Network


Latest external collaboration on country level. Dive into details by clicking on the dots.

Hotspot


Dive into the research topics where Giovanna Tedesco is active.

Publication


Featured researches published by Giovanna Tedesco.


Journal of Medicinal Chemistry | 2010

6-(3,4-Dichlorophenyl)-1-[(Methyloxy)methyl]-3-azabicyclo[4.1.0]heptane: A New Potent and Selective Triple Reuptake Inhibitor

Fabrizio Micheli; Paolo Cavanni; Daniele Andreotti; Roberto Arban; Roberto Benedetti; Barbara Bertani; Michela Bettati; Letizia Bettelini; Giorgio Bonanomi; Simone Braggio; Renzo Carletti; Anna Checchia; Mauro Corsi; Elettra Fazzolari; Stefano Fontana; Carla Marchioro; Emilio Merlo-Pich; Michele Negri; Beatrice Oliosi; Emiliangelo Ratti; Kevin D. Read; Maja Roščić; Ilaria Sartori; Simone Spada; Giovanna Tedesco; Luca Tarsi; Silvia Terreni; Filippo Visentini; Alessandro Zocchi; Laura Zonzini

A pharmacophore model for triple reuptake inhibitors and the new class of 1-(aryl)-6-[alkoxyalkyl]-3-azabicyclo[3.1.0]hexanes were recently reported. Further investigation in this area led to the identification of a new series of potent and selective triple reuptake inhibitors endowed with good developability characteristics. Excellent bioavailability and brain penetration are associated with this series of 6-(3,4-dichlorophenyl)-1-[(methyloxy)methyl]-3-azabicyclo[4.1.0]heptanes together with high in vitro potency and selectivity at SERT, NET, and DAT. In vivo microdialysis experiments in different animal models and receptor occupancy studies in rat confirmed that derivative 17 showed an appropriate profile to guarantee further progression of the compound.


Journal of Medicinal Chemistry | 2010

1,2,4-Triazolyl Azabicyclo[3.1.0]hexanes: A New Series of Potent and Selective Dopamine D3 Receptor Antagonists

Fabrizio Micheli; Luca Arista; Giorgio Bonanomi; Frank E. Blaney; Simone Braggio; Anna Maria Capelli; Anna Checchia; Federica Damiani; Romano Di-Fabio; Stefano Fontana; Gabriella Gentile; Cristiana Griffante; Dieter Hamprecht; Carla Marchioro; Manolo Mugnaini; Jacqui Piner; Emiliangelo Ratti; Giovanna Tedesco; Luca Tarsi; Silvia Terreni; Angela Worby; Charles R. Ashby; Christian Heidbreder

The discovery of new highly potent and selective dopamine (DA) D(3) receptor antagonists has recently allowed the characterization of the DA D(3) receptor in a range of preclinical animal models of drug addiction. A novel series of 1,2,4-triazol-3-yl-azabicyclo[3.1.0]hexanes, members of which showed a high affinity and selectivity for the DA D(3) receptor and excellent pharmacokinetic profiles, is reported here. Members of a group of derivatives from this series showed good oral bioavailability and brain penetration and very high in vitro affinity and selectivity for the DA D(3) receptor, as well as high in vitro potency for antagonism at this receptor. Several members of this series also significantly attenuate the expression of conditioned place preference (CPP) to nicotine and cocaine.


Journal of Medicinal Chemistry | 2010

1-(Aryl)-6-[alkoxyalkyl]-3-azabicyclo[3.1.0]hexanes and 6-(aryl)-6-[alkoxyalkyl]-3-azabicyclo[3.1.0]hexanes: a new series of potent and selective triple reuptake inhibitors.

