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  3. Central amygdala micro-circuits mediate fear extinction
 

Central amygdala micro-circuits mediate fear extinction

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BORIS DOI
10.48350/159879
Publisher DOI
10.1038/s41467-021-24068-x
PubMed ID
34230461
Description
Fear extinction is an adaptive process whereby defensive responses are attenuated following repeated experience of prior fear-related stimuli without harm. The formation of extinction memories involves interactions between various corticolimbic structures, resulting in reduced central amygdala (CEA) output. Recent studies show, however, the CEA is not merely an output relay of fear responses but contains multiple neuronal subpopulations that interact to calibrate levels of fear responding. Here, by integrating behavioural, in vivo electrophysiological, anatomical and optogenetic approaches in mice we demonstrate that fear extinction produces reversible, stimulus- and context-specific changes in neuronal responses to conditioned stimuli in functionally and genetically defined cell types in the lateral (CEl) and medial (CEm) CEA. Moreover, we show these alterations are absent when extinction is deficient and that selective silencing of protein kinase C delta-expressing (PKCδ) CEl neurons impairs fear extinction. Our findings identify CEA inhibitory microcircuits that act as critical elements within the brain networks mediating fear extinction.
Date of Publication
2021-07-06
Publication Type
Article
Subject(s)
600 - Technology::610 - Medicine & health
Language(s)
en
Contributor(s)
Whittle, Nigel
Fadok, Jonathan
MacPherson, Kathryn P.
Nguyen, Robin
Institut für Physiologie
Botta, Paolo
Wolff, Steffen B. E.
Müller, Christian
Herry, Cyril
Tovote, Philip
Holmes, Andrew
Singewald, Nicolas
Lüthi, Andreas
Ciocchi, Stéphane Pierre
Institut für Physiologie
Additional Credits
Institut für Physiologie
Series
Nature communications
Publisher
Nature Publishing Group
ISSN
2041-1723
Access(Rights)
open.access
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