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  1. Pubblicazioni

Protection of dopamine towards autoxidation reaction by encapsulation into non-coated- or chitosan- or thiolated chitosan-coated-liposomes

Articolo
Data di Pubblicazione:
2018
Abstract:
The aim of this work is to evaluate the potential of non-coated-, chitosan-(CS)- or chitosan-glutathione conjugate- (CS-GSH)-coated liposomes to protect the neurotransmitter Dopamine (DA) from the autoxidation reaction in neutral/alkaline conditions. This may be of interest in the development of nanotechnology-based approaches to improve Parkinson’s disease treatment because decreased ROS production and reduced DA associated neurotoxicity areexpected. For the mentioned purposes, DA-loaded vesicles were preparedby the Dried Reconstituted Vesicles (DRV) method, and were subsequently coated using solutions of polycations. As for the mean diameters of liposomes so prepared, the CS-GSH coated liposomes showed a significant decrease in size compared to the corresponding non-coated and CS-coated vesicles. The surface charge of DA-loaded non-coated liposomes was −10.8mV, whereas the CS or CS-GSH coated vesicles showed a slightly positive ζ-potential. The capability of the herein studied vesicles to prevent DA autoxidation was evaluated by visual inspection, monitoring DA/lipid ratio as such and under stressed conditions. The results suggest that liposome formulations partially protect the neurotransmitter from the autoxidation reaction. In particular, the CS-GSH coated liposomes were more stable than the corresponding CS-coated and non-coated ones against the oxidative damage and were found to deliver the neurotransmitter in a sustained manner.Probably,thisisduetothelocalizationoftheneurotransmitterinthecoreofthevesiclesasindicatedby XPS which confirmed the absence of the neurotransmitter on the surface of these vesicles.
Tipologia CRIS:
1.1 Articolo in rivista
Keywords:
Dopamine Autoxidation reaction Non-coated and coated liposomes Physical and oxidative stability XPS
Elenco autori:
Trapani, A.; Mandracchia, D.; Tripodo, G.; Cometa, S.; Cellamare, S.; De Giglio, E.; Klepetsanis, P.; Antimisiaris, S. G.
Autori di Ateneo:
MANDRACCHIA DELIA
Link alla scheda completa:
https://iris.unibs.it/handle/11379/530048
Pubblicato in:
COLLOIDS AND SURFACES. B, BIOINTERFACES
Journal
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