Cyril B. Dousson
AstraZeneca
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Publication
Featured researches published by Cyril B. Dousson.
Journal of Medicinal Chemistry | 2011
François-René Alexandre; Agnès Amador; Stéphanie Bot; Catherine Caillet; Thierry Convard; Jocelyn Jakubik; Chiara Musiu; Barbara Poddesu; Luana Vargiu; Michel Liuzzi; Arlène Roland; Maria Seifer; David Standring; Richard Storer; Cyril B. Dousson
A novel series of 3-aryl-phospho-indole (API) non-nucleoside reverse transcriptase inhibitors of HIV-1 was developed. Chemical variation in the phosphorus linker led to the discovery of 3-phenyl-methyl-phosphinate-2-carboxamide 14, which possessed excellent potency against wild-type HIV-1 as well as viruses bearing K103N and Y181C single mutants in the reverse transcriptase gene. Chiral separation of the enantiomers showed that only R enantiomer retained the activity. The pharmacokinetic, solubility, and metabolic properties of 14 were assessed.
Journal of Medicinal Chemistry | 2016
Cyril B. Dousson; François-René Alexandre; Agnès Amador; Séverine Bonaric; Stéphanie Bot; Catherine Caillet; Thierry Convard; Daniel Da Costa; Marie-Pierre Lioure; Arlène Roland; Elodie Rosinovsky; Sébastien Maldonado; Christophe Claude Parsy; Christophe Trochet; Richard Storer; Alistair Stewart; Jingyang Wang; Benjamin Alexander Mayes; Chiara Musiu; Barbara Poddesu; Luana Vargiu; Michel Liuzzi; Adel M. Moussa; Jocelyn Jakubik; Luke Hubbard; Maria Seifer; David Standring
Here, we describe the design, synthesis, biological evaluation, and identification of a clinical candidate non-nucleoside reverse transcriptase inhibitors (NNRTIs) with a novel aryl-phospho-indole (APhI) scaffold. NNRTIs are recommended components of highly active antiretroviral therapy (HAART) for the treatment of HIV-1. Since a major problem associated with NNRTI treatment is the emergence of drug resistant virus, this work focused on optimization of the APhI against clinically relevant HIV-1 Y181C and K103N mutants and the Y181C/K103N double mutant. Optimization of the phosphinate aryl substituent led to the discovery of the 3-Me,5-acrylonitrile-phenyl analogue RP-13s (IDX899) having an EC50 of 11 nM against the Y181C/K103N double mutant.
Bioorganic & Medicinal Chemistry Letters | 2016
Claire Pierra Rouvière; Agnès Amador; Eric Badaroux; Thierry Convard; Daniel Da Costa; David Dukhan; Ludovic Griffe; Jean-François Griffon; Massimiliano LaColla; Frédéric Leroy; Michel Liuzzi; Anna Giulia Loi; Joe McCarville; Julien Milhau; Loredana Onidi; Jean-Laurent Paparin; Rachid Rahali; Efisio Sais; Maria Seifer; Dominique Surleraux; David Standring; Cyril B. Dousson
The hepatitis C virus (HCV) NS5B RNA-dependent RNA polymerase (RdRp) plays a central role in virus replication. NS5B has no functional equivalent in mammalian cells and, as a consequence, is an attractive target for selective inhibition. This Letter describes the discovery of a new family of HCV NS5B non-nucleoside inhibitors, based on the bioisosterism between amide and phosphonamidate functions. As part of this program, SAR in this new series led to the identification of IDX17119, a potent non-nucleoside inhibitor, active on the genotypes 1b, 2a, 3a and 4a. The structure and binding domain of IDX17119 were confirmed by X-ray co-crystallization study.
Bioorganic & Medicinal Chemistry Letters | 2017
Jean-Laurent Paparin; Agnès Amador; Eric Badaroux; Stéphanie Bot; Catherine Caillet; Thierry Convard; Daniel Da Costa; David Dukhan; Ludovic Griffe; Jean-François Griffon; Massimiliano LaColla; Frédéric Leroy; Michel Liuzzi; Anna Giulia Loi; Joe McCarville; Julien Milhau; Loredana Onidi; Claire Pierra; Rachid Rahali; Elodie Rosinosky; Efisio Sais; Maria Seifer; Dominique Surleraux; David Standring; Cyril B. Dousson
Hepatitis C virus (HCV) NS5B RNA-dependent RNA polymerase (RdRp) plays a central role in virus replication. NS5B has no functional equivalent in mammalian cells, and as a consequence is an attractive target for selective inhibition. This paper describes the discovery of a novel family of HCV NS5B non-nucleoside inhibitors inspired by the bioisosterism between sulfonamide and phosphonamide. Systematic structural optimization in this new series led to the identification of IDX375, a potent non-nucleoside inhibitor that is selective for genotypes 1a and 1b. The structure and binding domain of IDX375 were confirmed by X-ray co-crystalisation study.
Journal of Medicinal Chemistry | 2007
Andrew Austen Mortlock; Kevin Michael Foote; Nicola Murdoch Heron; Frederic Henri Jung; Georges Pasquet; Jean-Jacques Marcel Lohmann; Nicolas Warin; Fabrice Renaud; Chris De Savi; Nicola J. Roberts; Trevor Johnson; Cyril B. Dousson; George B. Hill; David Perkins; Glenn Hatter; R. Wilkinson; Stephen R. Wedge; Simon P. Heaton; Rajesh Odedra; Nicholas Keen; Claire Crafter; Elaine Brown; Katherine Thompson; Stephen Brightwell; Liz Khatri; Madeleine C. Brady; Sarah Kearney; David McKillop; Steve Rhead; and Tony Parry
Journal of Medicinal Chemistry | 2006
Frederic Henri Jung; Georges Pasquet; Christine Lambert-van der Brempt; Jean-Jacques Marcel Lohmann; Nicolas Warin; Fabrice Renaud; Hervé Germain; Chris De Savi; Nicola J. Roberts; Trevor Johnson; Cyril B. Dousson; George B. Hill; Andrew Austen Mortlock; Nicola Murdoch Heron; R. Wilkinson; Stephen R. Wedge; Simon P. Heaton; Rajesh Odedra; Nicholas Keen; Stephen J. Green; Elaine Brown; Katherine Thompson; Stephen Brightwell
Archive | 2010
Cyril B. Dousson; David Dukhan; Christophe Claude Parsy; Claire Pierra; Francois-Rene Alexandre; Guillaume Brandt; Daniel Da Costa; Houcine Rahali; Jean-Laurent Paparin; Michel Derock; Thierry Convard; Dominique Surleraux
Archive | 2013
Christophe Claude Parsy; Francois-Rene Alexandre; Cyril B. Dousson; David Dukhan; Claire Pierra; Dominique Surleraux; Benjamin Alexander Mayes; Adel M. Moussa; Alistair James Stewart
Archive | 2007
Richard Storer; Francois-Rene Alexandre; Cyril B. Dousson; Adel M. Moussa; Edward G. Bridges; Alistair Stewart; Jingyang Wang; Benjamin Alexander Mayes
Archive | 2013
Adel M. Moussa; Benjamin Alexander Mayes; Cyril B. Dousson; David Dukhan