Véronique Bennevault-Celton
Centre national de la recherche scientifique
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Featured researches published by Véronique Bennevault-Celton.
Australian Journal of Chemistry | 2012
Guillaume Pereira; Cécile Huin; Simona Morariu; Véronique Bennevault-Celton; Philippe Guégan
Synthesis of star polymers with a β-cyclodextrin (CD) core was undertaken using the arm-first, then the core-first strategy. Cationic ring opening polymerisation (CROP) of 2-methyl-2-oxazoline (MeOx) was first initiated by allyl bromide, and then quenched with heptakis(6-deoxy-6-amino)β-CD in order to get a 7-arm star polymer. Then heptakis(6-deoxy-6-iodo-2,3-di-O-acetyl)β-CD was synthesised in order to get an initiator for the CROP of MeOx. Initiation and propagation kinetic measurements were undertaken and the ratio kp/ki was found to be too high to provide a controlled polymerisation. Using iodine as co-initiator allowed a decrease of the kp/ki ratio that gave better control of the polymerisation. DOSY NMR and viscosity characterisations were undertaken, and both techniques lead to the demonstration of a lower hydrodynamic volume of the star polymers versus the linear counterparts, for compounds of the same molecular weight.
Carbohydrate Polymers | 2013
Cécile Huin; Zahra Eskandani; Nezha Badi; Aurica Farcas; Véronique Bennevault-Celton; Philippe Guégan
Anionic polymerization initiated by cyclodextrins suffers from a poor solubility of those derivatives in standard polymerization solvents. The possibility to perform ethylene oxide polymerization initiated by monofunctional initiators (allyl alcohol, 2-methoxyethanol) by living ring opening polymerization in DMF, a good solvent for any CD derivative, was demonstrated by SEC, (1)H and (13)C NMR analyses. The study was extended to the use of native CD as initiator, leading to the synthesis of ill-defined structures, explained by the reactivity scale of the various hydroxyl functions. Two selectively modified CD derivatives are then used to synthesize a new family of star-shaped poly(ethylene oxide) polymers with CD core, having 14 or 21 arms. The polymerization was found to be living and DOSY experiments confirmed the well-defined structures for the synthesized star-polymers.
Macromolecular Chemistry and Physics | 1998
Fabienne Duchemin; Véronique Bennevault-Celton; Hervé Cheradame; Anne Macedo
SUMMARY The cationic polymerization of 1,3-pentadiene initiated with aluminium chloride was studied in a non-polar solvent. Experiments carried out in the presence of 2,6-di-tert-butylpyridine (DtBP) clearly demonstrated that the major initiation process is the direct initiation mechanism, even though the existence of a cocatalytic mechanism to small extent cannot be rejected. This result is also evidenced by the linear dependence of the conversion on A1C13 concentration, and by experiments carried out in the presence of hydrogen chloride showing the independence of the polymerization yield on the hydrogen chloride concentration.
Biomacromolecules | 2015
Bazoly Rasolonjatovo; Jean-Pierre Gomez; William Même; Cristine Gonçalves; Cécile Huin; Véronique Bennevault-Celton; Tony Le Gall; Tristan Montier; Pierre Lehn; Hervé Cheradame; Patrick Midoux; Philippe Guégan
Block copolymers assembled into micelles have gained a lot of attention to improve drug delivery. The recent drawbacks of the poly(ethylene oxide) blocks (PEO) contained in amphiphilic pluronics derivatives made of a central poly(propylene oxide) block surrounded by two PEO blocks were recently revealed, opening the way to the design of new amphiphilic block copolymers able to self-assemble in water and to entrap molecules of interest. Here, a family of p(methyloxazoline)-b-p(tetrahydrofuran)-b-p(methyloxazoline) triblock copolymers (called TBCP) is synthesized using cationic ring opening polymerization. Studies of micelle formation using dynamic light scattering, isothermal titration calorimetry (ITC), NMR diffusion-ordered spectroscopy (DOSY), and fluorescence experiments lead us to draw a relationship between copolymer structure and the physicochemical properties of the block copolymers (critical micellar concentration (CMC), Nagg, core diameter, shell thickness, etc.). The packing parameter of the block copolymers indicates the formation of a core-corona structure. Hydrosolubilizing properties of TBCPs were exemplified with curcumin selected as a highly insoluble drug model. Curcumin, a natural polyphenolic compound, has shown a large spectrum of biological and pharmacological activity, including anti-inflammatory, antimicrobial, antioxidant, and anticarcinogenic activities. An optimized formulation process reveals that the aggregation number is the parameter affecting drug encapsulation. Patch clamp experiments carried out to study the interaction of TBCP with the cell membrane demonstrate their permeation property suitable to promote the cellular internalization of curcumin.
Macromolecules | 1998
Fabienne Duchemin; Véronique Bennevault-Celton; Hervé Cheradame; Claude Mérienne; Anne Macedo
Macromolecules | 2003
Marilyn Delfour; Véronique Bennevault-Celton; Hervé Cheradame; Florence Mercier; Nicole Barré
Macromolecular Chemistry and Physics | 2004
Véronique Bennevault-Celton; Marilyn Delfour; Hervé Cheradame
Polymer International | 2010
Véronique Bennevault-Celton; Olek Maciejak; Bernard Desmazieres; Hervé Cheradame
European Polymer Journal | 2009
Véronique Bennevault-Celton; Nezha Badi; Hervé Cheradame
Macromolecular Chemistry and Physics | 2004
Marilyn Delfour; Véronique Bennevault-Celton; Hung Anh Nguyen; Hervé Cheradame; Anne Macedo