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Biochemical and pharmacological characterization of AZD1981, an orally available selective DP2antagonist in clinical development for asthma

Authors :
Akos Heinemann
Jerzy Schmidt
I.A. Dainty
C Marshall
Carol Sargent
Elizabeth Claire Akam
FM Bell
Roger Bonnert
Iain G. Dougall
Source :
British Journal of Pharmacology. 168:1626-1638
Publication Year :
2013
Publisher :
Wiley, 2013.

Abstract

Background and Purpose The discovery of DP2 as a second receptor for PGD2 has prompted the search for antagonists as potential novel therapies based on the associations between PGD2 and disease. Here we describe the biochemical and pharmacological properties of 4-(acetylamino)-3-[(4-chlorophenyl)thio]-2-methyl-1H-indole-1-acetic acid (AZD1981), a novel DP2 receptor antagonist. Experimental Approach Binding to DP2, functional receptor pharmacology and selectivity were studied in both human and animal systems. Key Results AZD1981 displaced radio-labelled PGD2 from human recombinant DP2 with high potency (pIC50 = 8.4). Binding was reversible, non-competitive and highly selective against a panel of more than 340 other enzymes and receptors, including DP1 (>1000-fold selective). AZD1981 inhibited DP2-mediated shape change and CD11b up-regulation in human eosinophils, shape change in basophils and chemotaxis of human eosinophils and Th2 cells with similar potency. AZD1981 exhibited good cross-species binding activity against mouse, rat, guinea pig, rabbit and dog DP2. Evaluation in mouse, rat or rabbit cell systems was not possible as they did not respond to DP2 agonists. Agonist responses were seen in guinea pig and dog, and AZD1981 blocked DP2-mediated eosinophil shape change. Such responses were more robust in the guinea pig, where AZD1981 also blocked DP2-dependent eosinophil emigration from bone marrow. Conclusions and Implications AZD1981 is a DP2 antagonist that blocks functional responses in eosinophils, Th2 cells and basophils. It exhibited similar potency irrespective of the cell type, DP2 agonist or species used. This selective orally active agent is currently under clinical evaluation as a potential therapeutic agent in respiratory diseases including asthma.

Details

ISSN :
00071188
Volume :
168
Database :
OpenAIRE
Journal :
British Journal of Pharmacology
Accession number :
edsair.doi...........ddd95b29d9f6026870c06581a6fb9e40