Development of a multigram synthesis of the bradykinin receptor 2 agonist FR-190997 and analogs thereof

  • Arch Pharm (Weinheim). 2023 May;356(5):e2200610. doi: 10.1002/ardp.202200610.
Eleanna Vachlioti  1 Spyridon Ferikoglou  1 Xenios Georgiou  1 Vasilios Karampatsis  1 Konstantinos Afratis  1 Vivi Bafiti  2 Martin Savard  3 Dionissios Papaioannou  1 Theodora Katsila  2 Fernand Gobeil Jr  3 Gerasimos Rassias  1
Affiliations
  • 1. Department of Chemistry, University of Patras, Rio University Campus, Patra, Greece.
  • 2. Institute of Chemical Biology, National Hellenic Research Foundation, Athens, Greece.
  • 3. Institute of Pharmacology, Université de Sherbrooke, Sherbrooke, Québec, Canada.
Abstract

Using Fujisawa's B2R agonist FR-190997, we recently demonstrated for the first time that agonism at the Bradykinin Receptor type 2 (B2R) produces substantial antiproliferative effects. FR-190997 elicited an EC50 of 80 nM in the triple-negative breast Cancer cell line MDA-MB-231, a much superior performance to that exhibited by most approved breast Cancer drugs. Consequently, we initiated a program aiming primarily at synthesizing adequate quantities of FR-190997 to support further in vitro and in vivo studies toward its repurposing for various cancers and, in parallel, enable the generation of novel FR-190997 analogs for an SAR study. Prerequisite for this endeavor was to address the synthetic challenges associated with the FR-190997 scaffold, which the Fujisawa chemists had constructed in 20 steps, 13 of which required chromatographic purification. We succeeded in developing a 17-step synthesis amenable to late-stage diversification that eliminated all chromatography and enabled access to multigram quantities of FR-190997 and novel derivatives thereof, supporting further Anticancer research based on B2R agonists.

Keywords
B2R agonists; FR-190997; cancer; late-stage diversification; quinolines.
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