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PMID: 8632299 Published · ppublish English Clinical Trial Controlled Clinical Trial Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

Triazolam biotransformation by human liver microsomes in vitro: effects of metabolic inhibitors and clinical confirmation of a predicted interaction with ketoconazole.

The Journal of pharmacology and experimental therapeutics ·Vol. 276 ·No. 2 ·1996-02-00 ·Pages 370-9

von Moltke LL, Greenblatt DJ, Harmatz JS, Duan SX, Harrel LM, Cotreau-Bibbo MM, Pritchard GA, Wright CE, Shader RI

Abstract

Biotransformation of the triazolobenzodiazepine triazolam to its hydroxylated metabolites, alpha-hydroxy (OH)- and 4-OH-triazolam, was studied in vitro using microsomal preparations of human liver. Mean values of Vmax (10.3 nM/min/mg of protein) and Km (304 microM) for the 4-OH pathway exceeded values for the alpha-OH pathway (2.4 and 74, respectively). However the mean Vmax/Km ratios for the two pathways were nearly identical, indicating that both contribute approximately equally to intrinsic clearance. Ketoconazole was a powerful inhibitor of triazolam biotransformation, having mean competitive Ki values of 0.006 and 0.023 microM for the alpha-OH and 4-OH pathways. This is consistent with the role of P450-3A isoforms in mediating triazolam biotransformation. The serotonin2 antagonist antidepressant nefazodone inhibited the alpha-OH and 4-OH pathways (Ki = 0.6 and 1.7 microM, respectively), but with considerably less activity than ketoconazole. Among six selective serotonin reuptake-inhibitor antidepressants, norfluoxetine was the most potent inhibitor (Ki = 2.7 and 8.0 microM) and fluoxetine itself was the weakest (Ki = 7.0 and 44.3 microM). In a double-blind clinical pharmacokinetic-pharmacodynamic study, administration of triazolam (0.125 mg) preceded by ketoconazole, compared to triazolam preceded by placebo, produced a nearly 9-fold reduction in apparent oral clearance of triazolam (41 vs. 337 ml/min) and a 4-fold prolongation of half-life (13.5 vs. 3.4 hr). Pharmacodynamic testing indicated enhancement of electroencephalographic beta activity, and enhanced decrements in digit-symbol substitution test performance, attributable to coadministration of ketoconazole. Plasma ketoconazole concentrations measured in the clinical study ranged from 0.02 microgram/ml (projected minimum) to 4.95 micrograms/ml (maximum). An in vitro-in vivo scaling model, using these plasma ketoconazole concentrations together with liver partition ratios and the in vitro Ki values, predicted a decrement of triazolam clearance due to ketoconazole coadministration that was consistent with the 88% decrement in clearance actually observed in vivo.

MeSH Terms
Adult Aged Animals Antifungal Agents/pharmacology Biotransformation Cytochrome P-450 Enzyme System/physiology Drug Interactions Female Humans Hypnotics and Sedatives/pharmacokinetics Ketoconazole/pharmacokinetics,pharmacology Male Mice Microsomes, Liver/metabolism Middle Aged Triazolam/pharmacokinetics
Chemicals
Antifungal Agents Hypnotics and Sedatives Triazolam Cytochrome P-450 Enzyme System Ketoconazole
Authors & Affiliations
9 authors, click to expand affiliations / ORCID
von Moltke L L
Department of Pharmacology and Experimental Therapeutics, Tufts University School of Medicine, Boston, Massachusetts, USA.
Greenblatt D J
Harmatz J S
Duan S X
Harrel L M
Cotreau-Bibbo M M
Pritchard G A
Wright C E
Shader R I
Article Info
Journal
The Journal of pharmacology and experimental therapeutics
Abbr.
J Pharmacol Exp Ther
ISSN
0022-3565
Published
1996-02-00
Pages
370-9
Language
English
Region
United States
NLM ID
0376362
Subset
IM
Grants
NIDA NIH HHS · DA-05258 · United States
NIMH NIH HHS · MH-34223 · United States
NCRR NIH HHS · RR-00054 · United States
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