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  • 硫酸黄连碱

    Coptisine sulfate

    硫酸黄连碱
    产品编号 CFN90140
    CAS编号 1198398-71-8
    分子式 = 分子量 C19H15NO8S = 417.4
    产品纯度 >=98%
    物理属性 Powder
    化合物类型 Alkaloids
    植物来源 The roots of Chelidonium majus
    ChemFaces的产品在影响因子大于5的优秀和顶级科学期刊中被引用
    提供自定义包装
    产品名称 产品编号 CAS编号 包装 QQ客服
    硫酸黄连碱 CFN90140 1198398-71-8 10mg QQ客服:3257982914
    硫酸黄连碱 CFN90140 1198398-71-8 20mg QQ客服:3257982914
    硫酸黄连碱 CFN90140 1198398-71-8 50mg QQ客服:3257982914
    硫酸黄连碱 CFN90140 1198398-71-8 100mg QQ客服:3257982914
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    ChemFaces的产品在许多优秀和顶级科学期刊中被引用

    Cell. 2018 Jan 11;172(1-2):249-261.e12.
    doi: 10.1016/j.cell.2017.12.019.
    IF=36.216(2019)

    PMID: 29328914

    Cell Metab. 2020 Mar 3;31(3):534-548.e5.
    doi: 10.1016/j.cmet.2020.01.002.
    IF=22.415(2019)

    PMID: 32004475

    Mol Cell. 2017 Nov 16;68(4):673-685.e6.
    doi: 10.1016/j.molcel.2017.10.022.
    IF=14.548(2019)

    PMID: 29149595

    ACS Nano. 2018 Apr 24;12(4): 3385-3396.
    doi: 10.1021/acsnano.7b08969.
    IF=13.903(2019)

    PMID: 29553709

    Nature Plants. 2016 Dec 22;3: 16206.
    doi: 10.1038/nplants.2016.205.
    IF=13.297(2019)

    PMID: 28005066

    Sci Adv. 2018 Oct 24;4(10): eaat6994.
    doi: 10.1126/sciadv.aat6994.
    IF=12.804(2019)

