14 resultats trouvés
Auteur Titre Type [ Année
Filtres: Auteur est Serratrice, Guy [Clear All Filters]
Exploring the Interaction of N/S Compounds with a Dicopper Center: Tyrosinase Inhibition and Model Studies.,
, Inorg. Chem., Volume 53, Number 24, p.12848–12858, (2014)
Probing kojic acid binding to tyrosinase enzyme: insights from a model complex and QM/MM calculations.,
, Chem. Commun. (Cambridge, United Kingdom), Volume 50, Number 3, p.308–310, (2014)
Unsymmetrical Binding Modes of the HOPNO Inhibitor of Tyrosinase: From Model Complexes to the Enzyme.,
, Chem. - A Eur. J., Volume 19, Number 11, p.3655–3664, (2013)
Glycosiderophores: Synthesis of tris-hydroxamate siderophores based on a galactose or glycero central scaffold, Fe(III) complexation studies.,
, J. Inorg. Biochem., Volume 112, p.59–67, (2012)
The Versatile Binding Mode of Transition-State Analogue Inhibitors of Tyrosinase towards Dicopper(II) Model Complexes: Experimental and Theoretical Investigations.,
, Chem. - A Eur. J., Volume 17, Number 48, p.13482–13494, S13482/1–S13482/19, (2011)
Synthetic approaches for iron type chelators.,
, Mini. Rev. Org. Chem., Volume 7, Number 2, p.125–133, (2010)
From molecular to nanostructured iron complexes of amphiphilic chelators based on 8-hydroxyquinoline subunits - evidence of self-assembled edifices mimicking siderophores from marine bacteria.,
, Eur. J. Inorg. Chem., Number 1, p.86–92, (2009)
Oxinobactin, a siderophore analogue to enterobactin involving 8-hydroxyquinoline subunits: Synthesis and iron binding ability.,
, Bioorg. Med. Chem. Lett., Volume 18, Number 24, p.6476–6478, (2008)
Vesicles to concentrate iron in low-iron media: an attempt to mimic marine siderophores.,
, Chem. - A Eur. J., Volume 14, Number 12, p.3680–3686, (2008)
Abiotic chelators and iron acquisition in living organisms: From molecular iron(III) chelators to self-assembled nanostructures.,
, Comptes Rendus Chim., Volume 10, Number 7, p.613–621, (2007)
Iron-citrate complexes and free radicals generation: is citric acid an innocent additive in foods and drinks?.,
, BioMetals, Volume 20, Number 5, p.793–796, (2007)
Iron(III) exchange process between hexadentate tripodal ligands: models for the ternary complexes.,
, Eur. J. Inorg. Chem., Number 23, p.3681–3685, (2007)
Design of Iron chelators: Syntheses and iron (III) complexing abilities of tripodal tris-bidentate ligands.,
, BioMetals, Volume 19, Number 4, p.349–366, (2006)
Host-guest interaction between cyclen based macrotricyclic ligands and phosphate anions. A potentiometric investigation.,
, Dalt. Trans., Number 28, p.3418–3426, (2006)