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Dive into the research topics where Jean Herscovici is active.

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Featured researches published by Jean Herscovici.


Journal of Gene Medicine | 2010

Comparative gene transfer between cationic and thiourea lipoplexes

Marie Breton; Jeanne Leblond; Johanne Seguin; Patrick Midoux; Daniel Scherman; Jean Herscovici; Chantal Pichon; Nathalie Mignet

We have previously developed lipopolythiourea lipids as neutral DNA condensing agents for systemic gene delivery. Optimization of the lipopolythiourea structure led to efficient transfecting agents. To further evaluate these lipids, we investigated the internalization process of the thiourea lipoplexes and their intracellular mechanism of transfection versus that of cationic lipoplexes.


Carbohydrate Research | 2002

Synthesis of 3-C-(6-O-acetyl-2,3,4-tri-O-benzyl-α-d-mannopyranosyl)-1-propene: a caveat ☆

Christian Girard; Marie-Laure Miramon; Tanguy de Solminihac; Jean Herscovici

Abstract During the preparation of 3- C -(6- O -acetyl-2,3,4-tri- O -benzyl-α- d -mannopyranosyl)-1-propene, using a published Sakurai-type reaction on the parent methyl glycoside, some observations were made on the sensitivity to reaction conditions that were not previously reported. This Note presents the study of this allylation reaction followed by acetolysis, which ultimately led to the best conditions to obtain the C -glycoside, and on further transformations to yield the corresponding aldehydic and acidic derivatives.


Nucleosides, Nucleotides & Nucleic Acids | 2005

New Short Route to Unsaturated Fluoroketonucleosides: Case of 5-Fluoro-1-(6-O-Acetyl-3,4-Di-Deoxy-3-Fluoro-β-d-Glycero-Hex-3-Eno-Pyranos-2-Ulosyl) Uracil

Marie-José Egron; Dimitri Komiotis; Ismet Dorange; Jean Herscovici; Abraham P. Ollapally; Kostas Antonakis

The proposed short synthesis involves two key steps: Oxidation of the isopropylidene derivative of the 3-fluoronucleoside possessing a free hydroxyl group in 2-position and acetylation of deprotected 3-fluoro-2-ketonucleoside which, after a β-elimination reaction, gives the desired unsaturated ketonucleoside 5.


Biophysical Chemistry | 2009

Iminothiol/thiourea tautomeric equilibrium in thiourea lipids impacts DNA compaction by inducing a cationic nucleation for complex assembly.

Marie Breton; Michel Bessodes; Serge Bouaziz; Jean Herscovici; Daniel Scherman; Nathalie Mignet

Our research on lipidic vectors for transfection led us to develop thiourea lipids able to interact with DNA. Hence, we developed a series of lipopolythioureas based on the strong hydrogen bond donor ability of thiourea. More recently we have reported a branched hydroxylated bis-thiourea derivative with interesting transfecting properties. The last step of the syntheses involved a strong acidic condition, leading to an unstable product upon storage. Therefore we designed a new synthesis in mild acidic conditions. Though they exhibit the same mass, the lipids obtained in the two different conditions differ by their interaction with DNA. We therefore explored the physicochemical properties of these two lipids by different means that we describe in this article. In order to insure easier and reliable (13)C-NMR studies of the thiourea group we have designed the synthesis of the corresponding (13)C-labeled thiourea lipids. We have thus shown that when the lipid was submitted to mildly acidic medium; only the thiourea group was observed; while a thiourea/charged and/or uncharged iminothiol tautomeric equilibrium formed when the last step of the synthesis was submitted to low pH. NMR experiments showed that this tautomeric equilibrium could not form in polar solvents. However, UV experiments on the liposomal form of the lipopolythiourea showed the presence of the tautomers. Lipid/DNA interaction consequently differed according to the acidic treatment applied. Eventually, these results revealed that on this particular thiourea lipid, electrostatic interactions due to cationic thioureas are likely to be responsible for DNA compaction and that this tautomeric form of the thiourea could be stabilised by hydrogen bonds in a supramolecular assembly. Nevertheless, this does not reflect a general thiourea lipid/DNA interaction as other thiourea lipids that are able to compact DNA do not undergo an acidic treatment during the final stage of their synthesis.


Tetrahedron Letters | 2008

Copper(I)-doped Wyoming’s montmorillonite for the synthesis of disubstituted 1,2,3-triazoles

Ibtissem Jlalia; Hichem Elamari; Faouzi Meganem; Jean Herscovici; Christian Girard


Tetrahedron Letters | 2011

Chemoselective preparation of disymmetric bistriazoles from bisalkynes

Hichem Elamari; Faouzi Meganem; Jean Herscovici; Christian Girard


Bioorganic & Medicinal Chemistry Letters | 2005

Sialyl Lewisx analogs based on a quinic acid scaffold as the fucose mimic

Christian Girard; Jennifer Dourlat; Aline Savarin; Christine Surcin; Stefanie Leue; Virginie Escriou; Céline Largeau; Jean Herscovici; Daniel Scherman


Archive | 2001

Process for preparing functionalized polyalkyleneimines, compositions containing them and uses thereof

Françoise Leclercq; Jean Herscovici; Daniel Scherman


Tetrahedron-asymmetry | 2010

On the reactivity of activated alkynes in copper and solvent-free Huisgen’s reaction

Hichem Elamari; Ibtissem Jlalia; Charlotte Louet; Jean Herscovici; Faouzi Meganem; Christian Girard


Archive | 2002

Lipid derivatives of polythiourea

Jean Herscovici; Daniel Scherman; Isabelle Tranchant; Nathalie Mignet; Christian Girard

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Daniel Scherman

Paris Descartes University

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Nathalie Mignet

Paris Descartes University

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Marie Breton

Paris Descartes University

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Michel Bessodes

Paris Descartes University

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Françoise Leclercq

Centre national de la recherche scientifique

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