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Chitosan oleate salt as an amphiphilic polymer for the surface modification of poly-lactic-glycolic acid (PLGA) nanoparticles. Preliminary studies of mucoadhesion and cell interaction properties

Academic Article
Publication Date:
2018
Short description:
Chitosan oleate salt as an amphiphilic polymer for the surface modification of poly-lactic-glycolic acid (PLGA) nanoparticles. Preliminary studies of mucoadhesion and cell interaction properties / Miele, D., Rossi, S., Sandri, G., Vigani, B., Sorrenti, M., Giunchedi, P., Ferrari, F., Bonferoni, M.C.. - In: MARINE DRUGS. - ISSN 1660-3397. - 16:11(2018), p. 447. [10.3390/md16110447]
abstract:
Most of the methods of poly-lactic-glycolic acid (PLGA) preparation involve the passage through the emulsification of a PLGA organic solution in water followed by solvent evaporation or extraction. The choice of the droplet stabilizer during the emulsion step is critical for the dimensions and the surface characteristics of the nanoparticles (NPs). In the present work, a recently described ionic amphiphilic chitosan derivative, chitosan oleate salt (CS-OA), was proposed for the first time to prepare PLGA NPs. A full factorial design was used to understand the effect of some formulation and preparation parameters on the NP dimensions and on encapsulation efficiency (EE%) of Nile red, used as a tracer. On the basis of the DoE study, curcumin loaded NPs were prepared, having 329 ± 42 nm dimensions and 68.75% EE%. The presence of a chitosan coating at the surface was confirmed by positive zeta potential and resulted in mucoadhesion behavior. The expected improvement of the interaction of the chitosan surface modified nanoparticles with cell membrane surface was confirmed in Caco-2 cell culture by the internalization of the loaded curcumin.
Iris type:
1.1 Articolo in rivista
Keywords:
Amphiphilic polymer; Caco-2 cell culture; Chitosan oleate salt; Curcumin; Mucoadhesion; Nanoparticles; Nile red; PLGA; Adhesiveness; Caco-2 Cells; Chitosan; Curcumin; Drug Carriers; Emulsions; Humans; Nanoparticles; Oleic Acid; Polylactic Acid-Polyglycolic Acid Copolymer; Solubility; Surface Properties; Drug Discovery3003 Pharmaceutical Science
List of contributors:
Miele, Dalila; Rossi, Silvia; Sandri, Giuseppina; Vigani, Barbara; Sorrenti, Milena; Giunchedi, Paolo; Ferrari, Franca; Bonferoni, Maria Cristina
Authors of the University:
GIUNCHEDI Paolo
Handle:
https://iris.uniss.it/handle/11388/219195
Published in:
MARINE DRUGS
Journal
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URL

https://www.mdpi.com/1660-3397/16/11/447/pdf
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