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Drug Metabolism & Disposition

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Research ArticleArticle

CYP2B6 and CYP2C19 as the Major Enzymes Responsible for the Metabolism of Selegiline, a Drug Used in the Treatment of Parkinson's Disease, as Revealed from Experiments with Recombinant Enzymes

Mats Hidestrand, Mikael Oscarson, Jarmo S. Salonen, Leena Nyman, Olavi Pelkonen, Miia Turpeinen and Magnus Ingelman-Sundberg
Drug Metabolism and Disposition November 2001, 29 (11) 1480-1484;
Mats Hidestrand
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Mikael Oscarson
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Jarmo S. Salonen
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Leena Nyman
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Olavi Pelkonen
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Miia Turpeinen
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Magnus Ingelman-Sundberg
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Abstract

In view of conflicting data in the literature regarding the enzyme(s) responsible for metabolism of selegiline, a drug used in the treatment of Parkinson's disease, investigations were carried out in vitro using the human cytochrome P450 enzymes CYP1A1, CYP1A2, CYP2A6, CYP2B6, CYP2C8, CYP2C9, CYP2C19, CYP2D6, CYP2E1, and CYP3A4 recombinantly expressed in yeast to elucidate the enzyme specificity in selegiline metabolism. In the yeast microsomes used, desmethylselegiline and levomethamphetamine were formed from selegiline at significant rates. The highest contribution to the hepatic clearance of selegiline was calculated to be exerted by CYP2B6 (124 l/h) CYP2C19 (82 l/h), whereas CYP3A4 (27 l/h) and CYP1A2 (21 l/h) were of less importance. Antibodies against CYP2B6 inhibited metabolism of selegiline in microsomes containing CYP2B6 but not in microsomes without significant amounts of the enzyme. In contrast to previous reports, we could not find any role for CYP2D6 in the metabolism of selegiline. The data strongly indicate that the high extent of interindividual variation seen in vivo for selegiline clearance is caused by the metabolism of the compound by the highly polymorphic CYP2B6 and CYP2C19.

Footnotes

  • This work was supported by grants from the Swedish Medical Research Council, AstraZeneca, and by the European Union Framework 4 Program (EUROCYP Project BMH4-CT96-0254).

  • Abbreviations used are::
    MAO-B
    monoamine oxidase B
    P450
    cytochrome P450
    CLint
    intrinsic clearance
    • Received March 28, 2001.
    • Accepted August 6, 2001.
  • The American Society for Pharmacology and Experimental Therapeutics
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Drug Metabolism and Disposition: 29 (11)
Drug Metabolism and Disposition
Vol. 29, Issue 11
1 Nov 2001
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Research ArticleArticle

CYP2B6 and CYP2C19 as the Major Enzymes Responsible for the Metabolism of Selegiline, a Drug Used in the Treatment of Parkinson's Disease, as Revealed from Experiments with Recombinant Enzymes

Mats Hidestrand, Mikael Oscarson, Jarmo S. Salonen, Leena Nyman, Olavi Pelkonen, Miia Turpeinen and Magnus Ingelman-Sundberg
Drug Metabolism and Disposition November 1, 2001, 29 (11) 1480-1484;

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Research ArticleArticle

CYP2B6 and CYP2C19 as the Major Enzymes Responsible for the Metabolism of Selegiline, a Drug Used in the Treatment of Parkinson's Disease, as Revealed from Experiments with Recombinant Enzymes

Mats Hidestrand, Mikael Oscarson, Jarmo S. Salonen, Leena Nyman, Olavi Pelkonen, Miia Turpeinen and Magnus Ingelman-Sundberg
Drug Metabolism and Disposition November 1, 2001, 29 (11) 1480-1484;
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