Literature DB >> 8664192

Pharmacokinetics of paclitaxel and three major metabolites in patients with advanced breast carcinoma refractory to anthracycline therapy treated with a 3-hour paclitaxel infusion: a European Cancer Centre (ECC) trial.

M T Huizing1, J B Vermorken, H Rosing, W W ten Bokkel Huinink, I Mandjes, H M Pinedo, J H Beijnen.   

Abstract

BACKGROUND: Hepatic metabolism and biliary clearance play pivotal roles in the disposition of the anticancer drug paclitaxel. 6-alpha-hydroxypaclitaxel, 3'-p-hydroxypaclitaxel and 6-alpha,3'-p-dihydroxypaclitaxel were the major metabolic products of paclitaxel found in human bile. Recently, these metabolic products were detected in human plasma. The pharmacokinetics of paclitaxel and its metabolites were investigated in anthracycline-resistant breast cancer patients treated with high-dose paclitaxel and granulocyte colony-stimulating factor (G-CSF) support. PATIENTS AND METHODS: Nine patients were entered into this study in which paclitaxel was administered at the relatively high dose of 250 mg/m2 during a 3-hour infusion. G-CSF was administered daily subcutaneously (s.c.)on days 2 to 19 following chemotherapy. Analysis of paclitaxel and metabolite concentrations was performed by a new highly sensitive reversed-phase high performance liquid chromatographic (HPLC) assay.
RESULTS: The dose-limiting toxicity in this study was cumulative neurotoxicity. One patient had a partial response and 2 patients had mixed responses of their skin metastases. Relatively low peak plasma concentration (Cmax), with mean values of 6.91 micromol/L (range 3.08 to 8.98) and area under the plasma concentration time curve (AUC), with mean values of 27.04 micromol/L.h (range 14.88 to 40.57), were observed. The total body clearance was 16.99 L/h (range, 10.25 to 27.39). The pharmacokinetic parameter for the prediction of leuko-neutropenia, the duration of the plasma concentration above the threshold of 0.1 micromol/L.h (T > or = 0.1 microM), was 19.72 h (range 10.54 to 26.31). The three major metabolites detected in human plasma were identified as 6-alpha-hydroxypaclitaxel, 3'-p-hydroxypaclitaxel and 6-alpha,3'-p-dihydroxypaclitaxel. Cmax and AUC values of these metabolites are reported.
CONCLUSIONS: The three main metabolic products of paclitaxel in human plasma are 6-alpha-hydroxypaclitaxel, 3'-p-hydroxypaclitaxel and the dihydroxymetabolite 6-alpha,3'-p-dihydroxypaclitaxel. Two patients with liver function disturbances showed a tendency to higher paclitaxel and 6-alpha-hydroxypaclitaxel AUC levels, with more pronounced neuropathy.

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Year:  1995        PMID: 8664192     DOI: 10.1093/oxfordjournals.annonc.a059287

Source DB:  PubMed          Journal:  Ann Oncol        ISSN: 0923-7534            Impact factor:   32.976


  22 in total

Review 1.  Clinical Pharmacokinetics of Paclitaxel Monotherapy: An Updated Literature Review.

Authors:  Tore B Stage; Troels K Bergmann; Deanna L Kroetz
Journal:  Clin Pharmacokinet       Date:  2018-01       Impact factor: 6.447

Review 2.  The taxoids. Comparative clinical pharmacology and therapeutic potential.

Authors:  E A Eisenhauer; J B Vermorken
Journal:  Drugs       Date:  1998-01       Impact factor: 9.546

3.  Evaluation of a pharmacology-driven dosing algorithm of 3-weekly paclitaxel using therapeutic drug monitoring: a pharmacokinetic-pharmacodynamic simulation study.

Authors:  Markus Joerger; Stefanie Kraff; Alwin D R Huitema; Gary Feiss; Berta Moritz; Jan H M Schellens; Jos H Beijnen; Ulrich Jaehde
Journal:  Clin Pharmacokinet       Date:  2012-09-01       Impact factor: 6.447

Review 4.  Paclitaxel. An update of its use in the treatment of metastatic breast cancer and ovarian and other gynaecological cancers.

Authors:  L R Wiseman; C M Spencer
Journal:  Drugs Aging       Date:  1998-04       Impact factor: 3.923

Review 5.  Organic nanoparticle systems for spatiotemporal control of multimodal chemotherapy.

Authors:  Fanfei Meng; Ning Han; Yoon Yeo
Journal:  Expert Opin Drug Deliv       Date:  2016-08-08       Impact factor: 6.648

6.  P-glycoprotein inhibition leads to enhanced disruptive effects by anti-microtubule cytostatics at the in vitro blood-brain barrier.

Authors:  I C van der Sandt; P J Gaillard; H H Voorwinden; A G de Boer; D D Breimer
Journal:  Pharm Res       Date:  2001-05       Impact factor: 4.200

Review 7.  Risks and benefits of taxanes in breast and ovarian cancer.

Authors:  L B Michaud; V Valero; G Hortobagyi
Journal:  Drug Saf       Date:  2000-11       Impact factor: 5.606

8.  A population pharmacokinetic model for paclitaxel in the presence of a novel P-gp modulator, Zosuquidar Trihydrochloride (LY335979).

Authors:  Sophie Callies; Dinesh P de Alwis; Adrian Harris; Paul Vasey; Jos H Beijnen; Jan H Schellens; Michael Burgess; Leon Aarons
Journal:  Br J Clin Pharmacol       Date:  2003-07       Impact factor: 4.335

9.  Potential drug interaction between paclitaxel and clopidogrel.

Authors:  Yasutaka Shinoda; Michio Kimura; Eiseki Usami; Hiroki Asano; Tomoaki Yoshimura
Journal:  Biomed Rep       Date:  2016-05-20

Review 10.  Practical treatment guide for dose individualisation in cancer chemotherapy.

Authors:  P Canal; E Chatelut; S Guichard
Journal:  Drugs       Date:  1998-12       Impact factor: 9.546

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