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Active dentate granule cells encode experience to promote the addition of adult-born hippocampal neurons

  • Gregory W. Kirschen
  • , Jia Shen
  • , Mu Tian
  • , Bryce Schroeder
  • , Jia Wang
  • , Guoming Man
  • , Song Wu
  • , Shaoyu Ge
  • Stony Brook University

Research output: Contribution to journalArticlepeer-review

40 Scopus citations

Abstract

The continuous addition of new dentate granule cells (DGCs), which is regulated exquisitely by brain activity, renders the hippocampus plastic. However, how neural circuits encode experiences to affect the addition of adult-born neurons remains unknown. Here, we used endoscopic Ca2+imaging to track the real-time activity of individual DGCs in freely behaving mice. For the first time, we found that active DGCs responded to a novel experience by increasing their Ca2+ event frequency preferentially. This elevated activity, which we found to be associated with object exploration, returned to baseline by 1 h in the same environment, but could be dishabituated via introduction to a novel environment. To transition seamlessly between environments, we next established a freely controllable virtual reality system for unrestrained mice. We again observed increased firing of active neurons in a virtual enriched environment. Interestingly, multiple novel virtual experiences increased the number of newborn neurons accumulatively compared with a single experience. Finally, optogenetic silencing of existing DGCs during novel environmental exploration perturbed experience-induced neuronal addition. Our study shows that the adult brain conveys novel, enriched experiences to increase the addition of adult-born hippocampal neurons by increasing the firing of active DGCs.

Original languageEnglish
Pages (from-to)4661-4678
Number of pages18
JournalJournal of Neuroscience
Volume37
Issue number18
DOIs
StatePublished - May 3 2017

Keywords

  • Dentate granule cell
  • Enriched environment
  • Hippocampal neurogenesis
  • Novel experience
  • Virtual reality

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