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A versatile liposome/cyclodextrin supramolecular carrier for drug delivery through the blood-brain barrier
Authors:Cécile Machut-Binkowski  Frédéric Hapiot  Roméo Cecchelli  Patrick Martin  Eric Monflier
Institution:(1) Laboratoire de Physico-Chimie des Interfaces et Applications, FRE CNRS 2485, Fédération Chevreul FR CNRS 2638, Faculté des Sciences Jean Perrin, Université d’Artois, rue Jean Souvraz, SP 18-62307 Lens Cédex, France;(2) Laboratoire de la Barrière Hémato-Encéphalique, Faculté des Sciences Jean Perrin, Université d’Artois, rue Jean Souvraz, SP 18-62307 Lens Cédex, France
Abstract:For many commercial drugs, reaching the central nervous system in large amount without damaging the blood-brain-barrier (BBB) remains a challenging task. We present here a supramolecular strategy aiming at using a well-defined cyclodextrin-coated liposomes as drug carrier and adamantoyl saccharides as BBB-interacting ligands. In this study, the liposome is constituted of n-alkyldimethylammoniumcyclodextrins incorporated in the lipid bilayer of a 3/7 cholesterol/dipalmitoylphosphatidylcholine mixture and the ligand is constituted of an adamantoylglucose molecule whose adamantoyl moiety can be included in the CD cavity. The whole supramolecular assembly has been characterized by light-scattering and 31P NMR measurements. Toxicity and permeability studies on an in vitro model of the BBB clearly demonstrated a 5-fold improved ability of the modified liposome to enter the BBB-endothelial cells compared to the non-coated liposome. Fluorescence labelling of these liposomes is also displayed with DiI as a fluorescent probe.
Keywords:Blood-brain-barrier  Cyclodextrin  Drug delivery  In vitro model  Liposome  Saccharide  Supramolecular chemistry
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