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Water-soluble gold nanoparticles based on imidazolium gemini amphiphiles incorporating piroxicam

Rodrigues, Mafalda; Calpena, Ana C.; Amabilino, David B.; Ramos-L�pez, David; De Lapuente, Joaquin; P�rez-Garc�a, Llu�sa

Authors

Mafalda Rodrigues

Ana C. Calpena

David B. Amabilino

David Ramos-L�pez

Joaquin De Lapuente

Llu�sa P�rez-Garc�a



Contributors

LLUISA PEREZ GARCIA
Project Leader

Abstract

Water soluble gold nanoparticles were synthesized in a single step using a double layer of a gemini imidazolium-based amphiphile as both reagent and stabilizer. The synthetic strategy exploits the amphiphilic nature of the ligand, and different ratios of ligand to Au(iii) precursor were tested in order to favour the formation of amphiphile bilayer-coated nanoparticles, as indicated by their solubility and the thermogravimetric analysis, which proved the gold/organic ratio. The approximately 10 nm nanoparticles display cytotoxicity on Caco-2 cells similar to gold nanomaterials coated with other cationic surfactants, mainly because of their bilayer coating. Instead, genotoxicity was proven to be low, and the gold nanoparticles showed cell internalization being able to leave endosomes and without entering the nuclei. The incorporation of piroxicam, a poorly water soluble drug that has anti-inflammatory and antitumoral activity, was achieved thanks to anion binding by the amphiphile. Subsequently in vitro release of piroxicam from these nanoparticles was demonstrated, indicating their potential in combined chemotherapy. © 2014 The Royal Society of Chemistry.

Citation

Rodrigues, M., Calpena, A. C., Amabilino, D. B., Ramos-López, D., De Lapuente, J., & Pérez-García, L. (2014). Water-soluble gold nanoparticles based on imidazolium gemini amphiphiles incorporating piroxicam. RSC Advances, 4(18), 9279-9287. https://doi.org/10.1039/c3ra44578j

Journal Article Type Article
Acceptance Date Jan 22, 2014
Online Publication Date Jan 23, 2014
Publication Date Feb 20, 2014
Deposit Date Jan 8, 2020
Journal RSC Advances
Electronic ISSN 2046-2069
Publisher Royal Society of Chemistry
Peer Reviewed Peer Reviewed
Volume 4
Issue 18
Pages 9279-9287
DOI https://doi.org/10.1039/c3ra44578j
Keywords General Chemistry; General Chemical Engineering
Public URL https://nottingham-repository.worktribe.com/output/3691422

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