• Title of article

    Phosphoramidates of 2′-β-d-arabinouridine (AraU) as phosphate prodrugs; design, synthesis, in vitro activity and metabolism Original Research Article

  • Author/Authors

    Youcef Mehellou، نويسنده , , Rocco Valente، نويسنده , , Huw Mottram، نويسنده , , Elisabeth Walsby، نويسنده , , Kenneth I. Mills، نويسنده , , Jan Balzarini، نويسنده , , Christopher McGuigan، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2010
  • Pages
    8
  • From page
    2439
  • To page
    2446
  • Abstract
    2′-β-d-Arabinouridine (AraU), the uridine analogue of the anticancer agent AraC, was synthesized and evaluated for antiviral activity and cytotoxicity. In addition, a series of AraU monophosphate prodrugs in the form of triester phosphoramidates (ProTides) were also synthesized and tested against a range of viruses, leukaemia and solid tumour cell lines. Unfortunately, neither the parent compound (AraU) nor any of its ProTides showed antiviral activity, nor potent inhibitory activity against any of the cancer cell lines. Therefore, the metabolism of AraU phosphoramidates to release AraU monophosphate was investigated. The results showed carboxypeptidase Y, hog liver esterase and crude CEM tumor cell extracts to hydrolyse the ester motif of phosphoramidates with subsequent loss of the aryl group, while molecular modelling studies suggested that the AraU l-alanine aminoacyl phosphate derivative might not be a good substrate for the phosphoramidase enzyme Hint-1. These findings are in agreement with the observed disappearance of intact prodrug and concomitant appearance of the corresponding phosphoramidate intermediate derivative in CEM cell extracts without measurable formation of araU monophosphate. These findings may explain the poor antiviral/cytostatic potential of the prodrugs.
  • Keywords
    Antiviral , Nucleosides , Nucleotides , Prodrugs , Anticancer , ProTides
  • Journal title
    Bioorganic and Medicinal Chemistry
  • Serial Year
    2010
  • Journal title
    Bioorganic and Medicinal Chemistry
  • Record number

    1307247