Published May 2007 | Version v1
Journal article

Differential expression of Egr1 and activation of microglia following irradiation in the rat brain

  • 1. Tuebingen Univ. (Germany). Inst. of Brain Research
  • 2. Tuebingen Univ. (Germany). Div. of Radiobiology and Molecular Environmental Research
  • 3. Tuebingen Univ. (Germany). Dept. of Psychiatry
  • 4. Tuebingen Univ. (Germany). Dept. of Medical Biometry
  • 5. Tuebingen Univ. (Germany). Dept. of General Neurology
  • 6. Tuebingen Univ. (Germany). General Internal Medicine

Description

Background: Little is known about the immediate effects of whole-brain γ-irradiation. The authors hypothesize that Egr1 as an immediate early gene and microglia both participate in early reactions. Material and Methods: Both, expression of Egr1 and cellular distribution were studied in a temporal sequence in different brain regions of rats subjected to irradiation with 10 Gy. Brain tissue was examined using immunohistochemistry, real-time RT-PCR (reverse transcription-polymerase chain reaction), and Western blotting. Results: Astroglia and oligodendroglia showed increased Egr1 immunoreactivity within the first hours following irradiation. This was accompanied by a strong peak in CD68 immunoreactivity histologically attributable to activated microglia. A high constitutive expression of Egr1 protein in the nuclei of activated neurons was reduced following irradiation and RT-PCR demonstrated significantly reduced levels of egr1-lv as a neuronal activity-related mRNA variant. Conclusion: The induction of Egr1 in glial cells, as well as the activation of microglia take place earlier than histological changes reported so far. The authors revealed a temporal sequence of reactions that point toward the initiation of an immediate inflammatory response including reduced neuronal activity. (orig.)

Additional details

Publishing Information

Journal Title
Strahlentherapie und Onkologie
Journal Volume
183
Journal Issue
5
Journal Page Range
p. 248-255
ISSN
0179-7158
CODEN
STONE4