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Mechanisms of Enhanced Oral Availability of CYP3A4 Substrates by Grapefruit Constituents
Decreased enterocyte CYP3A4 concentration and mechanism-based inactivation by furanocoumarins
Phyllissa Schmiedlin-Ren, David J. Edwards, Michael E. Fitzsimmons, Kan He, Kenneth S. Lown, Patrick M. Woster, Atiqur Rahman, Kenneth E. Thummel, Jeannine M. Fisher, Paul F. Hollenberg and Paul B. Watkins
Drug Metabolism and Disposition November 1997, 25 (11) 1228-1233;
Phyllissa Schmiedlin-Ren
David J. Edwards
Michael E. Fitzsimmons
Kan He
Kenneth S. Lown
Patrick M. Woster
Atiqur Rahman
Kenneth E. Thummel
Jeannine M. Fisher
Paul F. Hollenberg
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Rapid CommunicationAccelerated Communication
Mechanisms of Enhanced Oral Availability of CYP3A4 Substrates by Grapefruit Constituents
Phyllissa Schmiedlin-Ren, David J. Edwards, Michael E. Fitzsimmons, Kan He, Kenneth S. Lown, Patrick M. Woster, Atiqur Rahman, Kenneth E. Thummel, Jeannine M. Fisher, Paul F. Hollenberg and Paul B. Watkins
Drug Metabolism and Disposition November 1, 1997, 25 (11) 1228-1233;
Rapid CommunicationAccelerated Communication
Mechanisms of Enhanced Oral Availability of CYP3A4 Substrates by Grapefruit Constituents
Phyllissa Schmiedlin-Ren, David J. Edwards, Michael E. Fitzsimmons, Kan He, Kenneth S. Lown, Patrick M. Woster, Atiqur Rahman, Kenneth E. Thummel, Jeannine M. Fisher, Paul F. Hollenberg and Paul B. Watkins
Drug Metabolism and Disposition November 1, 1997, 25 (11) 1228-1233;
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