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      Anterior Cingulate Cortex and Ventral Hippocampal Inputs to the Basolateral Amygdala Selectively Control Generalized Fear

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          Abstract

          A common symptom of anxiety disorders is the overgeneralization of fear across a broad range of contextual cues. We previously found that the ACC and ventral hippocampus (vHPC) regulate generalized fear. Here, we investigate the functional projections from the ACC and vHPC to the amygdala and their role in governing generalized fear in a preclinical rodent model. A chemogenetic approach (designer receptor exclusively activated by designer drugs) was used to inhibit glutamatergic projections from the ACC or vHPC that terminate within the BLA at recent (1 d) or remote (28 d) time points after contextually fear conditioning male mice. Inactivating ACC or vHPC projections to the BLA significantly reduced generalized fear to a novel, nonthreatening context but had no effect on fear to the training context. Further, our data indicate that the ACC-BLA circuit supports generalization in a time-independent manner. We also identified, for the first time, a strictly time-dependent role of the vHPC-BLA circuit in supporting remote generalized contextual fear. Dysfunctional signaling to the amygdala from the ACC or the HPC could underlie overgeneralized fear responses that are associated with anxiety disorders. Our findings demonstrate that the ACC and vHPC regulate fear expressed in novel, nonthreatening environments via projections to the BLA but do so as a result of training intensity or time, respectively.

          SIGNIFICANCE STATEMENT Anxiety disorders are characterized by a common symptom that promotes overgeneralization of fear in nonthreatening environments. Dysregulation of the amygdala, ACC, or hippocampus (HPC) has been hypothesized to contribute to increased fear associated with anxiety disorders. Our findings show that the ACC and HPC projections to the BLA regulate generalized fear in nonthreatening, environments. However, descending ACC projections control fear generalization independent of time, whereas HPC projections play a strictly time-dependent role in regulating generalized fear. Thus, dysfunctional ACC/HPC signaling to the BLA may be a predominant underlying mechanism of nonspecific fear associated with anxiety disorders. Our data have important implications for predictions made by theories about aging memories and interactions between the HPC and cortical regions.

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          Author and article information

          Journal
          J Neurosci
          J. Neurosci
          jneuro
          jneurosci
          J. Neurosci
          The Journal of Neuroscience
          Society for Neuroscience
          0270-6474
          1529-2401
          14 August 2019
          14 February 2020
          : 39
          : 33
          : 6526-6539
          Affiliations
          [1] 1Department of Psychological Sciences, and
          [2] 2Brain Health Research Institute, Kent State University, Kent, OH 44242
          Author notes
          Correspondence should be addressed to Aaron M. Jasnow at ajasnow@ 123456kent.edu

          Author contributions: S.O. and A.M.J. designed research; S.O., M.S.L., J.L.F., S.D., and J.M.A. performed research; S.O. analyzed data; S.O. and A.M.J. wrote the first draft of the paper; S.O., M.S.L., and A.M.J. edited the paper; S.O. and A.M.J. wrote the paper.

          Author information
          https://orcid.org/0000-0003-2068-6022
          https://orcid.org/0000-0002-4015-4202
          Article
          PMC6697404 PMC6697404 6697404 0810-19
          10.1523/JNEUROSCI.0810-19.2019
          6697404
          31209172
          662228d8-29c7-4837-b816-877b49793fc3
          Copyright © 2019 the authors
          History
          : 10 April 2019
          : 15 May 2019
          : 5 June 2019
          Categories
          Research Articles
          Behavioral/Cognitive

          hippocampus,DREADD,ACC,context generalization,anxiety disorders,amygdala

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