Do cell culturing influence the radiosensitizing effect of gold nanoparticles part 2: scrutinizing the methodology producing recent evidence
Hans Rabus, Oswald Msosa Mkanda

TL;DR
This study investigates how cell geometry and simulation methods influence the perceived radiosensitizing effects of gold nanoparticles during irradiation, revealing significant biases and the importance of nanoparticle size and irradiation conditions.
Contribution
It quantifies biases introduced by voxelized geometry and simulation setup, highlighting the impact of nanoparticle size and cell positioning on radiosensitization predictions.
Findings
Dose near cell surface is much lower than deeper cells with Co-60.
Ionizing photon interactions in gold nanoparticles are significantly affected by cell depth.
Larger nanoparticles (50 nm) cause greater reduction in cell survival, especially with low-energy x-rays.
Abstract
When irradiation is performed with gold nanoparticles (AuNPs), a different shape of cells in suspension or adherent to walls may result in different probability of cell survival. In a recent study, differences of up to a factor of 2 were found between the predicted survival of floating and adherent cells. The present work aims to quantify the biases introduced by the simulation setup and the use of voxelized geometry in conjunction with the local effect model for cell survival. The results show that simulated irradiation of a cell near the surface with an incident beam matched to the cell dimensions results in dose values that are by a factor of about 50 lower than the dose to cells deeper in the medium when irradiated with a Co-60 spectrum and lateral beam dimensions in the centimeter range. Furthermore, the number of ionizing photon interactions in gold nanoparticles in a cell near…
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Taxonomy
TopicsRadiation Therapy and Dosimetry · Nanoparticles: synthesis and applications
