4-Benzyl-1H-imidazoles with Oxazoline Termini as Histamine H3Receptor Agonists

Journal of Medicinal Chemistry
2008.0

Abstract

Research on the therapeutic applications of the histamine H3 receptor (H3R) has traditionally focused on antagonists/inverse agonists. In contrast, H3R agonists have received less attention despite their potential use in several disease areas. The lower availability of H3R agonists not only hampers their full therapeutic exploration, it also prevents an unequivocal understanding of the structural requirements for H3R activation. In the light of these important issues, we present our findings on 4-benzyl-1H-imidazole-based H3R agonists. Starting from two high throughput screen hits (10 and 11), the benzyl side chain was altered with lipophilic groups using combinatorial and classical chemical approaches (compounds 12-31). Alkyne- or oxazolino-substituents gave excellent affinities and agonist activities up to the single digit nM range. Our findings further substantiate the growing notion that basic ligand sidechains are not necessary for H 3R activation and reveal the oxazolino group as a hitherto unexplored functional group in H3R research.

Knowledge Graph

Similar Paper

4-Benzyl-1H-imidazoles with Oxazoline Termini as Histamine H<sub>3</sub>Receptor Agonists
Journal of Medicinal Chemistry 2008.0
Role of Hydrophobic Substituents on the Terminal Nitrogen of Histamine in Receptor Binding and Agonist Activity: Development of an Orally Active Histamine Type 3 Receptor Agonist and Evaluation of Its Antistress Activity in Mice
Journal of Medicinal Chemistry 2010.0
Novel pyrrolidinone derivative lacks claimed histamine H3 receptor stimulation in receptor binding and functional studies
European Journal of Medicinal Chemistry 2020.0
Homologs of Histamine as Histamine H3 Receptor Antagonists: A New Potent and Selective H3 Antagonist, 4(5)-(5-Aminopentyl)-1H-imidazole
Journal of Medicinal Chemistry 1995.0
Synthesis and in Vitro Pharmacology of a Series of New Chiral Histamine H<sub>3</sub>-Receptor Ligands:  2-(RandS)-Amino-3-(1H-imidazol-4(5)-yl)propyl Ether Derivatives
Journal of Medicinal Chemistry 1999.0
4-(3-Aminoazetidin-1-yl)pyrimidin-2-amines as High-Affinity Non-imidazole Histamine H<sub>3</sub> Receptor Agonists with in Vivo Central Nervous System Activity
Journal of Medicinal Chemistry 2019.0
Synthesis and structure–activity relationships of indole and benzimidazole piperazines as histamine H4 receptor antagonists
Bioorganic &amp; Medicinal Chemistry Letters 2004.0
Synthesis and Structure−Activity Relationships of Cyanoguanidine-Type and Structurally Related Histamine H<sub>4</sub>Receptor Agonists
Journal of Medicinal Chemistry 2009.0
Piperidine variations in search for non-imidazole histamine H3 receptor ligands
Bioorganic &amp; Medicinal Chemistry 2008.0
Triazole Ligands Reveal Distinct Molecular Features That Induce Histamine H<sub>4</sub> Receptor Affinity and Subtly Govern H<sub>4</sub>/H<sub>3</sub> Subtype Selectivity
Journal of Medicinal Chemistry 2011.0