Literature DB >> 8001229

Interindividual variation in the isomerization of 4-hydroxytamoxifen by human liver microsomes: involvement of cytochromes P450.

M L Williams1, M S Lennard, I J Martin, G T Tucker.   

Abstract

Tamoxifen and its metabolite 4-hydroxytamoxifen can both exist as geometrical isomers. Trans-tamoxifen is an oestrogen receptor antagonist and is used for the treatment of breast cancer. Trans-4-hydroxytamoxifen is 100 times more anti-oestrogenic than trans-tamoxifen. The cis isomers of tamoxifen and 4-hydroxytamoxifen are oestrogenic and weakly anti-oestrogenic or oestrogenic respectively. Both isomers of 4-hydroxytamoxifen have been detected in breast tumours of patients treated with trans-tamoxifen and it has been proposed that enzymatic isomerization of 4-hydroxytamoxifen occurs in vivo, resulting in resistance to tamoxifen therapy. We have investigated the isomerization of 4-hydroxytamoxifen by human liver microsomes and whether it is mediated by cytochromes P450. Microsomes from five of the 12 livers examined catalysed the interconversion of trans- and cis-4-hydroxytamoxifen (0.52 microM) when incubated for 40 min with an NADPH-generating system. Between 51 and 64% conversion of trans-4-hydroxytamoxifen was observed. Cis-4-hydroxytamoxifen was also converted to trans-4-hydroxytamoxifen (range 22-27%). Incubations with control, heat-treated microsomes resulted in approximately 1% isomerization of trans-4-hydroxytamoxifen. The extent of isomerization of trans- to cis-4-hydroxytamoxifen observed in microsomes from the other seven livers (range 2-8%) did not greatly exceed that seen in heat-inactivated microsomes. Enzymatic isomerization required NADPH and was inhibited by SKF 525A and ketoconazole, indicating the involvement of cytochromes P450. Enzymatic isomerization of trans-tamoxifen and trans-droloxifene (the 3-hydroxy synthetic analogue of tamoxifen) was not observed. These findings may have implications for the safe and effective use of tamoxifen.

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Year:  1994        PMID: 8001229     DOI: 10.1093/carcin/15.12.2733

Source DB:  PubMed          Journal:  Carcinogenesis        ISSN: 0143-3334            Impact factor:   4.944


  8 in total

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Review 2.  Use of in vitro and in vivo data to estimate the likelihood of metabolic pharmacokinetic interactions.

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3.  In Vitro Identification of Potential Metabolites of Plinabulin (NPI 2358) in Hepatic Preparations Using Liquid Chromatography-Ion Trap Mass Spectrometry.

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4.  Influence of amino acid residue 374 of cytochrome P-450 2D6 (CYP2D6) on the regio- and enantio-selective metabolism of metoprolol.

Authors:  S W Ellis; K Rowland; M J Ackland; E Rekka; A P Simula; M S Lennard; C R Wolf; G T Tucker
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5.  Inducible site-directed recombination in mouse embryonic stem cells.

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6.  Synthesis of Triphenylethylene Bisphenols as Aromatase Inhibitors That Also Modulate Estrogen Receptors.

Authors:  Wei Lv; Jinzhong Liu; Todd C Skaar; Elizaveta O'Neill; Ge Yu; David A Flockhart; Mark Cushman
Journal:  J Med Chem       Date:  2015-12-24       Impact factor: 7.446

7.  Bioactivation of the cancer chemopreventive agent tamoxifen to quinone methides by cytochrome P4502B6 and identification of the modified residue on the apoprotein.

Authors:  Chitra Sridar; Jaime D'Agostino; Paul F Hollenberg
Journal:  Drug Metab Dispos       Date:  2012-08-31       Impact factor: 3.922

8.  Extraction of tamoxifen and its metabolites from formalin-fixed, paraffin-embedded tissues: an innovative quantitation method using liquid chromatography and tandem mass spectrometry.

Authors:  Ella S M Ng; S Bill Kangarloo; Mie Konno; Alexander Paterson; Anthony M Magliocco
Journal:  Cancer Chemother Pharmacol       Date:  2014-01-12       Impact factor: 3.333

  8 in total

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