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Photo-physical and structural interactions between viologen phosphorus-based dendrimers and human serum albumin
Authors:Karol Ciepluch  Nadia Katir  Abdelkrim El Kadib  Monika Weber  Anne-Marie Caminade  Mostapha Bousmina  Jean Pierre Majoral  Maria Bryszewska
Affiliation:1. Department of General Biophysics, University of Lodz, 141/143 Pomorska St., 90-236 Lodz, Poland;2. Laboratoire de Chimie de Coordination du CNRS (LCC), 205 route de Narbonne, F-31077 Toulouse cedex 4, France;3. Institute of Nanomaterials and Nanotechnology (INANOTECH)-MAScIR (Moroccan Foundation for Advanced Science, Innovation and Research), ENSET, Avenue de l''Armée Royale, Madinat El Irfane, 10100 Rabat, Morocco;4. Hassan II Academy of Sciences and Technology, Avenue MVI, Km4, 10220 Rabat, Morocco
Abstract:
This work deals with photo-physical and structural interactions between viologen phosphorus dendrimers and human serum albumin (HSA). Viologens are derivatives of 4,4′-bipyridinium salts. Aiming to rationalize the parameters governing such interactions eight types of these polycationic dendrimers in which the generation, the number of charges, the nature of the core and of the terminal groups vary from one to another, were designed and used. The influence of viologen-based dendrimers' on human serum albumin has been investigated. The photo-physical interactions of the two systems have been monitored by fluorescence quenching of free l-tryptophan and of HSA tryptophan residue. Additionally, using circular dichroism (CD) the effect of dendrimers on the secondary structure of albumin was measured. The obtained results show that viologen dendrimers interact with human serum albumin quenching its fluorescence either by collisional (dynamic) way or by forming complexes in a ground state (static quenching). In some cases the quenching is accompanied by changes of the secondary structure of HSA.
Keywords:
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