| Literature DB >> 25062506 |
Christian Bourgeois1, Elena Werfel, Fabian Galla, Kirstin Lehmkuhl, Héctor Torres-Gómez, Dirk Schepmann, Babette Kögel, Thomas Christoph, Wolfgang Straßburger, Werner Englberger, Michael Soeberdt, Sabine Hüwel, Hans-Joachim Galla, Bernhard Wünsch.
Abstract
5-Pyrrolidinyl substituted perhydroquinoxalines were designed as conformationally restricted κ-opioid receptor agonists restricted to the periphery. The additional N atom of the quinoxaline system located outside the ethylenediamine κ pharmacophore allows the fine-tuning of the pharmacodynamic and pharmacokinetic properties. The perhydroquinoxalines were synthesized stereoselectively using the concept of late stage diversification of the central building blocks 14. In addition to high κ-opioid receptor affinity they demonstrate high selectivity over μ, δ, σ1, σ2, and NMDA receptors. In the [35S]GTPγS assay full agonism was observed. Because of their high polarity, the secondary amines 14a (log D7.4=0.26) and 14b (log D7.4=0.21) did not penetrate an artificial blood-brain barrier. 14b was able to inhibit the spontaneous pain reaction after rectal mustard oil application to mice (ED50=2.35 mg/kg). This analgesic effect is attributed to activation of peripherally located κ receptors, since 14b did not affect centrally mediated referred allodynia and hyperalgesia.Entities:
Mesh:
Substances:
Year: 2014 PMID: 25062506 DOI: 10.1021/jm500940q
Source DB: PubMed Journal: J Med Chem ISSN: 0022-2623 Impact factor: 7.446