Literature DB >> 25766632

Synthesis and biological evaluation of spirocyclic antagonists of CCR2 (chemokine CC receptor subtype 2).

Ann Kathrin Strunz1, Annelien J M Zweemer2, Christina Weiss3, Dirk Schepmann1, Anna Junker1, Laura H Heitman2, Michael Koch3, Bernhard Wünsch4.   

Abstract

Activation of chemokine CC receptors subtype 2 (CCR2) plays an important role in chronic inflammatory processes such as atherosclerosis, multiple sclerosis and rheumatoid arthritis. A diverse set of spirocyclic butanamides 4 (N-benzyl-4-(3,4-dihydrospiro[[2]benzopyran-1,4'-piperidin]-1'-yl)butanamides) was prepared by different combination of spirocyclic piperidines 8 (3,4-dihydrospiro[[2]benzopyran-1,4'-piperidines]) and γ-halobutanamides 11. A key step in the synthesis of spirocyclic piperidines 8 was an Oxa-Pictet-Spengler reaction of β-phenylethanols 5 with piperidone acetal 6. The substituted γ-hydroxybutanamides 11c-e were prepared by hydroxyethylation of methyl acetates 13 with ethylene sulfate giving the γ-lactones 14c and 14e. Aminolysis of the γ-lactones 14c and 14e with benzylamines provided the γ-hydroxybutanamides 15c-e, which were converted into the bromides 11c-e by an Appel reaction using polymer-bound PPh3. In radioligand binding assays the spirocyclic butanamides 4 did not displace the iodinated radioligand (125)I-CCL2 from the human CCR2. However, in the Ca(2+)-flux assay using human CCR2 strong antagonistic activity of butanamides 4 was detected. Analysis of the IC50-values led to clear relationships between the structure and the inhibition of the Ca(2+)-flux. 4g (4-(3,4-dihydrospiro[[2]benzopyran-1,4'-piperidin]-1'-yl)-N-[3,5-bis(trifluoromethylbenzyl)]-2-(4-fluorophenyl)butanamide) and 4o (N-[3,5-bis(trifluoromethyl)benzyl]-2-cyclopropyl-4-(3,4-dihydrospiro[[2]benzopyran-1,4'-piperidin]-1'-yl)butanamide) represent the most potent CCR2 antagonists with IC50-values of 89 and 17nM, respectively. Micromolar activities were found in the β-arrestin recruitment assay with murine CCR2, but the structure-activity-relationships detected in the Ca(2+)-flux assay were confirmed.
Copyright © 2015 Elsevier Ltd. All rights reserved.

Entities:  

Keywords:  Appel reaction; Ca(2+) flux; Chemokine CC receptor subtype 2 (CCR2) antagonists; Ethylene sulfate; Oxa-Pictet–Spengler reaction; Polymer-bound triphenylphosphine; Receptor binding studies; Spirocyclic piperidines; Structure–activity-relationships; β-Arrestin recruitment

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Year:  2015        PMID: 25766632     DOI: 10.1016/j.bmc.2015.02.019

Source DB:  PubMed          Journal:  Bioorg Med Chem        ISSN: 0968-0896            Impact factor:   3.641


  2 in total

1.  A unique ligand-steered strategy for CC chemokine receptor 2 homology modeling to facilitate structure-based virtual screening.

Authors:  Hongwei Jin; Jie Xia; Zhenming Liu; Xiang Simon Wang; Liangren Zhang
Journal:  Chem Biol Drug Des       Date:  2021-01-16       Impact factor: 2.817

2.  Development of the First Potential Nonpeptidic Positron Emission Tomography Tracer for the Imaging of CCR2 Receptors.

Authors:  Stefan Wagner; Fernando de Moura Gatti; Daniel G Silva; Natalia V Ortiz Zacarias; Annelien J M Zweemer; Sven Hermann; Monica De Maria; Michael Koch; Christina Weiss; Dirk Schepmann; Laura H Heitman; Nuska Tschammer; Klaus Kopka; Anna Junker
Journal:  ChemMedChem       Date:  2020-11-23       Impact factor: 3.466

  2 in total

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