Encapsulation of curcumin-loaded liposomes for colonic drug delivery in a pH-responsive polymer cluster using a pH-driven and organic solvent-free process
Academic Article
Publication Date:
2018
abstract:
The present study aimed to develop and optimize liposome formulation for the colonic
delivery of biologically active compounds. A strategy to facilitate such targeting is to formulate
liposomes with a polymer coating sensitive to the pH shifts in the gastrointestinal tract. To this end,
liposomes encapsulating curcumin--chosen as the biologically active compound model--and coated
with the pH-responsive polymer Eudragit S100 were prepared and characterized. Curcumin was
encapsulated into small unilamellar vesicles (SUVs) by the micelle-to-vesicle transition method (MVT)
in a simple and organic solvent-free way. Curcumin-loaded liposomes were coated with Eudragit
S100 by a fast and easily scalable pH-driven method. The prepared liposomes were evaluated for size,
surface morphology, entrapment efficiency, stability, in vitro drug release, and curcumin antioxidant
activity. In particular, curcumin-loaded liposomes displayed size lower than 100 nm, encapsulation
efficiency of 98%, high stability at both 4 oC and 25 oC, high in vitro antioxidant activity, and a
cumulative release that was completed within 200 min. A good Eudragit S100 coating which did
not alter the properties of the curcumin-loaded liposomes was obtained. The present work therefore
provides a fast and solvent-free method to prepare pH-responsive polymer-coated liposomes for the
colonic delivery of biologically active compounds.
Iris type:
01.01 Articolo in rivista
Keywords:
Colonic drug delivery; Curcumin; Eudragit S100; Nanoliposomes; PH jump method; TEAC
List of contributors:
Nacci, Angelo; Garbetta, Antonella; Milano, Francesco; Comparelli, Roberto
Published in: