Abstract
The effect of ethanol on the metabolism of S-warfarin and diclofenac by recombinant cytochrome P450 2C9.1 microsomes (CYP2C9.1) was studied. The 7-hydroxylation metabolism of S-warfarin was inhibited by as low as 0.1 vol% (17 mM) ethanol. Ethanol decreased the Vmax/Km and V max values of S-warfarin metabolism in a concentration-dependent manner, but the Km value was unchanged by ethanol. The inhibitory effect of ethanol on the 4′-hydroxylation metabolism of diclofenac was not observed even at 1.0 vol% (170 mM) ethanol. Ethanol at a concentration of 3.0 vol% (510 mM) increased the Km value of diclofenac metabolism without changes in the Vmax, which indicates that diclofenac 4′-hydroxylation by CYP2C9.1 was competitively inhibited by ethanol. S-Warfarin metabolism by CYP2C9.1 was more sensitive to ethanol than diclofenac metabolism. These results suggest that ethanol inhibits the metabolism by CYP2C9.1 in a substrate-dependent manner. © 2009 Pharmaceutical Society of Japan.
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Tatsumi, A., Ikegami, Y., Morii, R., Sugiyama, M., Kadobayashi, M., & Iwakawa, S. (2009). Effect of ethanol on S-warfarin and diclofenac metabolism by recombinant human CYP2C9.1. Biological and Pharmaceutical Bulletin, 32(3), 517–519. https://doi.org/10.1248/bpb.32.517
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