Literature DB >> 16855390

A proposed clinical test for monitoring fluoropyrimidine therapy: detection and stability of thymidylate synthase ternary complexes.

Jonathan R Brody1, Eike Gallmeier, Kiyoshi Yoshimura, Tomas Hucl, Peter Kulesza, Marcia I Canto, Ralph H Hruban, Richard D Schulick, Scott E Kern.   

Abstract

5-fluorouracil forms classic (covalent, ternary) complexes consisting of thymidylate synthase, fluoro-deoxyuridine monophosphate, and 5,10-methylene tetrahydrofolate. Despite a high pharmacologic interest in the classic complexes formed in cells treated with fluorouracil anticancer agents, the in vivo stability of the complexes and the possible interference in complex formation by other coadministered compounds have not been adequately described. We visualized classic complexes unaccompanied by unbound thymidylate synthase, inferring complete enzymatic inhibition, in 5-fluorouracil-treated S. cerevisiae and cancer cells in vitro and in murine tumors in vivo treated with 5-fluorouracil. Classic complexes persisted 13 days in cancer cells after a pulse of 5-fluorouracil. Classic complexes were reduced to absent in cancer cells in which the older antifolates methotrexate and aminopterin, or the modern antifolates pemetrexed and tomudex, were coadministered with 5-fluorouracil. Classic complexes were, however, detected when an alternate drug, 5-fluorodeoxyuridine, was administered with methotrexate. We visualized classic complexes at fifteen minutes to seven days after an acute single dose of 5-fluorouracil in mouse tumor models, in tumors and normal tissues. Using the same assay, we detected unbound thymidylate synthase in untreated human tissues, supporting the future use of this assay in evaluating the most appropriate dose of fluoropyrimidine and coadministered agents in clinical settings.

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Year:  2006        PMID: 16855390     DOI: 10.4161/cbt.5.8.2976

Source DB:  PubMed          Journal:  Cancer Biol Ther        ISSN: 1538-4047            Impact factor:   4.742


  9 in total

1.  Improved Antitumor Activity of the Fluoropyrimidine Polymer CF10 in Preclinical Colorectal Cancer Models through Distinct Mechanistic and Pharmacologic Properties.

Authors:  William H Gmeiner; Anthony Dominijanni; Alex O Haber; Lais P Ghiraldeli; David L Caudell; Ralph D'Agostino; Boris C Pasche; Thomas L Smith; Zhiyong Deng; Sezgin Kiren; Chinnadurai Mani; Komaraiah Palle; Jonathan R Brody
Journal:  Mol Cancer Ther       Date:  2020-12-23       Impact factor: 6.261

2.  Are we systematically under-dosing patients with fluorouracil?

Authors:  Kalpesh Patel; Christine A Iacobuzio-Donahue; Paul E Gormley; Scott E Kern; Steven C Cunningham
Journal:  J Clin Oncol       Date:  2014-03-10       Impact factor: 44.544

3.  The epigenetic modifier HDAC2 and the checkpoint kinase ATM determine the responses of microsatellite instable colorectal cancer cells to 5-fluorouracil.

Authors:  Nicole Kiweler; Helena Schwarz; Alexandra Nguyen; Stephanie Matschos; Christina Mullins; Andrea Piée-Staffa; Christina Brachetti; Wynand P Roos; Günter Schneider; Michael Linnebacher; Walburgis Brenner; Oliver H Krämer
Journal:  Cell Biol Toxicol       Date:  2022-05-24       Impact factor: 6.691

Review 4.  Genetic Diversity of Pancreatic Ductal Adenocarcinoma and Opportunities for Precision Medicine.

Authors:  Erik S Knudsen; Eileen M O'Reilly; Jonathan R Brody; Agnieszka K Witkiewicz
Journal:  Gastroenterology       Date:  2015-09-15       Impact factor: 22.682

Review 5.  Evaluating the drug-target relationship between thymidylate synthase expression and tumor response to 5-fluorouracil. Is it time to move forward?

Authors:  Shayna L Showalter; Timothy N Showalter; Agnes Witkiewicz; Robert Havens; Eugene P Kennedy; Tomas Hucl; Scott E Kern; Charles J Yeo; Jonathan R Brody
Journal:  Cancer Biol Ther       Date:  2008-04-21       Impact factor: 4.742

6.  Limits to thymidylate synthase and TP53 genes as predictive determinants for fluoropyrimidine sensitivity and further evidence for RNA-based toxicity as a major influence.

Authors:  Jonathan R Brody; Tomas Hucl; Christina L Costantino; James R Eshleman; Eike Gallmeier; Heng Zhu; Michiel S van der Heijden; Jordan M Winter; Agnieszka K Wikiewicz; Charles J Yeo; Scott E Kern
Journal:  Cancer Res       Date:  2009-01-20       Impact factor: 12.701

7.  A thymidylate synthase ternary complex-specific antibody, FTS, permits functional monitoring of fluoropyrimidines dosing.

Authors:  Kalpesh Patel; Sashidhar R Yerram; Nilofer A Azad; Scott E Kern
Journal:  Oncotarget       Date:  2012-07

8.  AraC-FdUMP[10] Is a Next-Generation Fluoropyrimidine with Potent Antitumor Activity in PDAC and Synergy with PARG Inhibition.

Authors:  William H Gmeiner; Jonathan R Brody; Alex O Haber; Aditi Jain; Chinnadurai Mani; Avinoam Nevler; Lebaron C Agostini; Talia Golan; Komaraiah Palle; Charles J Yeo
Journal:  Mol Cancer Res       Date:  2021-02-16       Impact factor: 6.333

Review 9.  Chemistry of Fluorinated Pyrimidines in the Era of Personalized Medicine.

Authors:  William H Gmeiner
Journal:  Molecules       Date:  2020-07-29       Impact factor: 4.411

  9 in total

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