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Dive into the research topics where Michele Mari is active.

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Featured researches published by Michele Mari.


Journal of Organic Chemistry | 2013

Synthesis of (−)-Epi-Indolactam V by an Intramolecular Buchwald–Hartwig C–N Coupling Cyclization Reaction

Michele Mari; Francesca Bartoccini; Giovanni Piersanti

The synthetic efforts toward the concise synthesis of (-)-indolactam V from simple and commercially available starting materials using palladium- and copper-catalyzed intramolecular N-arylation strategy for the elaboration of the requisite nine-membered lactam ring as the key step are described. The incorporation of a turn-inducing structural element along the linear precursor was fundamental to achieve the heterocyclization step as well as obtain the correct regio- and chemoselectivity. The stereoselective nature in the C-N coupling cyclization reaction is interpreted in terms of minimization of allylic strain at the transition state for the palladium-amido complex formation. Meanwhile, the synthesis of the (-)-epi-indolactam V and its enantiomer have been accomplished.


Journal of Organic Chemistry | 2014

Synthesis of (±)-cis-Clavicipitic Acid by a Rh(I)-Catalyzed Intramolecular Imine Reaction

Francesca Bartoccini; Mariangela Casoli; Michele Mari; Giovanni Piersanti

A new and short synthesis of racemic cis-clavicipitic acid was achieved by taking advantage of the double nucleophilic character of indole-4-pinacolboronic ester. Key to the success of the synthesis were an efficient and selective C-3 indole Friedel-Crafts alkylation and the development of an unprecedented intramolecular rhodium-catalyzed 1,2-addition of an aryl pinacolboronic ester to an unactivated imine.


Journal of Medicinal Chemistry | 2015

Highly Potent and Selective MT2 Melatonin Receptor Full Agonists from Conformational Analysis of 1-Benzyl-2-acylaminomethyl-tetrahydroquinolines

Gilberto Spadoni; Annalida Bedini; Simone Lucarini; Michele Mari; Daniel-Henri Caignard; Jean A. Boutin; Philippe Delagrange; Valeria Lucini; Francesco Scaglione; Alessio Lodola; Franca Zanardi; Daniele Pala; Marco Mor; Silvia Rivara

Molecular superposition models guided the design of novel melatonin receptor ligands characterized by a 2-acylaminomethyltetrahydroquinoline scaffold. Starting from the structure of N-anilinoethylamide ligands, the flexible chain was conformationally constrained to reproduce the bioactive conformation of melatonin. Structure-activity relationships were investigated, focusing on the substituent at the nitrogen atom, the position of the methoxy group, and the replacement of the amide side chain by urea and thiourea groups. The compounds were tested for binding affinity and intrinsic activity at human MT1 and MT2 receptors. Structural optimization resulted in N-[(1-benzyl-1,2,3,4-tetrahydro-5-methoxyquinolin-2-yl)methyl]propionamide (UCM1014), with picomolar MT2 binding affinity (K(i) = 0.001 nM), more than 10000-fold selectivity over the MT1 receptor, and a full agonist profile (GTPγS test), being the most potent MT2-selective full agonist reported to date. Molecular dynamics simulations provided a rationale for high binding affinity, stereoselectivity, and agonist behavior of these novel melatonin receptor ligands based on superposition models and conformational preference.


Beilstein Journal of Organic Chemistry | 2014

Synthesis of 2-substituted tryptophans via a C3- to C2-alkyl migration

Michele Mari; Simone Lucarini; Francesca Bartoccini; Giovanni Piersanti; Gilberto Spadoni

Summary The reaction of 3-substituted indoles with dehydroalanine (Dha) derivatives under Lewis acid-mediated conditions has been investigated. The formation of 2-substituted tryptophans is proposed to occur through a selective alkylative dearomatization–cyclization followed by C3- to C2-alkyl migration and rearomatization.


RSC Advances | 2013

Organocatalyzed coupling of indoles with dehydroalanine esters: synthesis of bis(indolyl)propanoates and indolacrylates

Simone Lucarini; Michele Mari; Giovanni Piersanti; Gilberto Spadoni

Functionalized and substituted bis(indolyl)alkanes were synthesized from indoles and dehydroalanine esters in the presence of catalytic amounts of Bronsted acid. When 2- or 4-bulky substituted indoles were used, unusual elimination occurred to yield interesting indolyl acrylates.


