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Featured researches published by Emiliano Rosatelli.


Journal of Medicinal Chemistry | 2009

Discovery of 6α-ethyl-23(S)-methylcholic Acid (S-EMCA, INT-777) as a potent and selective agonist for the TGR5 receptor, a novel target for diabesity.

Roberto Pellicciari; Antimo Gioiello; Antonio Macchiarulo; Charles Thomas; Emiliano Rosatelli; Benedetto Natalini; Roccaldo Sardella; Mark Pruzanski; Aldo Roda; Elisabetta Pastorini; Kristina Schoonjans; Johan Auwerx

In the framework of the design and development of TGR5 agonists, we reported that the introduction of a C(23)(S)-methyl group in the side chain of bile acids such as chenodeoxycholic acid (CDCA) and 6-ethylchenodeoxycholic acid (6-ECDCA, INT-747) affords selectivity for TGR5. Herein we report further lead optimization efforts that have led to the discovery of 6alpha-ethyl-23(S)-methylcholic acid (S-EMCA, INT-777) as a novel potent and selective TGR5 agonist with remarkable in vivo activity.


Expert Opinion on Therapeutic Patents | 2012

Patented TGR5 modulators: a review (2006 - present).

Antimo Gioiello; Emiliano Rosatelli; Roberto Nuti; Antonio Macchiarulo; Roberto Pellicciari

Introduction: The G protein-coupled receptor TGR5 is a key player of the bile acid signaling network, and its activation has been proved to increase the glycemic control, to enhance energy expenditure and to exert anti-inflammatory actions. Accordingly, TGR5 ligands have emerged in drug discovery and preclinical appraisals as promising agents for the treatment of liver diseases, metabolic syndrome and related disorders. Areas covered: Recent advances in the field of TGR5 modulators are reviewed, with a particular attention on patent applications and peer-reviewed publications in the past 6 years. Expert opinion: Activation of TGR5 showed to protect mice from diabesity and insulin resistance, to improve liver functions, as well as to attenuate the development of atherosclerosis. However, although the efficacy of TGR5 agonists in mice is encouraging, further studies are needed to determine their potential in humans and to evaluate carefully the balance between the therapeutic benefits and adverse effects associated with the target. The development of new TGR5 selective ligands to support studies in animal models will surely facilitate the understanding of the complexity of TGR5 signaling network.


Journal of Chemical Information and Modeling | 2008

Molecular field analysis and 3D-quantitative structure-activity relationship study (MFA 3D-QSAR) unveil novel features of bile acid recognition at TGR5

Antonio Macchiarulo; Antimo Gioiello; Charles Thomas; Alberto Massarotti; Roberto Nuti; Emiliano Rosatelli; Paola Sabbatini; Kristina Schoonjans; Johan Auwerx; Roberto Pellicciari

Bile acids regulate nongenomic actions through the activation of TGR5, a membrane receptor that is G protein-coupled to the induction of adenylate cyclase. In this work, a training set of 43 bile acid derivatives is used to develop a molecular interaction field analysis (MFA) and a 3D-quantitative structure-activity relationship study (3D-QSAR) of TGR5 agonists. The predictive ability of the resulting model is evaluated using an external set of compounds with known TGR5 activity, and six bile acid derivatives whose unknown TGR5 activity is herein assessed with in vitro luciferase assay of cAMP formation. The results show a good predictive model and indicate a statistically relevant degree of correlation between the TGR5 activity and the molecular interaction fields produced by discrete positions of the bile acid scaffold. This information is instrumental to extend on a quantitative basis the current structure-activity relationships of bile acids as TGR5 modulators and will be fruitful to design new potent and selective agonists of the receptor.


ACS Combinatorial Science | 2013

Building a sulfonamide library by eco-friendly flow synthesis.

Antimo Gioiello; Emiliano Rosatelli; Michela Teofrasti; Paolo Filipponi; Roberto Pellicciari

A rapid and eco-friendly synthesis of a sulfonamide library under flow conditions is described. The study illustrates an efficient, safe, and easily scalable preparation of sulfonamides by use of a meso-reactor apparatus, thus demonstrating the impact of flow technologies within drug discovery. Waste minimization, employment of green media, and nontoxic reactants are achieved by the optimization of the flow setup and experimental protocol designed to sequentially synthesize primary, secondary, and tertiary sulfonamides. Isolation of the products involves only extraction and precipitation affording pure compounds in good to high yields without further purification for biological evaluation.


