The aim of the current study was to improve the knowledge of drug-glycol-phospholipid-interactions and their effects in lamellar vesicle suitability as drug delivery systems. Liposomes were prepared using hydrogenated soy phosphatidylcholine (P90H, 60. mg/ml) and diclofenac sodium salt at two concentrations (5-10. mg/ml). To obtain innovative vesicles two permeation enhancers with glycol group, diethyleneglycol monoethyl ether and propylene glycol, were added to the water phase at different ratios (5%, 10%, and 20%).Vesicle organization was deeply investigated by physico-chemical characterization, including differential scanning calorimetry and small-angle diffraction signal analysis while macroscopic structure behavior was evaluated by rheological studies. Results evidenced that the presence of the penetration enhancer and diclofenac sodium salt led to structural rearrangements within and among vesicles forming a tridimensional and complex architecture in which vesicles were closely packed and interconnected. This new design allowed a change in the physical state of dispersions that became highly viscous liquid or soft-solid-like, thus forming an ideal system for topical application able of both adhering to the skin and delivering the drug. © 2013 Elsevier B.V.

Ines, C., Maria Letizia, M., Matricardi, P., Chiara, S., Sandrina, L., Fernàndez Busquets, X., et al. (2013). Effect of diclofenac and glycol intercalation on structural assembly of phospholipid lamellar vesicles. INTERNATIONAL JOURNAL OF PHARMACEUTICS, 456(1), 1-9 [10.1016/j.ijpharm.2013.08.034].

Effect of diclofenac and glycol intercalation on structural assembly of phospholipid lamellar vesicles

MATRICARDI, PIETRO
;
2013-01-01

Abstract

The aim of the current study was to improve the knowledge of drug-glycol-phospholipid-interactions and their effects in lamellar vesicle suitability as drug delivery systems. Liposomes were prepared using hydrogenated soy phosphatidylcholine (P90H, 60. mg/ml) and diclofenac sodium salt at two concentrations (5-10. mg/ml). To obtain innovative vesicles two permeation enhancers with glycol group, diethyleneglycol monoethyl ether and propylene glycol, were added to the water phase at different ratios (5%, 10%, and 20%).Vesicle organization was deeply investigated by physico-chemical characterization, including differential scanning calorimetry and small-angle diffraction signal analysis while macroscopic structure behavior was evaluated by rheological studies. Results evidenced that the presence of the penetration enhancer and diclofenac sodium salt led to structural rearrangements within and among vesicles forming a tridimensional and complex architecture in which vesicles were closely packed and interconnected. This new design allowed a change in the physical state of dispersions that became highly viscous liquid or soft-solid-like, thus forming an ideal system for topical application able of both adhering to the skin and delivering the drug. © 2013 Elsevier B.V.
2013
Pubblicato
Rilevanza internazionale
Articolo
Esperti anonimi
Settore CHEM-08/A - Tecnologia, socioeconomia e normativa dei medicinali e dei prodotti per il benessere e per la salute
English
cryo-tem
dsc
glycols
phospholipid vesicles
rheology
saxs
Ines, C., Maria Letizia, M., Matricardi, P., Chiara, S., Sandrina, L., Fernàndez Busquets, X., et al. (2013). Effect of diclofenac and glycol intercalation on structural assembly of phospholipid lamellar vesicles. INTERNATIONAL JOURNAL OF PHARMACEUTICS, 456(1), 1-9 [10.1016/j.ijpharm.2013.08.034].
Ines, C; Maria Letizia, M; Matricardi, P; Chiara, S; Sandrina, L; Fernàndez Busquets, X; Anna Maria, F; Maria, M
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2108/430164
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