Affiliation:
1. Bogomolets National Medical University, T. Shevchenko blvd., 13, Kyiv, 01601, Ukraine
2. SI “Yu. Kundiiev Institute for Occupational Health of the NAMS of Ukraine”, Saksahanskogo str., 75, Kyiv, 01033, Ukraine
Abstract
In Ukraine and worldwide more attention is paid to the study and application of titanium dioxide nanoparticles (TiO2 NPs). These nanoparticles find use in many industrics (medicine, cosmetology, materials science, environmental protection, etc.). The aim of the study was to study the features of the distribution of TiO2 nanoparticles, a composite of titanium nanodioxide with nanosilver (TiO2/Ag NPs) in the internal organs of laboratory animals (mice, rats) after acute intraperitoneal administration of TiO2 NPs and TiO2/Ag NPs. The objects of toxicological studies were TiO2 NPs (crystalline form - anatase, 21-28 nm in size) and TiO2/Ag NPs (17-22 nm in size, 4 wt% Ag) synthesized at the Frantsevich Institute for Problems of Materials Science NASU. Nanopowder suspensions were introduced in high doses (from 1,000 to 13,000 mg/kg) during a 14 days observation period. The content of chemical elements Ti and Ag in organs (liver, kidneys, spleen, heart, lungs, adrenal glands, thymus, brain) was determined using the method of optical emission spectroscopy with inductively coupled plasma. It was found accumulation of metals in the internal organs on the 14th observation day after a single intraperitoneal injection. It was revealed that the kidneys and liver in rats are the most sensitive to the accumulation of TiO2 and TiO2/Ag NPs; accumulation in the thymus and adrenal glands is also shown. In an experiment on mice, it was found that the kidneys, liver and spleen accumulate titanium and silver after exposure at a dose of 4, 7 and 10 thousand mg/kg of NPs of TiO2 and TiO2/Ag.
Publisher
Dnipro State Medical University
Reference16 articles.
1. Andrusyshyna IM, Lampeka OG, Golub IO, Lubyanova IP, Kharchenko TD. [Evaluation of the des-truction of mineral exchange in professional contingents by the method of atomic emission spectrometry with inductively coupled plasma. Methodical recommendations (111)72.14/133.14]. Kyiv: Avicena; 2014. 60 p. Ukrainian.
2. Antomonov MYu. [Mathematical processing and analysis of medical and biological data]. Кyiv: Medinform; 2018. Russian.
3. Andrusyshyna IM. [Elemental homeostasis in wistar rats as a manifestation of adaptation in an experiment with metal loading in the form of micro- and nanoparticles]. Medical science of Ukraine. 2021;17(2):27-32. Ukrainian. doi: https://doi.org/10.32345/2664-4738.2.2021.04
4. Nanosize fractions of the welding aerosol hard component that emit during welding operations using coated electrodes with reduced chromium (VI) content;Demetska;Technical sciences and technologies,2021
5. Dontsova TA, Nahirniak SV, Astrelin IM. Meta-loxide Nanomaterials and Nanocomposites of Ecological Purpose. J of Nanomaterials. 2019;2019(4):1-31. doi: https://doi.org/10.1155/2019/5942194