Fabrizio Micheli; Paolo Cavanni; Roberto Arban; Roberto Benedetti; Barbara Bertani; Michela Bettati; Letizia Bettelini; Giorgio Bonanomi; Simone Braggio; Anna Checchia; Silvia Davalli; Romano Di Fabio; Elettra Fazzolari; Stefano Fontana; Carla Marchioro; Doug Minick; Michele Negri; Beatrice Oliosi; Kevin D. Read; Ilaria Sartori; Giovanna Tedesco; Luca Tarsi; Silvia Terreni; Filippo Visentini; Alessandro Zocchi; Laura Zonzini

The discovery of new highly potent and selective triple reuptake inhibitors is reported. The new classes of 1-(aryl)-6-[alkoxyalkyl]-3-azabicyclo[3.1.0]hexanes and 6-(aryl)-6-[alkoxyalkyl]-3-azabicyclo[3.1.0]hexanes are described together with detailed SAR. Appropriate decoration of the scaffolds was achieved with the help of a triple reuptake inhibitor pharmacophore model detailed here. Selected derivatives showed good oral bioavailability (>30%) and brain penetration (B/B > 4) in rats associated with high in vitro potency and selectivity at SERT, NET, and DAT. Among these compounds, microdialysis and in vivo experiments confirm that derivative 15 has an appropriate developability profile to be considered for further progression.


Journal of Medicinal Chemistry | 2010

Exploration of the amine terminus in a novel series of 1,2,4-triazolo-3-yl-azabicyclo[3.1.0]hexanes as selective dopamine D3 receptor antagonists.

Fabrizio Micheli; Luca Arista; Barbara Bertani; Simone Braggio; Anna Maria Capelli; Susanna Cremonesi; Romano Di-Fabio; Giacomo Gelardi; Gabriella Gentile; Carla Marchioro; Alessandra Pasquarello; Stefano Provera; Giovanna Tedesco; Luca Tarsi; Silvia Terreni; Angela Worby; Christian Heidbreder

A novel series of 1,2,4-triazol-3-yl-azabicyclo[3.1.0]hexanes with high affinity and selectivity for the DA D(3) receptor and excellent pharmacokinetic profiles was recently reported. We also recently discussed the role of the linker associated with the triazole moiety. In this manuscript, we are reporting a detailed exploration of the region of the receptor interacting with the amine terminus of the scaffold wherein SAR and developability data associated with these novel templates was undertaken.


Bioorganic & Medicinal Chemistry Letters | 2008

New fused benzazepine as selective D3 receptor antagonists. Synthesis and biological evaluation. Part one : [h]-fused tricyclic systems

Fabrizio Micheli; Giorgio Bonanomi; Simone Braggio; Anna Maria Capelli; Paolo Celestini; Federica Damiani; Romano Di Fabio; Daniele Donati; Stefania Gagliardi; Gabriella Gentile; Dieter Hamprecht; Marcella Petrone; Stefano Radaelli; Giovanna Tedesco; Silvia Terreni; Angela Worby; Christian Heidbreder

The synthesis and SAR of a new series of potent and selective dopamine D(3) receptor antagonists is reported. The introduction of a tricyclic [h]-fused benzazepine moiety on the recently disclosed scaffold of 1,2,4-triazol-3-yl-thiopropyl-tetrahydrobenzazepines is reported. A full rat pharmacokinetic characterization is also reported.


ChemMedChem | 2010

Triazolyl Azabicyclo[3.1.0]hexanes: a Class of Potent and Selective Dopamine D3 Receptor Antagonists

Giorgio Bonanomi; Simone Braggio; Anna Maria Capelli; Anna Checchia; Romano Di Fabio; Carla Marchioro; Luca Tarsi; Giovanna Tedesco; Silvia Terreni; Angela Worby; Christian Heibreder; Fabrizio Micheli

Herein we report a detailed description of the structure–activity relationships for a novel series of “C‐linked” 1,2,4‐triazolylazabicyclo[3.1.0]hexanes. These derivatives are endowed with very high in vitro affinity and selectivity for the dopamine D3 receptor. An optimization with respect to undesired affinity toward the hERG potassium channel is also reported. Members of this compound series also show excellent in vitro and in vivo pharmacokinetic properties.


ChemMedChem | 2010

Oxa-azaspiro derivatives: a novel class of triple re-uptake inhibitors.

