Carmelida Capaldi
University of Bari
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Publication
Featured researches published by Carmelida Capaldi.
Journal of Medicinal Chemistry | 2014
Elisabetta Armani; Gabriele Amari; Andrea Rizzi; Renato De Fanti; Eleonora Ghidini; Carmelida Capaldi; Laura Carzaniga; Paola Caruso; Matilde Guala; Ilaria Peretto; Elena La Porta; Pier Tonino Bolzoni; Fabrizio Facchinetti; Chiara Carnini; Nadia Moretto; Riccardo Patacchini; Franco Bassani; Valentina Cenacchi; Roberta Volta; Francesco Amadei; Silvia Capacchi; Maurizio Delcanale; Paola Puccini; Silvia Catinella; Maurizio Civelli; Gino Villetti
The first steps in the selection process of a new anti-inflammatory drug for the inhaled treatment of asthma and chronic obstructive pulmonary disease are herein described. A series of novel ester derivatives of 1-(3-(cyclopropylmethoxy)-4-(difluoromethoxy)phenyl)-2-(3,5-dichloropyridin-4-yl) ethanol have been synthesized and evaluated for inhibitory activity toward cAMP-specific phosphodiesterase-4 (PDE4). In particular, esters of variously substituted benzoic acids were extensively explored, and structural modification of the alcoholic and benzoic moieties were performed to maximize the inhibitory potency. Several compounds with high activity in cell-free and cell-based assays were obtained. Through the evaluation of opportune in vitro ADME properties, a potential candidate suitable for inhaled administration in respiratory diseases was identified and tested in an in vivo model of pulmonary inflammation, proving its efficacy.
Journal of Medicinal Chemistry | 2017
Laura Carzaniga; Gabriele Amari; Andrea Rizzi; Carmelida Capaldi; Renato De Fanti; Eleonora Ghidini; Gino Villetti; Chiara Carnini; Nadia Moretto; Fabrizio Facchinetti; Paola Caruso; Gessica Marchini; Loredana Battipaglia; Riccardo Patacchini; Valentina Cenacchi; Roberta Volta; Francesco Amadei; Alice Pappani; Silvia Capacchi; Valentina Bagnacani; Maurizio Delcanale; Paola Puccini; Silvia Catinella; Maurizio Civelli; Elisabetta Armani
Phosphodiesterase 4 (PDE4) is a key cAMP-metabolizing enzyme involved in the pathogenesis of inflammatory disease, and its pharmacological inhibition has been shown to exert therapeutic efficacy in chronic obstructive pulmonary disease (COPD). Herein, we describe a drug discovery program aiming at the identification of novel classes of potent PDE4 inhibitors suitable for pulmonary administration. Starting from a previous series of benzoic acid esters, we explored the chemical space in the solvent-exposed region of the enzyme catalytic binding pocket. Extensive structural modifications led to the discovery of a number of heterocycloalkyl esters as potent in vitro PDE4 inhibitors. (S*,S**)-18e and (S*,S**)-22e, in particular, exhibited optimal in vitro ADME and pharmacokinetics properties and dose-dependently counteracted acute lung eosinophilia in an experimental animal model. The optimal biological profile as well as the excellent solid-state properties suggest that both compounds have the potential to be effective topical agents for treating respiratory inflammatory diseases.
Journal of Medicinal Chemistry | 2007
Francesco Leonetti; Carmelida Capaldi; Leonardo Pisani; Orazio Nicolotti; Giovanni Muncipinto; Angela Stefanachi; Saverio Cellamare; Carla Caccia; Angelo Carotti
Tetrahedron Letters | 2007
Francesco Leonetti; Carmelida Capaldi; Angelo Carotti
Archive | 2017
Carmelida Capaldi; Elisabetta Armani; Gabriele Amari; Laura Carzaniga; Oriana Esposito
Archive | 2017
Carmelida Capaldi; Jonathan Mark Sutton; Nicholas Charles Ray; Robert Heald
Archive | 2017
Carmelida Capaldi; Elena La Porta; Elisabetta Armani; Gabriele Amari; Laura Carzaniga; Matilde Guala
Archive | 2017
Andrea Rizzi; Robert Heald; Jonathan Mark Sutton; Carmelida Capaldi; Elisabetta Armani
Archive | 2017
Elisabetta Armani; Gabriele Amari; Carmelida Capaldi; Charles Baker-Glenn
Archive | 2016
Lilian Alcaraz; Jonathan Mark Sutton; Elisabetta Armani; Carmelida Capaldi