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Pharmacological Evaluation of Novel Bioisosteres of an Adamantanyl Benzamide P2X7 Receptor Antagonist

Authors :
David E. Hibbs
Stephen J. Fuller
James O'Brien-Brown
Leanne Stokes
Michael Kassiou
Melissa L. Barron
Kristen K. Skarratt
Danielle J. Vugts
Eryn L. Werry
Mansoor Chishty
Albert D. Windhorst
Shane M. Wilkinson
Jennifer Ong
Bieneke Janssen
Amsterdam Neuroscience - Brain Imaging
Radiology and nuclear medicine
Source :
ACS Chemical Neuroscience, 8(11), 2374-2380. American Chemical Society, Wilkinson, S M, Barron, M L, O'Brien-Brown, J, Janssen, B, Stokes, L, Werry, E L, Chishty, M, Skarratt, K K, Ong, J A, Hibbs, D E, Vugts, D J, Fuller, S, Windhorst, A D & Kassiou, M 2017, ' Pharmacological Evaluation of Novel Bioisosteres of an Adamantanyl Benzamide P2X 7 Receptor Antagonist ', ACS Chemical Neuroscience, vol. 8, no. 11, pp. 2374-2380 . https://doi.org/10.1021/acschemneuro.7b00272
Publication Year :
2017

Abstract

Adamantanyl benzamide 1 was identified as a potent P2X7R antagonist but failed to progress further due to poor metabolic stability. We describe the synthesis and SAR of a series of bioisosteres of benzamide 1 to explore improvements in the pharmacological properties of this lead. Initial efforts investigated a series of heteroaromatic bioisosteres, which demonstrated improved physicochemical properties but reduced P2X7R antagonism. Installation of bioisosteric fluorine on the adamantane bridgeheads was well tolerated and led to a series of bioisosteres with improved physicochemical properties and metabolic stability. Trifluorinated benzamide 34 demonstrated optimal physicochemical parameters, superior metabolic stability (ten times longer than lead benzamide 1), and an improved physicokinetic profile and proved effective in the presence of several known P2X7R polymorphisms.

Details

Language :
English
ISSN :
19487193
Volume :
8
Issue :
11
Database :
OpenAIRE
Journal :
ACS Chemical Neuroscience
Accession number :
edsair.doi.dedup.....51e25e9511494084bb5f07b005c53217
Full Text :
https://doi.org/10.1021/acschemneuro.7b00272