| Literature DB >> 21413804 |
Steven Ballet1, Debby Feytens, Koen Buysse, Nga N Chung, Carole Lemieux, Suneeta Tumati, Attila Keresztes, Joost Van Duppen, Josephine Lai, Eva Varga, Frank Porreca, Peter W Schiller, Jozef Vanden Broeck, Dirk Tourwé.
Abstract
A screening of conformationally constrained <span class="Chemical">aromatic amino acids as base cores for the prepa<span class="Species">ration of new NK1 receptor antagonists resulted in the discovery of three new NK1 receptor antagonists, 19 [Ac-Aba-Gly-NH-3',5'-(CF(3))(2)-Bn], 20 [Ac-Aba-Gly-NMe-3',5'-(CF(3))(2)-Bn], and 23 [Ac-Tic-NMe-3',5'-(CF(3))(2)-Bn], which were able to counteract the agonist effect of substance P, the endogenous ligand of NK1R. The most active NK1 antagonist of the series, 20 [Ac-Aba-Gly-NMe-3',5'-(CF(3))(2)-Bn], was then used in the design of a novel, potent chimeric opioid agonist-NK1 receptor antagonist, 35 [Dmt-D-Arg-Aba-Gly-NMe-3',5'-(CF(3))(2)-Bn], which combines the N terminus of the established Dmt(1)-DALDA agonist opioid pharmacophore (H-Dmt-D-Arg-Phe-Lys-NH(2)) and 20, the NK1R ligand. The opioid component of the chimeric compound 35, that is, Dmt-D-Arg-Aba-Gly-NH(2) (36), also proved to be an extremely potent and balanced μ and δ opioid receptor agonist with subnanomolar binding and in vitro functional activity.Entities:
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Year: 2011 PMID: 21413804 PMCID: PMC3096782 DOI: 10.1021/jm1016285
Source DB: PubMed Journal: J Med Chem ISSN: 0022-2623 Impact factor: 7.446