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Dive into the research topics where Sandrine Chambon is active.

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Featured researches published by Sandrine Chambon.


Bioorganic & Medicinal Chemistry Letters | 2017

Identification of novel TACE inhibitors compatible with topical application.

Gilles Ouvry; Yaël Berton; Yushma Bhurruth-Alcor; Laetitia Bonnary; Claire Bouix-Peter; Karine Bouquet; Marilyne Bourotte; Sandrine Chambon; Catherine Comino; Benoit Deprez; Denis Duvert; Gwenaëlle Duvert; Feriel Hacini-Rachinel; Craig S. Harris; Anne-Pascale Luzy; Arnaud Mathieu; Corinne Millois; Jonathan Pascau; Artur Pinto; Gaëlle Polge; Arnaud Reitz; Kevin Reversé; Carine Rosignoli; Nathalie Taquet; Laurent F. Hennequin

Targeting the Tumor Necrosis Factor α signalling with antibodies has led to a revolution in the treatment of psoriasis. Locally inhibiting Tumor Necrosis Factor α Converting Enzyme (TACE or ADAM17) could potentially mimic those effects and help treat mild to moderate psoriasis, without the reported side effect of systemic TACE inhibitors. Efforts to identify new TACE inhibitors are presented here. Enzymatic SAR as well as ADME and physico-chemistry data are presented. This study culminated in the identification of potent enzymatic inhibitors. Suboptimal cellular activity of this series is discussed in the context of previously published results.


Journal of Medicinal Chemistry | 2018

Rational Drug Design of Topically Administered Caspase 1 Inhibitors for the Treatment of Inflammatory Acne

Jean-François Fournier; Laurence Clary; Sandrine Chambon; Laurence Dumais; Craig S. Harris; Corinne Millois; Romain Pierre; Sandrine Talano; Etienne Thoreau; Jérôme Aubert; Michèle Aurelly; Claire Bouix-Peter; Anne Brethon; Laurent Chantalat; Olivier Christin; Catherine Comino; Ghizlane El-Bazbouz; Anne-Laurence Ghilini; Tatiana Isabet; Claude Lardy; Anne-Pascale Luzy; Céline Mathieu; Kenny Mebrouk; Danielle Orfila; Jonathan Pascau; Kevin Reversé; Didier Roche; Vincent Rodeschini; Laurent F. Hennequin

The use of an interleukin β antibody is currently being investigated in the clinic for the treatment of acne, a dermatological disorder affecting 650M persons globally. Inhibiting the protease responsible for the cleavage of inactive pro-IL1β into active IL-1β, caspase-1, could be an alternative small molecule approach. This report describes the discovery of uracil 20, a potent (38 nM in THP1 cells assay) caspase-1 inhibitor for the topical treatment of inflammatory acne. The uracil series was designed according to a published caspase-1 pharmacophore model involving a reactive warhead in P1 for covalent reversible inhibition and an aryl moiety in P4 for selectivity against the apoptotic caspases. Reversibility was assessed in an enzymatic dilution assay or by using different substrate concentrations. In addition to classical structure-activity-relationship exploration, topical administration challenges such as phototoxicity, organic and aqueous solubility, chemical stability in solution, and skin metabolic stability are discussed and successfully resolved.


Bioorganic & Medicinal Chemistry Letters | 2018

Structure-based design of Trifarotene (CD5789), a potent and selective RARγ agonist for the treatment of acne

Etienne Thoreau; Jean-Marie Arlabosse; Claire Bouix-Peter; Sandrine Chambon; Laurent Chantalat; Sebastien Daver; Laurence Dumais; Gwenaëlle Duvert; A. Feret; Gilles Ouvry; Jonathan Pascau; Catherine Raffin; Nicolas Rodeville; Catherine Soulet; Samuel Tabet; Sandrine Talano; Thibaud Portal

Retinoids have a dominant role in topical acne therapy and to date, only RARβ and RARγ dual agonists have reached the market. Given the tissue distribution of RAR isoforms, it was hypothesized that developing RARγ -selective agonists could yield a new generation of topical acne treatments that would increase safety margins while maintaining the robust efficacy of previous drugs. Structural knowledge derived from the X-ray structure of known γ-selective CD437, suggested the design of a novel triaryl series of agonists which was optimized and ultimately led to the discovery of Trifarotene/CD5789.


Archive | 2010

Novel benzenesulfonamide compounds, method for synthesizing same, and use thereof in medicine as well as in cosmetics

Laurence Clary; Sandrine Chambon; Laurent Chantalat; Carine Rosignoli; Olivier Roye; Jean-Claude Pascal; Marlène Schuppli


Tetrahedron Letters | 2016

A facile and rapid preparation of hydroxamic acids by hydroxylaminolysis using DBU as base

Audrey Beillard; Yushma Bhurruth-Alcor; Claire Bouix-Peter; Karinne Bouquet; Sandrine Chambon; Laurence Clary; Craig S. Harris; Corinne Millois; Grégoire Mouis; Gilles Ouvry; Romain Pierre; Arnaud Reitz; Loïc Tomas


Bioorganic & Medicinal Chemistry Letters | 2018

Structure-based design of Trifarotene (CD5789), a potent and selective RAR gamma agonist for the treatment of acne.

Etienne Thoreau; Jean-Marie Arlabosse; Claire Bouix-Peter; Sandrine Chambon; Laurent Chantalat; Sebastien Daver; Laurence Dumais; Gwenaëlle Duvert; A. Feret; Gilles Ouvry; Jonathan Pascau; Catherine Raffin; Nicolas Rodeville; Catherine Soulet; Samuel Tabet; Sandrine Talano; Thibaud Portal


Archive | 2009

3-phenyl acrylic acid compound activators of type PPAR receptors and pharmaceutical/cosmetic compositions comprised thereof

Jean-Guy Boiteau; Laurence Clary; Jean-Claude Pascal; Sandrine Chambon


Tetrahedron Letters | 2016

An efficient multi-component synthesis of N-1-alkylated 5-nitrouracils from α-amino acids

Jean-Guy Boiteau; Claire Bouix-Peter; Sandrine Chambon; Laurence Clary; Sebastien Daver; Laurence Dumais; Jean-François Fournier; Craig S. Harris; Kenny Mebrouk; Corinne Millois; Romain Pierre; Nicolas Rodeville; Sandrine Talano; Loïc Tomas


Archive | 2010

N- [2-hydroxycarbamoyl-2- (piperazinyl) ethyl] benzamide compounds, their preparation and their use as tace inhibitors

Sandrine Chambon; Laurence Clary; Marlène Schuppli


Tetrahedron Letters | 2018

N-3 alkylation of uracils with unprotected amino alcohols using the Mitsunobu reaction

Guillaume Lafitte; Audrey Beillard; Sandrine Chambon; Catherine Soulet; Laurence Dumais; Grégoire Mouis; Jean-François Fournier; Laurence Clary; Claire Bouix-Peter; Loic Tomas; Craig S. Harris

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