4.7 Article

Revisiting tubercidin against kinetoplastid parasites: Aromatic substitutions at position 7 improve activity and reduce toxicity

Journal

EUROPEAN JOURNAL OF MEDICINAL CHEMISTRY
Volume 164, Issue -, Pages 689-705

Publisher

ELSEVIER FRANCE-EDITIONS SCIENTIFIQUES MEDICALES ELSEVIER
DOI: 10.1016/j.ejmech.2018.12.050

Keywords

7-Deazapurine nucleosides; Negishi cross coupling; Trypanosoma brucei brucei; Trypanosoma cruzi

Funding

  1. FWO-Flanders
  2. Science Without Borders (CNPq, Brazil) [206385/2014-5]
  3. University of Camerino, International School for Advanced Studies
  4. Erasmus Plus fellowship
  5. Hercules Foundation [AUGE/11/029]
  6. Special Research Fund (BOF) UGent
  7. University of Antwerp [TT-ZAPBOF 33049]
  8. FWO [G013118N]

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The nucleoside antibiotic tubercidin displays strong activity against different target organisms, but it is notoriously toxic to mammalian cells. The effects of tubercidin against T. brucei parasites inspired us to synthesize several C7 substituted analogs for in vitro evaluation in order to find suitable hit compounds. C7 Deazaadenosines substituted with electron-poor phenyl groups were found to have micromolar activity against T brucei in vitro. Replacement of the phenyl for a pyridine ring gave compound 13, with submicromolar potency and much-attenuated cytotoxicity compared to tubercidin. The veterinary pathogen T. congolense was equally affected by 13 in vitro. Transporter studies in T. b. brucei indicated that 13 is taken up efficiently by both the P1 and P2 adenosine transporters, making the occurrence of transporter-related resistance and cross-resistance with diamidine drugs such as diminazene aceturate and pentamidine as well as with melaminophenyl arsenicals unlikely. Evaluation of the in vitro metabolic stability of analog 13 indicated that this analog was significantly metabolized in mouse microsomal fractions, precluding further in vivo evaluation in mouse models of HAT. (C) 2018 Elsevier Masson SAS. All rights reserved.

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