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Versatile Methodology to Encapsulate Gold Nanoparticles in PLGA Nanoparticles Obtained by Nano-Emulsion Templating

  • Cristina Fornaguera*
  • , Natàlia Feiner-Gracia
  • , Aurora Dols-Perez
  • , Maria José García-Celma
  • , Conxita Solans
  • *Corresponding author for this work

Research output: Indexed journal article Articlepeer-review

9 Citations (Scopus)

Abstract

Purpose: Gold nanoparticles have been proved useful for many biomedical applications, specifically, for their use as advanced imaging systems. However, they usually present problems related with stability and toxicity. Methods: In the present work, gold-nanoparticles have been encapsulated in polymeric nanoparticles using a novel methodology based on nano-emulsion templating. Firstly, gold nanoparticles have been transferred from water to ethyl acetate, a solvent classified as class III by the NIH guidelines (low toxic potential). Next, the formation of nano-emulsions loaded with gold nanoparticles has been performed using a low-energy, the phase inversion composition (PIC) emulsification method, followed by solvent evaporation giving rise to polymeric nanoparticles. Results: Using this methodology, high concentrations of gold nanoparticles (>100 pM) have been encapsulated. Increasing gold nanoparticle concentration, nano-emulsion and nanoparticle sizes increase, resulting in a decrease on the stability. It is noteworthy that the designed nanoparticles did not produce cytotoxicity neither hemolysis at the required concentration. Conclusions: Therefore, it can be concluded that a novel and very versatile methodology has been developed for the production of polymeric nanoparticles loaded with gold nanoparticles. [Figure not available: see fulltext.]

Original languageEnglish
Pages (from-to)1093-1103
Number of pages11
JournalPharmaceutical Research
Volume34
Issue number5
DOIs
Publication statusPublished - 1 May 2017
Externally publishedYes

Keywords

  • AuNP-loaded polymeric nanoparticles
  • nano-emulsion templating
  • novel imaging systems
  • phase inversion composition (PIC) emulsification method)
  • polymeric nanoparticles

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