Bioorganic & Medicinal Chemistry | 2012

Pyrazole[3,4-e][1,4]thiazepin-7-one derivatives as a novel class of Farnesoid X Receptor (FXR) agonists

Maura Marinozzi; Andrea Carotti; Emanuele Sansone; Antonio Macchiarulo; Emiliano Rosatelli; Roccaldo Sardella; Benedetto Natalini; Giovanni Rizzo; Luciano Adorini; Daniela Passeri; Francesca De Franco; Mark Pruzanski; Roberto Pellicciari

A virtual screening procedure was applied to the discovery of structurally diverse non-steroidal Farnesoid X Receptor (FXR) agonists. From 117 compounds selected by virtual screening, a total of 47 compounds were found to be FXR agonists, with 34 of them showing activity below a concentration of 20 μM. 1H-Pyrazole[3,4-e][1,4]thiazepin-7-one-based hit compound 7 was chosen for hit-to-lead optimization. A large number of 1H-pyrazole[3,4-e][1,4]thiazepin-7-one derivatives was designed, synthesized, and evaluated by a cell-based luciferase transactivation assay for their agonistic activity against FXR. Most of them exhibited low micromolar range of potency and very high efficacy.


Bioorganic & Medicinal Chemistry Letters | 2014

Flow synthesis and biological activity of aryl sulfonamides as selective carbonic anhydrase IX and XII inhibitors

Emiliano Rosatelli; Andrea Carotti; Mariangela Ceruso; Claudiu T. Supuran; Antimo Gioiello

A series of secondary and tertiary aryl sulfonamides were synthesized under flow conditions and evaluated for their ability to selectively inhibit tumor-associated carbonic anhydrase isoforms IX and XII. The tested compounds revealed to be highly potent CA IX inhibitors in nanomolar range, and to inhibit CA XII activity with different ranks of potencies. Remarkably, 4-methyl-N-phenyl-benzenesulfonamide was a selective nanomolar CA IX inhibitor with an IC50 of 90 nM.


Bioorganic & Medicinal Chemistry | 2015

Structure activity relationship of selective GABA uptake inhibitors.

Stine B. Vogensen; Lars N. Jorgensen; Karsten K. Madsen; Andreas Jurik; Nrupa Borkar; Emiliano Rosatelli; Birgitte Nielsen; Gerhard F. Ecker; Arne Schousboe; Rasmus P. Clausen

A series of β-amino acids with lipophilic diaromatic side chain was synthesized and characterized pharmacologically on mouse γ-amino butyric acid (GABA) transporter subtypes mGAT1-4 in order to investigate structure activity relationships (SAR) for mGAT2 (corresponding to hBGT-1). Variation in the lipophilic diaromatic side chain was probed to understand the role of the side chain for activity. This yielded several selective compounds of which the best (1R,2S)-5a was more than 10 fold selective towards other subtypes, although potency was moderate. A docking study was performed to investigate possible binding modes of the compounds in mGAT2 suggesting a binding mode similar to that proposed for Tiagabine in hGAT1. Specific interactions between the transporter and the amino acid part of the ligands may account for a reverted preference towards mGAT2 over mGAT1.


Tetrahedron | 2011

Divergent and stereoselective synthesis of dafachronic acids

Antimo Gioiello; Paola Sabbatini; Emiliano Rosatelli; Antonio Macchiarulo; Roberto Pellicciari


Steroids | 2012

Novel stereoselective synthesis and chromatographic evaluation of E-guggulsterone.

Antimo Gioiello; Roccaldo Sardella; Emiliano Rosatelli; Bahman M. Sadeghpour; Benedetto Natalini; Roberto Pellicciari


Analytical and Bioanalytical Chemistry | 2011

Fast chromatographic determination of the bile salt critical micellar concentration

Benedetto Natalini; Roccaldo Sardella; Antimo Gioiello; Emiliano Rosatelli; Federica Ianni; Emidio Camaioni; Roberto Pellicciari

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Johan Auwerx

École Polytechnique Fédérale de Lausanne

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Kristina Schoonjans

École Polytechnique Fédérale de Lausanne

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