1. Academic Validation
  2. Synthesis of a 3'-C-ethynyl-β-d-ribofuranose purine nucleoside library: Discovery of C7-deazapurine analogs as potent antiproliferative nucleosides

Synthesis of a 3'-C-ethynyl-β-d-ribofuranose purine nucleoside library: Discovery of C7-deazapurine analogs as potent antiproliferative nucleosides

  • Eur J Med Chem. 2018 Sep 5:157:248-267. doi: 10.1016/j.ejmech.2018.07.062.
Fabian Hulpia 1 Sam Noppen 2 Dominique Schols 2 Graciela Andrei 2 Robert Snoeck 2 Sandra Liekens 2 Peter Vervaeke 2 Serge Van Calenbergh 3
Affiliations

Affiliations

  • 1 Laboratory for Medicinal Chemistry (Campus Heymans), Ghent University, Ottergemsesteenweg 460, B-9000, Gent, Belgium.
  • 2 Laboratory of Virology and Chemotherapy, Rega Institute for Medical Research, KU Leuven, Herestraat 49, B-3000, Leuven, Belgium.
  • 3 Laboratory for Medicinal Chemistry (Campus Heymans), Ghent University, Ottergemsesteenweg 460, B-9000, Gent, Belgium. Electronic address: serge.vancalenbergh@ugent.be.
Abstract

A focused nucleoside library was constructed around a 3'-C-ethynyl-d-ribofuranose sugar scaffold, which was coupled to variously modified purine nucleobases. The resulting nucleosides were probed for their ability to inhibit tumor cell proliferation, as well as for their activity against a panel of relevant human viruses. While C6-aryl substituted purine nucleosides were found to be weakly active, several C7-substituted 7-deazapurine nucleosides elicited potent antiproliferative activity. Their activity spectrum was evaluated in the NCI-60 tumor cell line panel indicating activity against several solid tumor derived cell lines. Analog 32, equipped with a 7-deaza 7-chloro-6-amino-purin-9-yl base was evaluated in a metastatic breast tumor (MDA-MB-231-LM2) xenograft model. It inhibited both tumor growth and reduced the formation of lung metastases as revealed by BLI analysis. The dideazanucleoside analog 66 showed interesting activity against hCMV. These results highlight the potential advantages of recombining known sugar and nucleobase motifs as a library design strategy to discover novel Antiviral or antitumor agents.

Keywords

1,7-dideazapurine nucleoside; 3′-C-ethynylnucleoside; 7-deazapurine nucleoside; Antiproliferative; Antiviral; Vorbrüggen glycosylation.

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