Organic and Biomolecular Chemistry | 2016

A simple, modular synthesis of C4-substituted tryptophan derivatives

Francesca Bartoccini; Silvia Bartolucci; Michele Mari; Giovanni Piersanti

The modular and versatile synthesis of C4-substituted tryptophan derivatives by direct functionalization of easily available N-acetyl 4-boronate tryptophan methyl ester via transition metal-catalyzed and metal-mediated cross coupling reactions is described. The versatility of the chemistry is highlighted by the gram-scale synthesis of 4-boronated N-acetyl-tryptophan methyl ester and the rapid synthesis of C4-aryl, C4-alkyl, C4-cyano, C4-trifluoromethyl, C4-azido, and C4-hydroxy tryptophan derivatives. The utility of our methodology is illustrated through the quick approach to the tricyclic azepino indole skeleton embedded in many natural products.


Journal of Organic Chemistry | 2017

Iron-Catalyzed Direct C3-Benzylation of Indoles with Benzyl Alcohols through Borrowing Hydrogen

Giovanni Di Gregorio; Michele Mari; Francesca Bartoccini; Giovanni Piersanti

We present the coupling of primary and secondary benzyl alcohols with indoles to form 3-benzylated indoles and H2O that is catalyzed, for the first time, by a complex of earth-abundant iron. This transformation accommodates a variety of substrates and is distinguished by its operational simplicity, sustainability, high functional-group tolerance, and amenability to gram-scale synthesis. On the basis of the preliminary experimental observations, we propose that the reaction proceeds through a borrowing hydrogen process.


Organic chemistry frontiers | 2018

Divergent reactions of oxindoles with amino alcohols via the borrowing hydrogen process: oxindole ring opening vs. C3 alkylation

Giovanni Di Gregorio; Michele Mari; Silvia Bartolucci; Francesca Bartoccini; Giovanni Piersanti

Oxindoles display a diverse pattern of reactivity upon reaction with different classes of amino alcohols via the borrowing hydrogen process. Whereas the reaction with N-acetyl amino alcohols leads to C3 alkylation, the reaction with N-alkyl amino alcohols results in the formation of synthetically useful α-aryl-lactams via a remarkably facile oxindole ring-opening reaction. Reactions occurred with quantitative conversion and selectivity under relatively mild reaction conditions.


Journal of Organic Chemistry | 2018

Organocatalytic Aza-Friedel–Crafts/Lactonization Domino Reaction of Naphthols and Phenols with 2-Acetamidoacrylate to Naphtho- and Benzofuranones Bearing a Quaternary Center at the C3 Position

Francesca Bartoccini; Michele Mari; Michele Retini; Silvia Bartolucci; Giovanni Piersanti

N-Acetyl ketimine generated from methyl 2-acetamidoacrylate was explored to develop an unprecedented domino aza-Friedel-Crafts/lactonization reaction with naphthols and phenols (including 5-hydroxyindoles). This novel method requires a catalyst loading of only 5 mol % of a phosphoric acid catalyst and provides a new series of 3-NHAc-naphtho- and benzofuranone derivatives bearing tetra-substituted stereogenic centers in moderate-to-good yields. The enantioselective variant using BINOL-derived phosphoric acids was also explored with 1-naphthol, providing the desired product with moderate enantioselectivities (up to 99:1 following recrystallization).


Journal of Medicinal Chemistry | 2018

Identification of Bivalent Ligands with Melatonin Receptor Agonist and Fatty Acid Amide Hydrolase (FAAH) Inhibitory Activity That Exhibit Ocular Hypotensive Effect in the Rabbit

Gilberto Spadoni; Annalida Bedini; Lucia Furiassi; Michele Mari; Marco Mor; Laura Scalvini; Alessio Lodola; Andrea Ghidini; Valeria Lucini; S. Dugnani; Francesco Scaglione; Daniele Piomelli; Kwang-Mook Jung; Claudiu T. Supuran; Laura Lucarini; Mariaconcetta Durante; Silvia Sgambellone; Emanuela Masini; Silvia Rivara

Activation of melatonin receptors and inhibition of fatty acid amide hydrolase (FAAH) have both shown potential benefits for the treatment of glaucoma. To exploit the combination of these biological activities in single therapeutic agents, we designed dual-acting compounds sharing the pharmacophore elements required for the two targets, in search for balanced potencies as MT1/MT2 agonists and FAAH inhibitors. In particular, the N-anilinoethylamide scaffold, previously developed for melatonergic ligands, was decorated at meta position with a polymethylene linker bound to an O-arylcarbamate group, substituted according to known structure-activity relationships for FAAH inhibition. For the most active series, the N-anilinoethylamide portion was also replaced with the indole scaffold of melatonin. O-Biphenyl-3-ylcarbamate derivatives were characterized by remarkable and balanced activity at both targets, in the nanomolar range for compound 29. Topical administration reduced elevated intraocular pressure in rabbits, with a longer action and improved efficacy compared to the reference compounds melatonin and URB597.

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Alessio Lodola

Chiesi Farmaceutici S.p.A.

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