Thi Minh Nguyet Trinh
University of Strasbourg
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Publication
Featured researches published by Thi Minh Nguyet Trinh.
New Journal of Chemistry | 2016
Fabien Stauffert; Anne Bodlenner; Thi Minh Nguyet Trinh; M. Isabel García-Moreno; Carmen Ortiz Mellet; Jean-François Nierengarten; Philippe Compain
The synthesis of the first examples of multivalent C-glycosides based on C60-fullerene or β-cyclodextrin cores by way of Cu(I)-catalyzed azide–alkyne cycloadditions is reported. These compounds were designed as molecular probes to understand the mechanisms underlying the outstanding multivalent effects observed in glycosidase inhibition. The inhibition results obtained support a multivalent-binding model based on two scenarios both involving nonspecific interactions and varying by the presence or the absence of active site specific interactions. The magnitude of the multivalent effect obtained depends on the identity of the glycosidase involved and more specifically on the accessibility of its catalytic active site. Large inhibitory multivalent effects can be obtained when both glycosidase active sites and non-catalytic sites at the protein surface are involved in binding events. On the other hand, nonspecific interactions alone are not sufficient to achieve relative affinity enhancements exceeding a simple statistical effect (i.e., a relative inhibition potency not better than one on a valence-corrected basis).
Chemistry: A European Journal | 2015
Thi Minh Nguyet Trinh; Iwona Nierengarten; Michel Holler; Jean-Louis Gallani; Jean-François Nierengarten
Amphiphilic pillar[5]arene-containing [2]rotaxanes have been prepared and fully characterized. In the particular case of the [2]rotaxane incorporating a 1,4-diethoxypillar[5]arene subunit, the structure of the compound was confirmed by X-ray crystal structure analysis. Owing to a good hydrophilic/hydrophobic balance, stable Langmuir films have been obtained for these rotaxanes and the size of the peripheral alkyl chains on the pillar[5]arene subunit has a dramatic influence on the reversibility during compression-decompression cycles. Indeed, when these are small enough, molecular reorganization of the rotaxane by gliding motions are capable of preventing strong π-π interactions between neighboring macrocycles in the thin film.
Journal of Materials Chemistry B | 2017
Thi Minh Nguyet Trinh; Michel Holler; Jérémy P. Schneider; M. Isabel García-Moreno; José M. García Fernández; Anne Bodlenner; Philippe Compain; Carmen Ortiz Mellet; Jean-François Nierengarten
An ultra-fast synthetic procedure based on grafting of twelve fullerene macromonomers onto a fullerene hexa-adduct core was used for the preparation of a giant molecule with 120 peripheral iminosugar residues. The inhibition profile of this giant iminosugar ball was evaluated against various glycosidases. In the particular case of the Jack bean α-mannosidase, a dramatic enhancement of the glycosidase inhibitory effect was observed for the giant molecule with 120 peripheral subunits as compared to that of the corresponding mono- and dodecavalent model compounds.
Chemistry: A European Journal | 2018
Jean-François Nierengarten; Jérémy P. Schneider; Thi Minh Nguyet Trinh; Antoine Joosten; Michel Holler; Mathieu L. Lepage; Anne Bodlenner; M. Isabel García-Moreno; Carmen Ortiz Mellet; Philippe Compain
The multivalent effect in glycosidase inhibition is a new topic in glycoscience that has emerged a few years ago, with the discovery of neoglycoclusters displaying strong binding enhancements over the corresponding monovalent inhibitor. Iminosugar-fullerene conjugates with high valencies have been prepared from iminosugar-terminated dendrons and a clickable fullerene hexa-adduct scaffold. The simultaneous grafting of twelve dendrons allows for a very fast dendritic growth thus limiting the number of synthetic steps required to prepare compounds with a high number of peripheral units. The grafting of first- and second-generation dendrons provided fullerodendrimers surrounded by 36 and 108 peripheral iminosugars, respectively. Inhibition studies have been carried out with a panel of glycosidases. In the particular case of Jack bean α-mannosidase, the 108-valent nanoconstruct displays inhibition in the nanomolar range and an additional binding enhancement of one order of magnitude when compared to the 36-valent analogues.
Chemistry: A European Journal | 2018
Béatrice Delavaux-Nicot; Haifa Ben Aziza; Iwona Nierengarten; Thi Minh Nguyet Trinh; Eric Meichsner; Matthieu Chessé; Michel Holler; Rym Abidi; Emmanuel Maisonhaute; Jean-François Nierengarten
A sophisticated photoactive molecular device has been prepared by combining recent concepts for the preparation of multifunctional nanomolecules (click chemistry on multifunctional scaffolds) with supramolecular chemistry (self-assembly to prepare rotaxanes). Specifically, a clickable [2]rotaxane scaffold incorporating a free-base porphyrin stopper has been prepared and functionalized with ten peripheral Zn(II)-porphyrin moieties. Electrochemical investigations of the final compound revealed a peculiar behavior resulting from the intramolecular coordination of the Zn(II) porphyrin moieties to 1,2,3-triazole units. Finally, steady state investigations of the compound combining Zn(II) and free-base porphyrin moieties have shown that this compound is a light-harvesting device capable of channeling the light energy from the peripheral Zn(II)-porphyrin subunits to the core by singlet-singlet energy transfer.
Chemistry: A European Journal | 2018
Marie Steffenhagen; Alina Latus; Thi Minh Nguyet Trinh; Iwona Nierengarten; Ivan T. Lucas; Suzanne Joiret; Jessem Landoulsi; Béatrice Delavaux-Nicot; Jean-François Nierengarten; Emmanuel Maisonhaute
A rotaxane scaffold incorporating two dithiolane anchoring units for the modification of gold surfaces has been functionalized with multiple copies of a redox unit, namely ferrocene. Surface modification has been first assessed at the single molecule level by atomic force microscopy (AFM) and scanning tunneling microscopy (STM) imaging, while tip enhanced Raman spectroscopy (TERS) provided the local vibrational signature of the ferrocenyl subunits of the rotaxanes grafted onto the gold surface. Finally, oxidation of the redox moieties within a rotaxane scaffold grafted onto gold microelectrodes has been investigated by ultrafast cyclic voltammetry. Intramolecular electron hopping is indeed extremely fast in this system. Moreover, the kinetics of charge injection depends on the molecular coverage due to the influence of intermolecular contacts on molecular motions.
European Journal of Organic Chemistry | 2015
Radian Milev; Alberto Lopez-Pacheco; Iwona Nierengarten; Thi Minh Nguyet Trinh; Michel Holler; Robert Deschenaux; Jean-François Nierengarten
Tetrahedron Letters | 2013
Sebastiano Guerra; Thi Minh Nguyet Trinh; Franck Schillinger; Lucie Muhlberger; David Sigwalt; Michel Holler; Jean-François Nierengarten
European Journal of Organic Chemistry | 2015
Thi Minh Nguyet Trinh; Thanh Tung Nguyen; Cyril Kopp; Pauline Pieper; Virginie Russo; Benoît Heinrich; Bertrand Donnio; Thi Le Anh Nguyen; Robert Deschenaux
Chemistry: A European Journal | 2017
Thi Minh Nguyet Trinh; Iwona Nierengarten; Haifa Ben Aziza; Eric Meichsner; Michel Holler; Matthieu Chessé; Rym Abidi; Christian Bijani; Yannick Coppel; Emmanuel Maisonhaute; Béatrice Delavaux-Nicot; Jean-François Nierengarten