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PMID: 16125851 Published · ppublish English Comparative Study Journal Article

Effect of long-lasting serotonin depletion on environmental enrichment-induced neurogenesis in adult rat hippocampus and spatial learning.

Neuroscience ·Vol. 135 ·No. 2 ·2005-00-00 ·Pages 395-402

Ueda S, Sakakibara S, Yoshimoto K

Abstract

The dentate gyrus of the hippocampal formation produces new neurons throughout adulthood in mammalian species. Several experimental statuses and factors regulating to neurogenesis have been identified in the adult dentate gyrus. For example, exposure to an enriched environment enhances neurogenesis in the dentate gyrus and improves hippocampus-dependent spatial learning. Furthermore, serotonin is known to influence adult neurogenesis, and learning and memory. However, the effects of long-lasting depletion of serotonin over the developing period on neurogenesis have not been investigated. Thus, we examined the influence of long-lasting serotonin depletion on environmental enrichment-induced neurogenesis and spatial memory performance. As reported previously, environmental enrichment significantly increased new neurons in the dentate gyrus. However, there was no improvement of the spatial learning test in adult rats in standard and in environmental enrichment housings. Intracisternal administration of the serotonergic neurotoxin, 5,7-dihydroxytryptamine, on postnatal day 3 apparently reduced serotonin content in the adult hippocampus without regeneration. This experimental depletion of serotonin in the hippocampus of rats housed in an enriched environment had no effect on spatial memory performance, but produced significant decreases in the number of bromodeoxyuridine-labeled new cells in the dentate gyrus. These findings indicate that newly generated cells stimulated by environmental enrichment are not critical for improvements in hippocampus-dependent learning. Furthermore, numbers of bromodeoxyuridine-labeled cells in the dentate gyrus of 5,7-dihydroxytryptamine-injected rats did not differ between 1 day and 4 weeks after bromodeoxyuridine injection. These data suggest that survival of newly generated dentate gyrus cells remains relatively constant under long-lasting serotonin depletion.

MeSH Terms
5,7-Dihydroxytryptamine/toxicity Analysis of Variance Animals Animals, Newborn Behavior, Animal Brain Chemistry/drug effects,physiology Bromodeoxyuridine/metabolism Cell Count/methods Chromatography, High Pressure Liquid/methods Desipramine/pharmacology Environment Enzyme Inhibitors/pharmacology Female Hippocampus/cytology,physiology Hydroxyindoleacetic Acid/metabolism Immunohistochemistry/methods Male Maze Learning/drug effects,physiology Neuronal Plasticity Norepinephrine/metabolism Rats Rats, Sprague-Dawley Reaction Time/drug effects,physiology Serotonin/deficiency,metabolism Serotonin Agents/toxicity Spatial Behavior/drug effects,physiology Time Factors
Chemicals
Enzyme Inhibitors Serotonin Agents 5,7-Dihydroxytryptamine Serotonin Hydroxyindoleacetic Acid Bromodeoxyuridine Desipramine Norepinephrine
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Ueda S
Department of Histology and Neurobiology, Dokkyo University School of Medicine, Mibu Tochigi 321-0293, Japan. shu-ueda@dokkyomed.ac.jp
Sakakibara S
Yoshimoto K
Article Info
Journal
Neuroscience
Abbr.
Neuroscience
ISSN
0306-4522
Published
2005-00-00
Pages
395-402
Language
English
Region
United States
NLM ID
7605074
Subset
IM
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