4.3 Article Proceedings Paper

Strategic incorporation of fluorine into taxoid anticancer agents for medicinal chemistry and chemical biology studies

Journal

JOURNAL OF FLUORINE CHEMISTRY
Volume 198, Issue -, Pages 10-23

Publisher

ELSEVIER SCIENCE SA
DOI: 10.1016/j.jfluchem.2016.12.016

Keywords

Taxoid; Anticancer agent; Fluorotaxoid; Structure-activity relationship; F-19 NMR; Plasma and metabolic stability; Tumor-targeted drug delivery system

Funding

  1. National Institutes of Health [GM42798, CA103314]
  2. Indena SpA

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This account exemplifies our recent progress on the strategic incorporation of fluorine and organofluorine groups to taxoid anticancer agents and their tumor -targeted drug delivery systems (TFDDSs) for medicinal chemistry and chemical biology studies. Novel 3'-difluorovinyltaxoids were strategically designed to block the metabolism by cytochrome P-450, synthesized, and evaluated for their cytotoxicity against drug -sensitive and multidrug-resistant (MDR) human cancer cell lines. 3'-Difluorovinyltaxoids exhibited impressive activities against these cancer cell lines. More significantly, a representative 3'-difluorovinyltaxoid exhibited 230-33,000 times higher potency than conventional anticancer drugs against cancer stem cell -enriched HCT-116 cell line. Studies on the mechanism of action (MOA) of these fluorotaxoids were performed by tubulin polymerization assay, morphology analysis by electron microscopy (EM) and protein binding assays. Novel F-19 NMR probes, BLT-F-2 and BLT-S-F-6, were designed by strategically incorporating fluorine, CF3 and CF3O groups into tumor -targeting drug conjugates. These F-19 -probes were designed and synthesized to investigate the mechanism of linker cleavage and factors that influence their plasma and metabolic stability by real-time F-19 NMR analysis. Time -resolved F-19 NMR study on probe BLT-F-2 revealed a stepwise mechanism for the release of a fluorotaxoid, which might not be detected by other analytical methods. Probe BLT-S-F-6 were very useful to study the stability and reactivity of the drug delivery system in huinan blood plasma by F-19 NMR. The clean analysis of the linker stability and reactivity of drug conjugates in blood plasma by HPLC and H-1 NMR is very challenging, but the use of F-19 NMR and suitable F-19 probes can provide a practical solution to this problem.(C) 2017 Elsevier B.V. All rights reserved.

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