| Literature DB >> 26430967 |
Alessandro Bonifazi1,2, Fabio Del Bello1, Valerio Mammoli1, Alessandro Piergentili1, Riccardo Petrelli1, Cristina Cimarelli3, Maura Pellei3, Dirk Schepmann2, Bernhard Wünsch2, Elisabetta Barocelli4, Simona Bertoni4, Lisa Flammini4, Consuelo Amantini5, Massimo Nabissi6, Giorgio Santoni6, Giulio Vistoli7, Wilma Quaglia1.
Abstract
Two series of 1,4-dioxanes (4-11 and 12-19) were rationally designed and prepared to interact either with the phencyclidine (PCP) binding site of the N-methyl-d-aspartate (NMDA) receptor or with σ1 receptors, respectively. The biological profiles of the novel compounds were assessed using radioligand binding assays, and the compounds with the highest affinities were investigated for their functional activity. The results were in line with the available pharmacophore models and highlighted that the 1,4-dioxane scaffold is compatible with potent antagonist activity at NMDA receptor or high affinity for σ1 receptors. The primary amines 6b and 7 bearing a cyclohexyl and a phenyl ring or two phenyl rings in position 6, respectively, were the most potent noncompetitive antagonists at the NMDA receptor with IC50 values similar to those of the dissociative anesthetic (S)-(+)-ketamine. The 5,5-diphenyl substitution associated with a benzylaminomethyl moiety in position 2, as in 18, favored the interaction with σ1 receptors.Entities:
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Year: 2015 PMID: 26430967 DOI: 10.1021/acs.jmedchem.5b01214
Source DB: PubMed Journal: J Med Chem ISSN: 0022-2623 Impact factor: 7.446