The effect of cerium dioxide nanocrystals on oxidative stress parametrs in irradiated human skin mesenchamal steam-embeded scaffolds
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Abstract book of International Conference "Nanotechnologies and Nanomaterials"NANO-2022
Анотація
Cerium dioxide nanocrystals (CeO 2 ) are today one of the most promising
classes of antioxidant materials.
The aim of the study was to substantiate experimentally in vitro the possibility
of using CeO 2 nanocrystals as an antioxidant for cell therapy of radiation burns.
Spherical CeO 2 nanoparticles (D=1-2 nm) were synthesized in the
Nanostructured Materials Department named by Yu.V. Malyukin of Institute for
Scintillation Materials of NAS of Ukraine.
The work was carried out on human skin mesenchymal stem cells-embedded
scaffolds (hsMSCs-scaffolds). Cells subcultured until passage 3 (Eppendorf Galaxy
14S, 37°С, 5%СО 2 , 99% RH) with viability of 86% (Invitrogen Countess Counter)
were then seeded on a highly porous 3D cell culture polystyrene scaffold (Alvetex
Scaffold, 96 well, REPROCELL) and cultured for 10 days until the culture density
of 84%. 1 hour prior to irradiation, a suspension of nanoparticles was added to the
culture medium (αMEM + 10% FBS, Gibco) to a final concentration of 10, 20 and
40 nM), and incubated for 1 hour (Eppendorf Galaxy 14S, 37°С, 5% СО 2 , 99% RH).
After replacing the medium with nanoparticles free one, the cells were
irradiated on the gamma complex Rokus AM (Co 60 ). The dose of irradiation was
0.75 Gy (104kV, 9mA, 0.2 Gy/min, duration of irradiation – 225 sec).
Two and six hours after irradiation, the fluorescence imaging (Olympus
FV10iLIV confocal microscope, cellSense software), fluorimetric determination
(Biotek FL600 reader, KC4 software) of the concentration of reactive oxygen
species (ROS) (DCFDA, Ex/Em=495/529 nm), lipid hydroperoxides (MitoPeDPP,
Ex/Em=452/470 nm), determination of the degree of DNA fragmentation by comet analysis (Mupid-exU System, Alpha Innotech Red™ Imaging System, CASPlab
software), spectrophotometric determination (Biotek FL600 reader, KC4 software)
of the enzymatic activity of superoxide dismutase and catalase (Abcam kits) were
carried out in the hsMSCs - scaffolds.
It was shown that in the absence of irradiation, nanoparticles at concentrations
of 10 and 20 nM do not cause changes in the studied parameters. The concentration
of the nanoparticles 40 nM caused a decrease in cell viability by 7% after 6 hours
of cultivation on a background of absence of changes in other parameters. This
concentration also proved to be ineffective for maintaining the vitality of cells after
irradiation - the number of living cells decreased both in the presence and absence
of nanoparticles after 6 hours of cultivation by 28%. Pre-incubation with
nanoparticles at a concentration of 10 and 20 nM resulted in an increase in the
number of living cells in culture 6 hours after irradiation by 11% and 17%,
respectively, compared with irradiated cells non- preincubated with nanoparticles.
In 2 and 6 hours after irradiation, the concentration of ROS and lipid
hydroperoxides increased by 6.2 and 8.5 times, respectively, in the culture. The
degree of fragmentation of nuclear DNA increased by 6.5 times. In this case, the
activity of SOD and catalase decreased by 6 hours of observation for 3.6 and
5.8 times, respectively.
Pre-incubation with CeO 2 nanoparticles at all used concentrations resulted in a
significant decrease in prooxidant indices in irradiated culture. Herewith, the most
prominent protective effect was provided by the concentration of 20 nM – for 6th
hour of cultivation after irradiation, the concentration of ROS and lipid
hydroperoxides was respectively 46% and 29% less, and the activity of SOD and
catalase was 71% and 108% higher than in irradiated culture without nanoparticles.
At the same time, regardless of the concentration of nanoparticles, the degree of
DNA fragmentation remained at the level of irradiated cells without nanoparticles,
which apparently is either a consequence of long-term effects of ROS
overproduction or the inability to fix defects by cell repair systems over the past
observation time.
Thus, spherical nanoparticles CeO 2 (D=1-2 nm) at a concentration of 20 nM
can be used in cell therapy of skin lesions to normalize the prooxidant-antioxidant
balance.
Acknowledgements. The authors express their gratitude to to the chief doctor
Vasiliev L.Ya., to the doctor-radiologist Vasilyev L.L., and to the doctor-
roentgenologist Trofimov A.V. for the consultations and for the provided technical
possibility of irradiation on the basis of Grigoriev Institute for medical Radiology
NAMS of Ukraine.
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Kot Yu., Kot K., Klochkov V., Yefimova S., Trufanova N., Petrenko O., Tkachenko A., Prokopiuk V., Onishchenko A., Kulik M. The effect of cerium dioxide nanocrystals on oxidative stress parametrs in irradiated human skin mesenchamal steam-embeded scaffolds Abstract book of International Conference "Nanotechnologies and Nanomaterials"NANO-2021 25 - 27 August 2022 Lviv, Ukraine, P 270.
