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1.
Phytother Res ; 28(10): 1573-6, 2014 Oct.
Article in English | MEDLINE | ID: mdl-24458977

ABSTRACT

In addition to CYP2E1, several CYP isoenzymes, notably CYP1A2, 2D6, and 3A4, are suggested to contribute in acetaminophen oxidation and formation of the hepatotoxic metabolite N-acetyl-p-benzoquinone imine (NAPQI). The in vitro CYP2E1 inhibitory potentials of fennel and raspberry leaf, herbs previously found to inhibit CYP1A2, 2D6, and 3A4 activities in vitro, were investigated. Extracts from commercially available herbal products were incubated with recombinant cDNA-expressed human CYP2E1. A validated LC/MS/MS methodology was applied for determination of 6-hydroxychlorzoxazone formation with disulfiram used as a positive inhibitory control. CYP2E1 IC50 inhibition constants were found to be 23 ± 4 and 27 ± 5 µg/ml for fennel and raspberry leaf, respectively, constants significantly lower than those presented in the literature for other herbal extracts. Together with previous findings, the presented in vitro data for CYP2E1 inhibition suggest that fennel and raspberry leaf have a significant potential of inhibiting all the major metabolic pathways for acetaminophen oxidation and NAPQI formation. Both herbs should be further investigated for their in vivo ability of inhibiting acetaminophen oxidation and NAPQI formation.


Subject(s)
Acetaminophen/metabolism , Cytochrome P-450 CYP1A2 Inhibitors/pharmacology , Cytochrome P-450 CYP2E1 Inhibitors/pharmacology , Foeniculum/chemistry , Rubus/chemistry , Benzoquinones/metabolism , Chlorzoxazone/analogs & derivatives , Chlorzoxazone/metabolism , Cytochrome P-450 CYP1A2/metabolism , Cytochrome P-450 CYP2E1/metabolism , Humans , Imines/metabolism , Inactivation, Metabolic , Inhibitory Concentration 50 , Oxidation-Reduction , Plant Leaves/chemistry
2.
Phytother Res ; 28(4): 603-10, 2014 Apr.
Article in English | MEDLINE | ID: mdl-23843424

ABSTRACT

Black elderberry, cranberry, fennel, ginger, horsetail, and raspberry leaf, herbs frequently used in pregnancy, were investigated for their in vitro CYP1A2, 2D6, and 3A4 inhibitory potential. Aqueous or ethanolic extracts were made from commercially available herbal products, and incubations were performed with recombinant cDNA-expressed human CYP enzymes in the presence of positive inhibitory controls. Metabolite formation was determined by validated LCMS/MS or HPLC methodologies. IC50 inhibition constants were estimated from CYP activity inhibition plots using non-linear regression. The most potent inhibition was shown for fennel towards CYP2D6 and 3A4 with respective IC50 constants of 23 ± 2 and 40 ± 4 µg/ml, horsetail towards CYP1A2 with an IC50 constant of 27 ± 1 µg/ml, and raspberry leaf towards CYP1A2, 2D6, and 3A4 with IC50 constants of 44 ± 2, 47 ± 8, and 81 ± 11 µg/ml, respectively. Based on the recommended dosing of the different commercial herbal products, clinically relevant systemic CYP inhibitions could be possible for fennel, horsetail, and raspberry leaf. In addition, fennel and raspberry leaf might cause a clinically relevant inhibition of intestinal CYP3A4. The in vivo inhibitory potential of these herbs towards specific CYP enzymes should be further investigated.


Subject(s)
Cytochrome P-450 CYP1A2 Inhibitors , Cytochrome P-450 CYP2D6 Inhibitors , Cytochrome P-450 CYP3A Inhibitors , Plant Extracts/pharmacology , Chromatography, High Pressure Liquid , Cytochrome P-450 CYP1A2 , Cytochrome P-450 CYP3A , Equisetum/chemistry , Female , Foeniculum/chemistry , Zingiber officinale/chemistry , Herb-Drug Interactions , Humans , Inhibitory Concentration 50 , Pregnancy , Rosaceae/chemistry , Sambucus/chemistry , Tandem Mass Spectrometry , Vaccinium/chemistry
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