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Adult hippocampal neurogenesis is functionally important for stress-induced social avoidance
Authors:Diane C. Lagace  Michael H. Donovan  Nathan A. DeCarolis  Laure A. Farnbauch  Shveta Malhotra  Olivier Berton  Eric J. Nestler  Vaishnav Krishnan  Amelia J. Eisch
Affiliation:aDepartment of Psychiatry, University of Texas Southwestern Medical Center, Dallas, TX 75390-9070; ;bDepartment of Cellular and Molecular Medicine, University of Ottawa, Ottawa, ON, Canada, K1H 8M5; ;cDepartment of Psychiatry, University of Pennsylvania Medical School, Philadelphia, PA 19104; and ;dDepartment of Neuroscience, Mount Sinai School of Medicine, New York, NY 10029
Abstract:The long-term response to chronic stress is variable, with some individuals developing maladaptive functioning, although other “resilient” individuals do not. Stress reduces neurogenesis in the dentate gyrus subgranular zone (SGZ), but it is unknown if stress-induced changes in neurogenesis contribute to individual vulnerability. Using a chronic social defeat stress model, we explored whether the susceptibility to stress-induced social avoidance was related to changes in SGZ proliferation and neurogenesis. Immediately after social defeat, stress-exposed mice (irrespective of whether they displayed social avoidance) had fewer proliferating SGZ cells labeled with the S-phase marker BrdU. The decrease was transient, because BrdU cell numbers were normalized 24 h later. The survival of BrdU cells labeled before defeat stress was also not altered. However, 4 weeks later, mice that displayed social avoidance had more surviving dentate gyrus neurons. Thus, dentate gyrus neurogenesis is increased after social defeat stress selectively in mice that display persistent social avoidance. Supporting a functional role for adult-generated dentate gyrus neurons, ablation of neurogenesis via cranial ray irradiation robustly inhibited social avoidance. These data show that the time window after cessation of stress is a critical period for the establishment of persistent cellular and behavioral responses to stress and that a compensatory enhancement in neurogenesis is related to the long-term individual differences in maladaptive responses to stress.
Keywords:dentate gyrus   nestin-GFP   posttraumatic stress disorder   social defeat   subgranular zone
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