4.7 Article

Absence of CCL2 is sufficient to restore hippocampal neurogenesis following cranial irradiation

Journal

BRAIN BEHAVIOR AND IMMUNITY
Volume 30, Issue -, Pages 33-44

Publisher

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.bbi.2012.09.010

Keywords

CCL2/MCP1; Radiation; Neurogenesis; Inflammation; Hippocampus

Funding

  1. Kinetics Foundation
  2. NIH [R01 NS045113-02, R01 MH071472]
  3. California Institute of Regenerative Medicine [RC1-00134]
  4. National Science Foundation Graduate Research Fellowship [2004016504]
  5. Swiss National Science Foundation
  6. Swiss Foundation for Medical Research grant [SSMBS-1194/PASMA-108940/1]
  7. DFG [TRR43/A7, FOR1336/B3]
  8. [F30 NS04696701 5]
  9. [T32 GM0076365]
  10. [PBBEB-104450]

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Cranial irradiation for the treatment of brain tumors causes a delayed and progressive cognitive decline that is pronounced in young patients. Dysregulation of neural stem and progenitor cells is thought to contribute to these effects by altering early childhood brain development. Earlier work has shown that irradiation creates a chronic neuroinflammatory state that severely and selectively impairs postnatal and adult neurogenesis. Here we show that irradiation induces a transient non-classical cytokine response with selective upregulation of CCL2/monocyte chemoattractant protein-1 (MCP-1). Absence of CCL2 signaling in the hours after irradiation is alone sufficient to attenuate chronic microglia activation and allow the recovery of neurogenesis in the weeks following irradiation. This identifies CCL2 signaling as a potential clinical target for moderating the long-term defects in neural stem cell function following cranial radiation in children. (C) 2012 Elsevier Inc. All rights reserved.

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