Effect of cigarette smoking on coumarin metabolism in humans
Russell E. Poland, Robert N. Pechnick, Christine Cloak, Yu‐Jui Yvonne Wan, Inocencia Nuccio, Keh‐Ming Lin
Abstract
Russell E. Poland, Robert N. Pechnick, Christine Cloak, Yu‐Jui Yvonne Wan, Inocencia Nuccio, Keh‐Ming Lin
Abstract
Extant data, mostly from studies in vitro, suggest that coumarin and nicotine are both metabolized by CYP2A6, a cytochrome P450 isozyme. In order to investigate this issue further, the activity of this enzyme in vivo was measured in 37 non-smokers and 37 smokers using coumarin (2.0 mg, PO) as the metabolic probe. The percentage of coumarin metabolized to 7-hydroxycoumarin in 8 h was measured in urine by high-pressure liquid chromatography. There was more than 10-fold variability in coumarin metabolism in both groups. Coumarin metabolism was significantly reduced in smokers (46.6 +/- 4.4%) as compared to non-smokers (66.4 +/- 3.5%; p < or = .001). The results support previous in vitro findings that both coumarin and nicotine are metabolized, at least in part, by a common pathway, which most likely is CYP2A6.
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Extant data, mostly from studies in vitro, suggest that coumarin and nicotine are both metabolized by CYP2A6, a cytochrome P450 isozyme. In order to investigate this issue further, the activity of this enzyme in vivo was measured in 37 non-smokers and 37 smokers using coumarin (2.0 mg, PO) as the metabolic probe. The percentage of coumarin metabolized to 7-hydroxycoumarin in 8 h was measured in urine by high-pressure liquid chromatography. There was more than 10-fold variability in coumarin metabolism in both groups. Coumarin metabolism was significantly reduced in smokers (46.6 +/- 4.4%) as compared to non-smokers (66.4 +/- 3.5%; p < or = .001). The results support previous in vitro findings that both coumarin and nicotine are metabolized, at least in part, by a common pathway, which most likely is CYP2A6.
Key concepts: CYP2A6, Coumarin, Nicotine, Metabolism, Chemistry, Cytochrome P450, Urine, In vivo