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Quiescent adult neural stem cells are exceptionally sensitive to cosmic radiation

  • Juan M. Encinas
  • , Marcelo E. Vazquez
  • , Robert C. Switzer
  • , Dennis W. Chamberland
  • , Harry Nick
  • , Howard G. Levine
  • , Philip J. Scarpa
  • , Grigori Enikolopov
  • , Dennis A. Steindler
  • Cold Spring Harbor Laboratory
  • Brookhaven National Laboratory
  • Neuroscience Associates
  • NASA Kennedy Space Center
  • University of Florida

Research output: Contribution to journalArticlepeer-review

36 Scopus citations

Abstract

Generation of new neurons in the adult brain, a process that is likely to be essential for learning, memory, and mood regulation, is impaired by radiation. Therefore, radiation exposure might have not only such previously expected consequences as increased probability of developing cancer, but might also impair cognitive function and emotional stability. Radiation exposure is encountered in settings ranging from cancer therapy to space travel; evaluating the neurogenic risks of radiation requires identifying the at-risk populations of stem and progenitor cells in the adult brain. Here we have used a novel reporter mouse line to find that early neural progenitors are selectively affected by conditions simulating the space radiation environment. This is reflected both in a decrease in the number of these progenitors in the neurogenic regions and in an increase in the number of dying cells in these regions. Unexpectedly, we found that quiescent neural stem cells, rather than their rapidly dividing progeny, are most sensitive to radiation. Since these stem cells are responsible for adult neurogenesis, their death would have a profound impact on the production of new neurons in the irradiated adult brain. Our finding raises an important concern about cognitive and emotional risks associated with radiation exposure.

Original languageEnglish
Pages (from-to)274-279
Number of pages6
JournalExperimental Neurology
Volume210
Issue number1
DOIs
StatePublished - Mar 2008

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