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Fluorescent Gold Nanoparticles in Suspension as an Efficient Theranostic Agent for Highly Radio-Resistant Cancer Cells

Authors :
Sarah Vogel
Alice O’Keefe
Léa Seban
Michael Valceski
Elette Engels
Abass Khochaiche
Carolyn Hollis
Michael Lerch
Stéphanie Corde
Christophe Massard
Komla Oscar Awitor
Moeava Tehei
Source :
Journal of Nanotheranostics, Vol 4, Iss 1, Pp 37-54 (2023)
Publication Year :
2023
Publisher :
MDPI AG, 2023.

Abstract

Gold nanoparticles are a promising candidate for developing new strategies of therapy against cancer. Due to their high atomic number and relative biocompatibility, they are commonly investigated as radiosensitizers to locally increase the dose of radiotherapy. In order to optimize this radiosensitizing effect, it is necessary to control the positioning of the nanoparticles in the cells. The purpose of this study is to investigate, by means of fluorescent gold nanoparticles in suspension, the dose enhancement on highly radio-resistant cancer cells. These nanoparticles were successfully produced using modern click-chemistry methods, first by attaching a chelating agent Diethylenetriamine pentaacetate benzylamine to L-cysteine, bonding the resulting ligand to a gold core, grafting propargylamine and then utilizing copper-catalyzed azide-alkyne cycloaddition (CuAAC) to fuse AlexaFluor 647 to the ligands. The results of this study prove the success of the reactions to produce a minimally cytotoxic and highly stable nanoparticle suspension that increases the radiosensitivity of gliosarcoma 9L tumor cells, with a 35% increase in cell death using 5 Gy kilovoltage radiation. Their fluorescent functionalization allowed for their simple localization within living cells and detection in vivo post-mortem.

Details

Language :
English
ISSN :
2624845X
Volume :
4
Issue :
1
Database :
Directory of Open Access Journals
Journal :
Journal of Nanotheranostics
Publication Type :
Academic Journal
Accession number :
edsdoj.18e1370aaac14eafbd06fad5f1e75bb6
Document Type :
article
Full Text :
https://doi.org/10.3390/jnt4010003