Improving proton therapy by metal-containing nanoparticles:Nanoscale insights

  • Schlathölter, Thomas
  • Eustache, Pierre
  • Porcel, Erika
  • Salado, Daniela
  • Stefancikova, Lenka
  • Tillement, Olivier
  • Lux, Francois
  • Mowat, Pierre
  • Biegun, Aleksandra
  • van Goethem, Marc-Jan
  • Remita, Hynd
  • Lacombe, Sandrine
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Publication date
April 2016
Language
English

Abstract

The use of nanoparticles to enhance the effect of radiation-based cancer treatments is a growing field of study and recently, even nanoparticle-induced improvement of proton therapy performance has been investigated. Aiming at a clinical implementation of this approach, it is essential to characterize the mechanisms underlying the synergistic effects of nanoparticles combined with proton irradiation. In this study, we investigated the effect of platinum- and gadolinium-based nanoparticles on the nanoscale damage induced by a proton beam of therapeutically relevant energy (150 MeV) using plasmid DNA molecular probe. Two conditions of irradiation (0.44 and 3.6 keV/mu m) were considered to mimic the beam properties at the entrance and at the e...

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