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Small molecule piperazinyl-benzimidazole antagonists of the gonadotropin-releasing hormone (GnRH) receptor.
Fjellaksel, Richard; Boomgaren, Marc; Sundset, Rune; Haraldsen, Ira H; Hansen, Jørn H; Riss, Patrick J.
  • Fjellaksel R; Medical Imaging Group , Department of Clinical Medicine , UiT The Arctic University of Norway , 9037 Tromsø , Norway . Email: richard.fjellaksel@uit.no.
  • Boomgaren M; Drug Transport and Delivery Group , Department of Pharmacy , UiT The Arctic University of Norway , 9037 Tromsø , Norway.
  • Sundset R; Organic Chemistry Group , Department of Chemistry , UiT The Arctic University of Norway , 9037 Tromsø , Norway.
  • Haraldsen IH; Organic Chemistry Group , Department of Chemistry , UiT The Arctic University of Norway , 9037 Tromsø , Norway.
  • Hansen JH; Medical Imaging Group , Department of Clinical Medicine , UiT The Arctic University of Norway , 9037 Tromsø , Norway . Email: richard.fjellaksel@uit.no.
  • Riss PJ; PET imaging center, division of diagnostics , UNN - University Hospital of North-Norway , 9038 Tromsø , Norway.
Medchemcomm ; 8(10): 1965-1969, 2017 Oct 01.
Article en En | MEDLINE | ID: mdl-30108717
In this communication, we report the synthesis and characterization of a library of small molecule antagonists of the human gonadotropin releasing hormone receptor based upon the 2-(4-tert-butylphenyl)-4-piperazinyl-benzimidazole scaffold via Cu-catalysed azide alkyne cycloaddition. Our main purpose was to find a more soluble compound based on the WAY207024 lead with nanomolar potency to inhibit the GnRH receptor. A late stage diversification by the use of click chemistry was, furthermore developed to allow for expansion of the library in future optimisations. All compounds were tested in a functional assay to determine the individual potency of inhibiting stimulation of the receptor by the endogenous agonist GnRH. In conclusion, we found that compound 8a showed improved solubility compared to WAY207024 and nanomolar affinity to GnRH receptor.