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  5. Biotransformation of fluorophenyl pyridine carboxylic acids by the model fungus Cunninghamella elegans
 
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Biotransformation of fluorophenyl pyridine carboxylic acids by the model fungus Cunninghamella elegans

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Download XTEN-2016-0200 Revision.doc634 KB
Author(s)
Palmer-Brown, William 
Dunne, Brian 
Ortin, Yannick 
Murphy, Cormac D. 
et al. 
Uri
http://hdl.handle.net/10197/10828
Date Issued
19 August 2016
Date Available
01T13:40:58Z July 2019
Abstract
1.Fluorine plays a key role in the design of new drugs and recent FDA approvals included two fluorinated drugs, tedizolid phosphate and vorapaxar, both of which contain the fluorophenyl pyridyl moiety. 2.To investigate the likely phase-I (oxidative) metabolic fate of this group, various fluorinated phenyl pyridine carboxylic acids were incubated with the fungus Cunninghamella elegans, which is an established model of mammalian drug metabolism. 3.19F NMR spectroscopy established the degree of biotransformation, which varied depending on the position of fluorine substitution, and gas chromatography–mass spectrometry (GC–MS) identified alcohols and hydroxylated carboxylic acids as metabolites. The hydroxylated metabolites were further structurally characterised by nuclear magnetic resonance spectroscopy (NMR), which demonstrated that hydroxylation occurred on the 4′ position; fluorine in that position blocked the hydroxylation. 4.The fluorophenyl pyridine carboxylic acids were not biotransformed by rat liver microsomes and this was a consequence of inhibitory action, and thus, the fungal model was crucial in obtaining metabolites to establish the mechanism of catabolism.
Sponsorship
European Commission - Seventh Framework Programme (FP7)
Type of Material
Journal Article
Publisher
Taylor & Francis
Journal
Xenobiotica
Volume
47
Issue
9
Start Page
763
End Page
770
Copyright (Published Version)
2016 Informa UK
Keywords
  • Cytochrome P450

  • Cunninghamella

  • Carboxylic Acids

  • Lactones

  • Oxazoles

  • Pyridines

  • Chromatography, High ...

  • Magnetic Resonance Sp...

  • Fluorine

  • Mass Spectrometry

  • Gas Chromatography-Ma...

  • Microbial model

  • 19F NMR

DOI
10.1080/00498254.2016.1227109
Language
English
Status of Item
Peer reviewed
ISSN
0049-8254
This item is made available under a Creative Commons License
https://creativecommons.org/licenses/by-nc-nd/3.0/ie/
Owning collection
Biomolecular and Biomedical Science Research Collection
Scopus© citations
7
Acquisition Date
Feb 6, 2023
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