] Metabolism of hyperforin, the active constituent of St. John's wort, in human liver microsomes
    Hokkanen, Juho
    Tolonen, Ari
    Mattila, Sampo
    Turpeinen, Miia
    EUROPEAN JOURNAL OF PHARMACEUTICAL SCIENCES, 2011, 42 (03) : 273 - 284
  • [24] Effect of the metabolic capacity in rat liver S9 on the positive results of in vitro micronucleus tests
    Kishino, Yuki
    Hasegawa, Tomoko
    Arakawa, Shingo
    Shibaya, Yukari
    Yamoto, Takashi
    Mori, Kazuhiko
    JOURNAL OF TOXICOLOGICAL SCIENCES, 2019, 44 (1-3) : 145 - 153
  • [25] Curcumol metabolized by rat liver S9 fraction and orally administered in mouse suppressed the proliferation of colon cancer in vitro and in vivo
    Zhou, Yimeng
    Moon, Ji Hyun
    Kim, Jin Tae
    Qiu, Shuai
    Lee, Seung Beom
    Park, Ho Jin
    Son, Moon Jeong
    Lee, Ga Yeon
    Kwon, Jung Won
    Park, So-Hyeon
    Auh, Joong-Hyuck
    Lee, Hong Jin
    FOOD SCIENCE AND BIOTECHNOLOGY, 2024, 33 (01) : 171 - 180
  • [26] Metabolism of okadaic acid by NADPH-dependent enzymes present in human or rat liver S9 fractions results in different toxic effects
    Kolrep, Franziska
    Rein, Kathleen
    Lampen, Alfonso
    Hessel-Pras, Stefanie
    TOXICOLOGY IN VITRO, 2017, 42 : 161 - 170
  • [27] Determination of metabolic profile of novel triethylamine containing thiophene S006-830 in rat, rabbit, dog and human liver microsomes
    Hidau, Mahendra Kumar
    Singh, Yeshwant
    Singh, Shio Kumar
    DRUG TESTING AND ANALYSIS, 2016, 8 (02) : 180 - 188
  • [28] Differences in metabolite genotoxicity test results of rat liver S9 microsomes treated with various microsomal enzyme inducers
    Igaki, Shigeru
    Hashimoto, Kiyohiro
    Matsui, Toshikatsu
    Shinozawa, Tadahiro
    TOXICOLOGY MECHANISMS AND METHODS, 2025,
  • [29] 20 (S)-ginsenoside Rh2 inhibits colorectal cancer cell growth by suppressing the Axl signaling pathway in vitro and in vivo
    Zhang, Haibo
    Yi, Jun-Koo
    Huang, Hai
    Park, Sijun
    Kwon, Wookbong
    Kim, Eungyung
    Jang, Soyoung
    Kim, Si-Yong
    Choi, Seong-kyoon
    Yoon, Duhak
    Kim, Sung-Hyun
    Liu, Kangdong
    Dong, Zigang
    Ryoo, Zae Young
    Kim, Myoung Ok
    JOURNAL OF GINSENG RESEARCH, 2022, 46 (03) : 396 - 407
  • [30] COMPARATIVE METABOLISM CHARACTERISTICS RESEARCH OF TETRAHYDROPALMATINE IN FIVE SPECIES ( DOG, HUMAN, MICE, MONKEY, AND RAT) LIVER MICROSOMES BY UHPLC/ESI-QTOF-MS/MS
    Ouyang, Hui
    Liao, Huiping
    Li, Junmao
    He, Mingzhen
    Li, Yan
    Rao, Xiaoyong
    Wang, Qi
    Yang, Shilin
    Li, Zhifeng
    Feng, Yulin
    PROCEEDINGS OF THE 2016 INTERNATIONAL CONFERENCE ON BIOTECHNOLOGY & MEDICAL SCIENCE, 2017, : 159 - 173