Redox dysregulation affects the ventral but not dorsal hippocampus: impairment of parvalbumin neurons, gamma oscillations, and related behaviors.

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Version: Final published version
Serval ID
serval:BIB_E711ECBB2BA9
Type
Article: article from journal or magazin.
Collection
Publications
Institution
Title
Redox dysregulation affects the ventral but not dorsal hippocampus: impairment of parvalbumin neurons, gamma oscillations, and related behaviors.
Journal
Journal of Neuroscience
Author(s)
Steullet P., Cabungcal J.H., Kulak A., Kraftsik R., Chen Y., Dalton T.P., Cuenod M., Do K.Q.
ISSN
1529-2401[electronic], 0270-6474[linking]
Publication state
Published
Issued date
2010
Peer-reviewed
Oui
Volume
30
Number
7
Pages
2547-2558
Language
english
Abstract
Elevated oxidative stress and alteration in antioxidant systems, including glutathione (GSH) decrease, are observed in schizophrenia. Genetic and functional data indicate that impaired GSH synthesis represents a susceptibility factor for the disorder. Here, we show that a genetically compromised GSH synthesis affects the morphological and functional integrity of hippocampal parvalbumin-immunoreactive (PV-IR) interneurons, known to be affected in schizophrenia. A GSH deficit causes a selective decrease of PV-IR interneurons in CA3 and dendate gyrus (DG) of the ventral but not dorsal hippocampus and a concomitant reduction of beta/gamma oscillations. Impairment of PV-IR interneurons emerges at the end of adolescence/early adulthood as oxidative stress increases or cumulates selectively in CA3 and DG of the ventral hippocampus. Such redox dysregulation alters stress and emotion-related behaviors but leaves spatial abilities intact, indicating functional disruption of the ventral but not dorsal hippocampus. Thus, a GSH deficit affects PV-IR interneuron's integrity and neuronal synchrony in a region- and time-specific manner, leading to behavioral phenotypes related to psychiatric disorders.
Pubmed
Web of science
Open Access
Yes
Create date
05/03/2010 10:20
Last modification date
20/08/2019 17:10
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