| Literature DB >> 22984835 |
Gernot Zech1, Gerhard Hessler, Andreas Evers, Tilo Weiss, Peter Florian, Melitta Just, Jörg Czech, Werngard Czechtizky, Jochen Görlitzer, Sven Ruf, Markus Kohlmann, Marc Nazaré.
Abstract
A series of novel, highly potent P2Y₁₂ antagonists as inhibitors of platelet aggregation based on a phenylpyrazole glutamic acid piperazine backbone is described. Exploration of the structural requirements of the substituents by probing the structure-activity relationship along this backbone led to the discovery of the N-acetyl-(S)-proline cyclobutyl amide moiety as a highly privileged motif. Combining the most favorable substituents led to remarkably potent P2Y₁₂ antagonists displaying not only low nanomolar binding affinity to the P2Y₁₂ receptor but also a low nanomolar inhibition of platelet aggregation in the human platelet rich plasma assay with IC₅₀ values below 50 nM. Using a homology and a three-dimensional quantitative structure-activity relationship model, a binding hypothesis elucidating the impact of several structural features was developed.Entities:
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Year: 2012 PMID: 22984835 DOI: 10.1021/jm300771j
Source DB: PubMed Journal: J Med Chem ISSN: 0022-2623 Impact factor: 7.446