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Gene Expression Changes in the Spleen, Lungs, and Liver of Wistar Rats Exposed to β-Emitted 31SiO2 Particles
DOI:10.3390/ijms26062693.png)
Abstract
En 中文
To understand the biological effects of residual radioactivity after the atomic bomb explosion in Hiroshima and Nagasaki, we previously investigated the effects of Mn-56, a major residual radioisotope. Our rat study demonstrated that inhalation exposure to (MnO2)-Mn-56 microparticles affected gene expression in the lungs, testes, and liver, despite the low radiation doses. Because Mn-56 is a beta- and gamma-emitter, the differential effects between beta- and gamma-rays should be clarified. In this study, Si-31, a beta-emitter with a radioactive half-life similar to that of Mn-56, was used to determine its effects. Male Wistar rats were exposed to sprayed neutron-activated (SiO2)-Si-31 microparticles, stable SiO2 microparticles, or X-rays. The animals were examined on days 3 and 14 after irradiation. The expression of radiation-inducible marker genes, including Ccng1, Cdkn1a, and Phlda3, was measured in the spleen, lungs, and liver. Furthermore, the expressions of pathophysiological marker genes, including Aqp1, Aqp5, and Smad7 in the lungs and Cth, Ccl2, and Nfkb1 in the liver, were determined. Impacts of (SiO2)-Si-31 exposure were observed mainly in the liver, where the expression of Cth markedly increased on post-exposure days 3 and 14. Our data suggest that internal exposure to beta-emitted microparticles has significant biological effects and its possible roles as residual radiation after atomic bombing.
Keywords:
Si-31
(SiO2)-Si-31 microparticles
internal irradiation
residual radiation
atomic bomb
Journal
IF:
4.9
Papers:
1.9W
Citations:
44.5W