    PMID: 30417089
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  • Universit?t Basel (Switzerland)
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  • Julius Kühn-Institut (Germany)
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  • 国外学术期刊发表的引用ChemFaces产品的部分文献
  • Int Immunopharmacol.2021, 100:108073.
  • Int J Mol Sci.2023, 24(5):4505.
  • Journal of Apiculture2019, 34(2):131-136
  • Planta Med.2016, 82(13):1208-16
  • ACS Omega2020, 5,33,20825-20830
  • Appl Biol Chem2019, 62:46
  • J Chromatogr A.2017, 1518:46-58
  • Molecules.2020, 25(21):5087.
  • J Ethnopharmacol.2020, 254:112733.
  • Plants (Basel).2023, 12(22):3877.
  • Hindawi J of Food Biochemistry2023, P17:8883860
  • J Chromatogr B Analyt Technol Biomed Life Sci.2019, 1124:323-330
  • Histol Histopathol.2022, 18518.
  • J Med Food.2016, 19(12):1155-1165
  • The Japan Society for Analy. Chem.2017, 66(8):613-617
  • Molecules.2019, 24(10):E1930
  • Pharmaceutics.2022, 14(12):2765.
  • FEBS Lett.2015, 589(1):182-7
  • Mol Neurobiol.2021, 58(8):3665-3676.
  • Evid Based Complement Alternat Med.2018, 2018:4259603
  • Int J Mol Sci.2022, 23(11):6172.
  • Processes2021, 9(11),2065.
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  • ...
  • 生物活性
    Description: Coptisine sulfate can competitively inhibit CYP2D6(*)1 and CYP2D6(*)10, its Ki values for CYP2D6(*)1 and CYP2D6(*)10 are very close, suggesting that genotype-dependent herb-drug inhibition is similar between the two variants.
    Targets: P450 (e.g. CYP17)
    In vitro:
    Acta Pharmacol Sin. 2014 May;35(5):685-96.
    Inhibitory effects of phytochemicals on metabolic capabilities of CYP2D6(*)1 and CYP2D6(*)10 using cell-based models in vitro.[Pubmed: 24786236 ]
    Herbal products have been widely used, and the safety of herb-drug interactions has aroused intensive concerns. This study aimed to investigate the effects of phytochemicals on the catalytic activities of human CYP2D6(*)1 and CYP2D6(*)10 in vitro.
    METHODS AND RESULTS:
    HepG2 cells were stably transfected with CYP2D6(*)1 and CYP2D6(*)10 expression vectors. The metabolic kinetics of the enzymes was studied using HPLC and fluorimetry. HepG2-CYP2D6(*)1 and HepG2-CYP2D6(*)10 cell lines were successfully constructed. Among the 63 phytochemicals screened, 6 compounds, including Coptisine sulfate, bilobalide, schizandrin B, luteolin, schizandrin A and puerarin, at 100 μmol/L inhibited CYP2D6(*)1- and CYP2D6(*)10-mediated O-demethylation of a coumarin compound AMMC by more than 50%. Furthermore, the inhibition by these compounds was dose-dependent. Eadie-Hofstee plots demonstrated that these compounds competitively inhibited CYP2D6(*)1 and CYP2D6(*)10. However, their Ki values for CYP2D6(*)1 and CYP2D6(*)10 were very close, suggesting that genotype-dependent herb-drug inhibition was similar between the two variants.
    CONCLUSIONS:
    Six phytochemicals inhibit CYP2D6(*)1 and CYP2D6(*)10-mediated catalytic activities in a dose-dependent manner in vitro. Thus herbal products containing these phytochemicals may inhibit the in vivo metabolism of co-administered drugs whose primary route of elimination is CYP2D6.
    制备储备液(仅供参考)
    1 mg 5 mg 10 mg 20 mg 25 mg
    1 mM 2.3958 mL 11.9789 mL 23.9578 mL 47.9157 mL 59.8946 mL
    5 mM 0.4792 mL 2.3958 mL 4.7916 mL 9.5831 mL 11.9789 mL
    10 mM 0.2396 mL 1.1979 mL 2.3958 mL 4.7916 mL 5.9895 mL
    50 mM 0.0479 mL 0.2396 mL 0.4792 mL 0.9583 mL 1.1979 mL
    100 mM 0.024 mL 0.1198 mL 0.2396 mL 0.4792 mL 0.5989 mL
    * Note: If you are in the process of experiment, it's need to make the dilution ratios of the samples. The dilution data of the sheet for your reference. Normally, it's can get a better solubility within lower of Concentrations.
    部分图片展示
    产品名称 产品编号 CAS编号 分子式 = 分子量 位单 联系QQ
    硫酸黄连碱; Coptisine sulfate CFN90140 1198398-71-8 C19H15NO8S = 417.4 20mg QQ客服:2159513211
    小檗碱; Berberine CFN98049 2086-83-1 C20H18NO4 = 336.4 20mg QQ客服:1413575084
    盐酸黄连素; 盐酸小檗碱; Berberine hydrochloride CFN99562 633-65-8 C20H18NO4Cl = 371.81 20mg QQ客服:1457312923
    硫酸小檗碱; 硫酸氢黄连素; Berberine hydrogen sulphate CFN90432 633-66-9 C20H19NO8S = 433.43 20mg QQ客服:2056216494
    小檗红碱; Berberrubine CFN90509 15401-69-1 C19H16NO4+ = 322.33 20mg QQ客服:1457312923
    表小檗碱; Epiberberine CFN98564 6873-09-2 C20H18NO4 = 336.36 20mg QQ客服:2159513211
    黄连碱; Coptisine CFN99563 3486-66-6 C19H14NO4 = 320.32 20mg QQ客服:1457312923
    氯化黄连碱; Coptisine chloride CFN99564 6020-18-4 C19H14NO4Cl = 355.77 20mg QQ客服:3257982914
    13-甲基小檗碱; 13-Methylberberine CFN93056 54260-72-9 C21H20ClNO4 = 385.84 5mg QQ客服:1413575084

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