Michela Bettati; Paolo Cavanni; Romano Di Fabio; Beatrice Oliosi; Ornella Perini; Gunther Scheid; Giovanna Tedesco; Laura Zonzini; Fabrizio Micheli

Drugs able to interfere with either the uptake or the metabolism of endogenous monoamines have been used for many years to treat depression. The first drugs of this type, such as the monoamine oxidase (MAO) inhibitors and the tricyclic antidepressants, achieved wide diffusion in the market, but are unfortunately associated with side effects that may influence patient compliance. Over the last few years, compounds acting through the selective blockade of neurotransmitter re-uptake have demonstrated their efficacy as successful antidepressant agents. This blockade can take place in either serotoninergic neurons (SSRI ; e.g. , paroxetine) or noradrenergic neurons (SNRI ; e.g. , reboxetine). Moreover, drugs known as “dual uptake” inhibitors, which act on both serotoninergic and noradrenergic transporters (e.g. , venlafaxine) or on both noradrenergic and dopaminergic transporters (e.g. , bupropion), have also demonstrated good efficacy.


Bioorganic & Medicinal Chemistry Letters | 2008

New fused benzazepine as selective D3 receptor antagonists. Synthesis and biological evaluation. Part 2 : [g]-Fused and hetero-fused systems

Fabrizio Micheli; Giorgio Bonanomi; Simone Braggio; Anna Maria Capelli; Federica Damiani; Romano Di Fabio; Daniele Donati; Gabriella Gentile; Dieter Hamprecht; Ornella Perini; Marcella Petrone; Giovanna Tedesco; Silvia Terreni; Angela Worby; Christian Heidbreder

The synthesis and the SAR of a new series of potent and selective dopamine D(3) receptor antagonists is reported. The new scaffolds of the [g]-fused and the hetero-fused tricyclic benzazepine are here reported together with their pharmacokinetic profile.


Bioorganic & Medicinal Chemistry | 2011

Synthesis and structure-activity relationship of new 1,5-dialkyl-1,5-benzodiazepines as cholecystokinin-2 receptor antagonists.

Karen Roberts; Antonella Ursini; Robert J. Barnaby; Paolo G Cassara; Mauro Corsi; Giovanni Curotto; Daniele Donati; Aldo Feriani; Gabriella Finizia; Carla Marchioro; Daniela Niccolai; Beatrice Oliosi; Stefano Polinelli; Emiliangelo Ratti; Angelo Reggiani; Giovanna Tedesco; Maria Elvira Tranquillini; David G. Trist; Franciscus T.M. van Amsterdam

This article deals with the synthesis and the activities of some 1,5-dialkyl-3-arylureido-1,5-benzodiazepin-2,4-diones which were prepared as potential CCK2 antagonists, with the intention to find a possible follow up of our lead compound GV150013, showing an improved pharmacokinetic profile. The phenyl ring at N-5 was replaced with more hydrophilic substituents, like alkyl groups bearing basic functions. In some cases, the resolution of the racemic key intermediates 3-amino-benzodiazepines was also accomplished. Among the compounds synthesized and characterised so far in this class, the 5-morpholinoethyl derivative 54, was selected as potential follow up of GV150013 and submitted for further evaluation.


Bioorganic & Medicinal Chemistry Letters | 2011

Identification of novel NK1/NK3 dual antagonists for the potential treatment of schizophrenia.

Maria Pia Catalani; Giuseppe Alvaro; Giovanni Bernasconi; Ezio Bettini; Steven Mark Bromidge; Jag Paul Heer; Giovanna Tedesco; Simona Tommasi

During the lead optimization of NK(1)/NK(3) receptor antagonists program, a focused exploration of molecules bearing a lactam moiety was performed. The aim of the investigation was to identify the optimal position of the carbonyl and hydroxy methyl group in the lactam moiety, in order to maximize the in vitro affinity and the level of insurmountable antagonism at both NK(1) and NK(3) receptors. The synthesis and biological evaluation of these novel lactam derivatives, with potent and balanced NK(1)/NK(3) activity, were reported in this paper.

Collaboration


Dive into the Giovanna Tedesco's collaboration.

Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar

Luca Arista

University of California

View shared research outputs
Researchain Logo
Decentralizing Knowledge