Interleukin-1β Can Reduce Manifestations of Delayed Effects of Prolonged Exposure to Low-Intensity γ-Radiation


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Resumo

We showed that injection of IL-1β (Betaleukin) in a dose of 3 μg/kg 22 h before prolonged (21 h) exposure to low-intensity (10 mGy/min) γ-radiation in a dose of 12.6 Gy reduced the number of double-strand DNA breaks in murine spleen cells to the control level in 4 months after exposure and the number of double-strand DNA breaks induced by additional acute irradiation in a dose of 6 Gy. The results suggest that IL-1β can improve the efficiency of systems reducing the number of double-strand DNA breaks in murine spleen cells at delayed terms after exposure to prolonged low-intensity radiation.

Sobre autores

N. Vorobyeva

Laboratory of Radiation Biophysics, A. I. Burnazyan Federal Medical Biophysical Center, Federal Medical-Biological Agency

Autor responsável pela correspondência
Email: nuv.rad@mail.ru
Rússia, Moscow

A. Grekhova

Laboratory of Radiation Biophysics, A. I. Burnazyan Federal Medical Biophysical Center, Federal Medical-Biological Agency

Email: nuv.rad@mail.ru
Rússia, Moscow

K. Trubitsina

Laboratory of Radiation Pharmacology, A. I. Burnazyan Federal Medical Biophysical Center, Federal Medical-Biological Agency

Email: nuv.rad@mail.ru
Rússia, Moscow

A. Pchelka

Laboratory of Radiation Pharmacology, A. I. Burnazyan Federal Medical Biophysical Center, Federal Medical-Biological Agency

Email: nuv.rad@mail.ru
Rússia, Moscow

L. Rozhdestevenskiy

Laboratory of Radiation Pharmacology, A. I. Burnazyan Federal Medical Biophysical Center, Federal Medical-Biological Agency

Email: nuv.rad@mail.ru
Rússia, Moscow

A. Osipov

Laboratory of Radiation Pharmacology, A. I. Burnazyan Federal Medical Biophysical Center, Federal Medical-Biological Agency

Email: nuv.rad@mail.ru
Rússia, Moscow


Declaração de direitos autorais © Springer Science+Business Media New York, 2016

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