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Research ArticleCARDIOVASCULAR

Metabolism of Methadone andlevo-α-Acetylmethadol (LAAM) by Human Intestinal Cytochrome P450 3A4 (CYP3A4): Potential Contribution of Intestinal Metabolism to Presystemic Clearance and Bioactivation

Yutaka Oda and Evan D. Kharasch
Journal of Pharmacology and Experimental Therapeutics September 2001, 298 (3) 1021-1032;
Yutaka Oda
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Evan D. Kharasch
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Abstract

Methadone and levo-α-acetylmethadol (LAAM) are opioid agonists used for analgesia and preventing opiate withdrawal. Methadone is sequentially N-demethylated to the inactive metabolites 2-ethylidene-1,5-dimethyl-3,3-diphenylpyrrolidine (EDDP) and 2-ethyl-5-methyl-3,3-diphenylpyraline (EMDP). LAAM is essentially a prodrug that undergoes bioactivation via sequentialN-demethylation tolevo-α-acetyl-N-normethadol (nor-LAAM) andlevo-α-acetyl-N,N-dinormethadol (dinor-LAAM). Methadone and LAAM are metabolized by CYP3A4 in human liver. Since they are administered orally, and CYP3A4 is expressed in human intestine, we tested the hypotheses that human intestine can metabolize methadone and LAAM, and evaluated the participation of CYP3A4. Intestinal microsomal methadone N-demethylation exhibited hyperbolic noncooperative kinetics and biphasic Eadie-Hofstee plots. Using a dual-enzyme Michaelis-Menten model,Km values were 11 and 1200 μM for EDDP and 23 and 930 μM for EMDP formation, respectively. CYP3A4 inhibitors (troleandomycin and ketoconazole) inhibited EDDP and EMDP formation by >70%. Methadone N-demethylation by CYP3A4 showed biphasic Eadie-Hofstee plots without evidence of positive cooperativity; Km values were 10 and 1100 μM for EDDP and 20 and 1000 μM for EMDP formation. Intestinal microsomal LAAM and nor-LAAM N-demethylation also exhibited hyperbolic kinetics and biphasic Eadie-Hofstee plots.Km values were 21 and 980 μM for nor-LAAM from LAAM and 18 and 1200 μM for dinor-LAAM from nor-LAAM. Troleandomycin and ketoconazole inhibitedN-demethylation by >70%. LAAM and nor-LAAM metabolism by CYP3A4 showed biphasic Eadie-Hofstee plots without evidence of positive cooperativity; Km values were 8 and 1300 μM, 6 and 950 μM, respectively. Predicted in vivo intestinal extraction of methadone and LAAM is 21 and 33%, respectively. We conclude that methadone, LAAM, and nor-LAAM are metabolized by human intestinal microsomes; CYP3A4 is the predominant cytochrome P450 isoform; CYP3A4-catalyzed methadone, LAAM, and nor-LAAM metabolism is characterized by noncooperative, multisite kinetics; and intestinal metabolism may contribute to presystemic methadone inactivation and LAAM bioactivation.

Footnotes

  • This study was supported by a Merit Review Award from the Veterans Affairs Medical Research Bureau and National Institutes of Health Grants K24DA00417 and P01GM32165.

  • Abbreviations:
    LAAM
    levo-α-acetylmethadol
    EDDP
    2-ethylidene-1,5-dimethyl-3,3-diphenylpyrrolidine
    EMDP
    2-ethyl-5-methyl-3,3-diphenylpyraline
    nor-LAAM
    levo-α-acetyl-N-normethadol
    dinor-LAAM
    levo-α-acetyl-N,N-dinormethadol
    CYP
    cytochrome P450
    HIM
    human intestinal microsome
    CL
    clearance
    ER
    extraction ratio
    ERb
    extraction ratio assuming drug distributes into red blood cells
    ERp
    extraction ratio assuming drug restricted to plasma
    CLint
    intrinsic clearance
    AIC
    Akaike's information criterion
    • Received February 5, 2001.
    • Accepted May 8, 2001.
  • The American Society for Pharmacology and Experimental Therapeutics
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Journal of Pharmacology and Experimental Therapeutics: 298 (3)
Journal of Pharmacology and Experimental Therapeutics
Vol. 298, Issue 3
1 Sep 2001
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Research ArticleCARDIOVASCULAR

Metabolism of Methadone andlevo-α-Acetylmethadol (LAAM) by Human Intestinal Cytochrome P450 3A4 (CYP3A4): Potential Contribution of Intestinal Metabolism to Presystemic Clearance and Bioactivation

Yutaka Oda and Evan D. Kharasch
Journal of Pharmacology and Experimental Therapeutics September 1, 2001, 298 (3) 1021-1032;

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Research ArticleCARDIOVASCULAR

Metabolism of Methadone andlevo-α-Acetylmethadol (LAAM) by Human Intestinal Cytochrome P450 3A4 (CYP3A4): Potential Contribution of Intestinal Metabolism to Presystemic Clearance and Bioactivation

Yutaka Oda and Evan D. Kharasch
Journal of Pharmacology and Experimental Therapeutics September 1, 2001, 298 (3) 1021-1032;
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