Fluoropyrimidine chemotherapy relies on the intracellular anabolic conversion of 5-fluorouracil and the corresponding nucleosides to cytotoxic fluorinated nucleotides (F-Nuctd), such as 5-fluorouridine-5'-triphosphate (FUTP) or 5-fluoro-2'-deoxyuridine-5'-monophosphate (FdUMP), which can be detected
Non-invasive 19F-NMRS of 5-fluorouracil in pharmacokinetics and pharmacodynamic studies
✍ Scribed by W. Wolf; V. Waluch; C. A. Presant
- Publisher
- John Wiley and Sons
- Year
- 1998
- Tongue
- English
- Weight
- 101 KB
- Volume
- 11
- Category
- Article
- ISSN
- 0952-3480
No coin nor oath required. For personal study only.
✦ Synopsis
Knowledge of the exact dose and rate at which an antitumor agent is delivered to its target site is postulated to be crucial to proper patient management. It is now possible to obtain such information using noninvasive 19 F-NMRS (nuclear magnetic resonance spectroscopy) following the administration of 5-fluorouracil (5-FU). We have performed such studies in 103 patients with breast, colorectal and other tumors. Measurable 19 F signals were detected in 99 of these patients (92.5%). Estimation of the tumoral t 1/2 of 5-FU in these patients revealed that 51 of them (51.5%) exhibited a tumoral t 1/2 greater than 20 min, a value we had characterized as indicating drug trapping in the tumor. Of these patients, 46 who received regimen bolus 5-FU 600 mg/m 2 with leucovorin for their treatment have been evaluated. In these patients, the association between trapping and response remains very high (p `.000001). None of the non-trappers responded to chemotherapy, whereas 70% of the evaluable trappers responded. Details are presented here on the methodology of NMRS data acquisition and on their pharmacokinetic analysis. The potential mechanisms underlying the trapping effect appear to be predicated primarily on transport processes. Suggestions are presented on how such pharmacokinetic imaging studies may extend both our understanding of the mechanism of action of 5-FU, and how they could be used to optimize patient treatment.
📜 SIMILAR VOLUMES
Electron delocalization into the local environment of the Ñuorine nucleus in the anti (1) and syn (2) epimers of 7-norbornenyl Ñuoride, 7-Ñuoronorbornane (3), 7-Ñuoronobornadiene (4) and the equatorial and axial epimers of cyclohexyl Ñuoride (5 and 6, respectively) were studied using the natural bon
F NMR / EXSY / Kinetics of ligand exchange / Bailar and Ra ˆy-Dutt mechanisms The rates of intramolecular rearrangement of the meridional isomer of the metal tris-chelate complex [Ga(fox) 3 , fox = 5fluoro-8-hydroxyquinoline] in DMF solution were measured using 1D NMR line shape analysis and 2D EXS
type nonbonding orbitals on heavy halogen or related substituents are largely responsible for significantly shielding spin᎐orbit-induced Ž . heavy-atom effects on nuclear magnetic resonance NMR chemical shifts of the neighboring atoms. This suggestion has been examined and confirmed by Ž . 13 densi