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Drug Metabolism and Disposition Fast Forward
First published on July 21, 2004; DOI: 10.1124/dmd.104.000638


0090-9556/04/3210-1132-1138$20.00
DMD 32:1132-1138, 2004

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PLASMA PHARMACOKINETICS AND METABOLISM OF THE HISTONE DEACETYLASE INHIBITOR TRICHOSTATIN A AFTER INTRAPERITONEAL ADMINISTRATION TO MICE

L. Sanderson, G. W. Taylor, E. O. Aboagye, J. P. Alao, J. R. Latigo, R. C. Coombes, and D. M. Vigushin

Department of Cancer Medicine (L.S., J.P.A., R.C.C., D.M.V.), Section of Proteomics (G.W.T.), and Molecular Therapy Group (E.O.A., J.R.L.), Imperial College London (Hammersmith Hospital Campus), London, United Kingdom

Trichostatin A is a potent and specific histone deacetylase inhibitor with promising antitumor activity in preclinical models. Plasma pharmacokinetics of trichostatin A were studied following single-dose intraperitoneal administration of 80 mg/kg (high dose) or 0.5 mg/kg (low dose) to female BALB/c mice. Plasma trichostatin A concentrations were quantified by high performance liquid chromatography (HPLC)-UV assay (high dose) or by HPLC-multiple reaction monitoring assay (low dose). Trichostatin A was rapidly absorbed from the peritoneum and detectable in plasma within 2 min. Cmax of 40 µg/ml and 8 ng/ml occurred within 5 min, followed by rapid exponential decay in plasma trichostatin A concentration with t1/2 of 6.3 min and 9.6 min (high and low doses, respectively). Phase I metabolites at the high dose were identified by simultaneous UV and positive ion electrospray mass spectrometry. Trichostatin A underwent extensive metabolism: primary metabolic pathways were N-demethylation, reduction of the hydroxamic acid to the corresponding trichostatin A amide, and oxidative deamination to trichostatic acid. N-Monomethyl trichostatin A amide was the major plasma metabolite. No didemethylated compounds were identified. Trichostatic acid underwent further biotransformation: reduction and ß-oxidation of the carboxylic acid, with or without N-demethylation, resulted in formation of dihydro trichostatic acid and dinor dihydro trichostatic acids. HPLC fractions corresponding to trichostatin A and N-demethylated trichostatin A exhibited histone deacetylase-inhibitory activity; no other fractions were biologically active. We conclude that trichostatin A is rapidly and extensively metabolized in vivo following intraperitoneal administration to mice, and N-demethylation does not compromise histone deacetylase-inhibitory activity.


Address correspondence to: Dr. David Vigushin, Department of Cancer Medicine, 6th Floor MRC Cyclotron Building, Imperial College London (Hammersmith Hospital Campus), Du Cane Road, London W12 0NN, United Kingdom. E-mail: d.vigushin{at}imperial.ac.uk




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