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Discovery, Structure-Activity Relationships, and In Vivo Activity of Dihydropyridone Agonists of the Bile Acid Receptor TGR5.

Sylvain PiconRajaa BoulahjarVanessa HoguetMorgane BaronIsabelle DuplanEmmanuelle VallezNathalie HennuyerJulie DumontVéronique ToucheEmilie DorchiesManuel LasalleAmandine DescatCatherine PiveteauAlexandre BielaLudovic ChaputBruno O VilloutreixEmmanuelle LipkaEmmanuel SevinMaxime CulotFabien GosseletSophie LestavelPascal RousselRebecca Deprez-PoulainFlorence LerouxBart StaelsBenoit DéprezAnne TailleuxJulie Charton
Published in: Journal of medicinal chemistry (2023)
A novel series of potent agonists of the bile acid receptor TGR5 bearing a dihydropyridone scaffold was developed from a high-throughput screen. Starting from a micromolar hit compound, we implemented an extensive structure-activity-relationship (SAR) study with the synthesis and biological evaluation of 83 analogues. The project culminated with the identification of the potent nanomolar TGR5 agonist 77A . We report the GLP-1 secretagogue effect of our lead compound ex vivo in mouse colonoids and in vivo. In addition, to identify specific features favorable for TGR5 activation, we generated and optimized a three-dimensional quantitative SAR model that contributed to our understanding of our activity profile and could guide further development of this dihydropyridone series.
Keyphrases
  • high throughput
  • structure activity relationship
  • single cell
  • small molecule
  • anti inflammatory
  • high resolution
  • growth hormone
  • mass spectrometry