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Physical Exercise Prevents Stress-Induced Activation of Granule Neurons and Enhances Local Inhibitory Mechanisms in the Dentate Gyrus

Publication ,  Journal Article
Schoenfeld, TJ; Rada, P; Pieruzzini, PR; Hsueh, B; Gould, E
Published in: The Journal of Neuroscience
May 1, 2013

Physical exercise is known to reduce anxiety. The ventral hippocampus has been linked to anxiety regulation but the effects of running on this subregion of the hippocampus have been incompletely explored. Here, we investigated the effects of cold water stress on the hippocampus of sedentary and runner mice and found that while stress increases expression of the protein products of the immediate early genes c-andin new and mature granule neurons in sedentary mice, it has no such effect in runners. We further showed that running enhances local inhibitory mechanisms in the hippocampus, including increases in stress-induced activation of hippocampal interneurons, expression of vesicular GABA transporter (vGAT), and extracellular GABA release during cold water swim stress. Finally, blocking GABAA receptors in the ventral hippocampus, but not the dorsal hippocampus, with the antagonist bicuculline, reverses the anxiolytic effect of running. Together, these results suggest that running improves anxiety regulation by engaging local inhibitory mechanisms in the ventral hippocampus.

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Published In

The Journal of Neuroscience

DOI

EISSN

1529-2401

ISSN

0270-6474

Publication Date

May 1, 2013

Volume

33

Issue

18

Start / End Page

7770 / 7777

Publisher

Society for Neuroscience

Related Subject Headings

  • Neurology & Neurosurgery
  • 17 Psychology and Cognitive Sciences
  • 11 Medical and Health Sciences
 

Citation

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Schoenfeld, T. J., Rada, P., Pieruzzini, P. R., Hsueh, B., & Gould, E. (2013). Physical Exercise Prevents Stress-Induced Activation of Granule Neurons and Enhances Local Inhibitory Mechanisms in the Dentate Gyrus. The Journal of Neuroscience, 33(18), 7770–7777. https://doi.org/10.1523/jneurosci.5352-12.2013
Schoenfeld, Timothy J., Pedro Rada, Pedro R. Pieruzzini, Brian Hsueh, and Elizabeth Gould. “Physical Exercise Prevents Stress-Induced Activation of Granule Neurons and Enhances Local Inhibitory Mechanisms in the Dentate Gyrus.” The Journal of Neuroscience 33, no. 18 (May 1, 2013): 7770–77. https://doi.org/10.1523/jneurosci.5352-12.2013.
Schoenfeld TJ, Rada P, Pieruzzini PR, Hsueh B, Gould E. Physical Exercise Prevents Stress-Induced Activation of Granule Neurons and Enhances Local Inhibitory Mechanisms in the Dentate Gyrus. The Journal of Neuroscience. 2013 May 1;33(18):7770–7.
Schoenfeld, Timothy J., et al. “Physical Exercise Prevents Stress-Induced Activation of Granule Neurons and Enhances Local Inhibitory Mechanisms in the Dentate Gyrus.” The Journal of Neuroscience, vol. 33, no. 18, Society for Neuroscience, May 2013, pp. 7770–77. Crossref, doi:10.1523/jneurosci.5352-12.2013.
Schoenfeld TJ, Rada P, Pieruzzini PR, Hsueh B, Gould E. Physical Exercise Prevents Stress-Induced Activation of Granule Neurons and Enhances Local Inhibitory Mechanisms in the Dentate Gyrus. The Journal of Neuroscience. Society for Neuroscience; 2013 May 1;33(18):7770–7777.

Published In

The Journal of Neuroscience

DOI

EISSN

1529-2401

ISSN

0270-6474

Publication Date

May 1, 2013

Volume

33

Issue

18

Start / End Page

7770 / 7777

Publisher

Society for Neuroscience

Related Subject Headings

  • Neurology & Neurosurgery
  • 17 Psychology and Cognitive Sciences
  • 11 Medical and Health Sciences