Proton beam-induced radiosensitizing effect of Ce$_{0.8}$Gd$_{0.2}$O$_{2-x}$ nanoparticles against melanoma cells \emph{in vitro}
Nanosistemy: fizika, himiâ, matematika, Tome 15 (2024) no. 5, pp. 675-682
Voir la notice de l'article provenant de la source Math-Net.Ru
Proton beam therapy is being used increasingly to treat melanoma. Meanwhile, proton beam therapy has a number of disadvantages that can be reduced or completely eliminated through the use of modern innovative approaches, including the use of nanoradiosensitizers. Here we showed the possibility of using redox-active dextran-stabilized Ce$_{0.8}$Gd$_{0.2}$O$_{2-x}$ nanoparticles (Ce$_{0.8}$Gd$_{0.2}$O$_{2-x}$ NPs) as a radiosensitizer to promote mouse melanoma cell death under proton beam irradiation in vitro. It has been shown that these Ce$_{0.8}$Gd$_{0.2}$O$_{2-x}$ NPs do not reduce the viability and survival rate of both NCTC L929 normal mouse fibroblasts and B16/F10 mouse melanoma cells in a wide range of concentrations. However, Ce$_{0.8}$Gd$_{0.2}$O$_{2-x}$ NPs significantly reduce the mitochondrial membrane potential of these cells. Additionally, it has been shown that Ce$_{0.8}$Gd$_{0.2}$O$_{2-x}$ NPs are able to effectively reduce the clonogenic activity of B16/F10 melanoma cells under proton beam irradiation. Meanwhile, proton beam irradiation remarkably reduced the clonogenic activity and MMP of melanoma cells. Hence, Ce$_{0.8}$Gd$_{0.2}$O$_{2-x}$ NPs act as a radiosensitizer in B16/F10 mouse melanoma cells under proton beam irradiation. We assume that such radiosensitizing effect of Ce$_{0.8}$Gd$_{0.2}$O$_{2-x}$ NPs is due to a decrease of the membrane mitochondrial potential. Thus, the use of Ce$_{0.8}$Gd$_{0.2}$O$_{2-x}$ NPs in combination with proton beam irradiation is a promising approach for the effective treatment of melanoma.
Keywords:
gadolinium, cerium oxide nanoparticles, radiosensitization, proton beam irradiation.
@article{NANO_2024_15_5_a10,
author = {Danil D. Kolmanovich and Mikhail V. Romanov and Sergey A. Khaustov and Vladimir K. Ivanov and Alexander E. Shemyakov and Nikita N. Chukavin and Anton L. Popov},
title = {Proton beam-induced radiosensitizing effect of {Ce}$_{0.8}${Gd}$_{0.2}${O}$_{2-x}$ nanoparticles against melanoma cells \emph{in vitro}},
journal = {Nanosistemy: fizika, himi\^a, matematika},
pages = {675--682},
publisher = {mathdoc},
volume = {15},
number = {5},
year = {2024},
language = {en},
url = {http://geodesic.mathdoc.fr/item/NANO_2024_15_5_a10/}
}
TY - JOUR
AU - Danil D. Kolmanovich
AU - Mikhail V. Romanov
AU - Sergey A. Khaustov
AU - Vladimir K. Ivanov
AU - Alexander E. Shemyakov
AU - Nikita N. Chukavin
AU - Anton L. Popov
TI - Proton beam-induced radiosensitizing effect of Ce$_{0.8}$Gd$_{0.2}$O$_{2-x}$ nanoparticles against melanoma cells \emph{in vitro}
JO - Nanosistemy: fizika, himiâ, matematika
PY - 2024
SP - 675
EP - 682
VL - 15
IS - 5
PB - mathdoc
UR - http://geodesic.mathdoc.fr/item/NANO_2024_15_5_a10/
LA - en
ID - NANO_2024_15_5_a10
ER -
%0 Journal Article
%A Danil D. Kolmanovich
%A Mikhail V. Romanov
%A Sergey A. Khaustov
%A Vladimir K. Ivanov
%A Alexander E. Shemyakov
%A Nikita N. Chukavin
%A Anton L. Popov
%T Proton beam-induced radiosensitizing effect of Ce$_{0.8}$Gd$_{0.2}$O$_{2-x}$ nanoparticles against melanoma cells \emph{in vitro}
%J Nanosistemy: fizika, himiâ, matematika
%D 2024
%P 675-682
%V 15
%N 5
%I mathdoc
%U http://geodesic.mathdoc.fr/item/NANO_2024_15_5_a10/
%G en
%F NANO_2024_15_5_a10
Danil D. Kolmanovich; Mikhail V. Romanov; Sergey A. Khaustov; Vladimir K. Ivanov; Alexander E. Shemyakov; Nikita N. Chukavin; Anton L. Popov. Proton beam-induced radiosensitizing effect of Ce$_{0.8}$Gd$_{0.2}$O$_{2-x}$ nanoparticles against melanoma cells \emph{in vitro}. Nanosistemy: fizika, himiâ, matematika, Tome 15 (2024) no. 5, pp. 675-682. http://geodesic.mathdoc.fr/item/NANO_2024_15_5_a10/