Glucan particles (GPs) are monodisperse microspheres derived from bakers yeast and represent an interesting class of microcarriers for theranostic applications as they show a high affinity toward immune system cells. The typical loading strategy was to harness the ability of the molecule to be loaded to interact with nano-/microassembled systems through electrostatic or hydrophobic forces. However, small water-soluble chemicals could not be steadily retained by the leaky shell of GPs. In this work, we propose an alternative loading approach for small water-soluble compounds that is based on their entrapment in the aqueous core of liposomes that are directly formed into the microparticles through the reverse phase evaporation method (REV). The construct obtained may act as biocompatible carrier to deliver and release, even in a triggerable way, bioactive compounds.

Successful entrapping of liposomes in glucan particles: An innovative micron-sized carrier to deliver water-soluble molecules

GARELLO, FRANCESCA;STEFANIA, Rachele;AIME, Silvio;TERRENO, Enzo;DELLI CASTELLI, Daniela
2014-01-01

Abstract

Glucan particles (GPs) are monodisperse microspheres derived from bakers yeast and represent an interesting class of microcarriers for theranostic applications as they show a high affinity toward immune system cells. The typical loading strategy was to harness the ability of the molecule to be loaded to interact with nano-/microassembled systems through electrostatic or hydrophobic forces. However, small water-soluble chemicals could not be steadily retained by the leaky shell of GPs. In this work, we propose an alternative loading approach for small water-soluble compounds that is based on their entrapment in the aqueous core of liposomes that are directly formed into the microparticles through the reverse phase evaporation method (REV). The construct obtained may act as biocompatible carrier to deliver and release, even in a triggerable way, bioactive compounds.
2014
11
10
3760
3765
Garello F.; Stefania R.; Aime S.; Terreno E.; Delli Castelli D.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2318/152987
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