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dc.contributor.authorFunayama, Yukien
dc.contributor.authorLi, Haiyanen
dc.contributor.authorIshimori, Erinaen
dc.contributor.authorKawatake-Kuno, Ayakoen
dc.contributor.authorInaba, Hiromichien
dc.contributor.authorYamagata, Hirotakaen
dc.contributor.authorSeki, Tomoeen
dc.contributor.authorNakagawa, Shinen
dc.contributor.authorWatanabe, Yoshifumien
dc.contributor.authorMurai, Toshiyaen
dc.contributor.authorOishi, Naoyaen
dc.contributor.authorUchida, Shusakuen
dc.contributor.alternative船山, 由樹ja
dc.contributor.alternative李, 海燕ja
dc.contributor.alternative石森, 絵里奈ja
dc.contributor.alternative川竹, 絢子ja
dc.contributor.alternative稲葉, 啓通ja
dc.contributor.alternative村井, 俊哉ja
dc.contributor.alternative大石, 直也ja
dc.contributor.alternative内田, 周作ja
dc.date.accessioned2023-02-06T03:07:11Z-
dc.date.available2023-02-06T03:07:11Z-
dc.date.issued2023-01-
dc.identifier.urihttp://hdl.handle.net/2433/279080-
dc.description.abstract[Background] A key challenge in the understanding and treatment of depression is identifying cell types and molecular mechanisms that mediate behavioral responses to antidepressant drugs. Because treatment responses in clinical depression are heterogeneous, it is crucial to examine treatment responders and nonresponders in preclinical studies. [Methods] We used the large variance in behavioral responses to long-term treatment with multiple classes of antidepressant drugs in different inbred mouse strains and classified the mice into responders and nonresponders based on their response in the forced swim test. Medial prefrontal cortex tissues were subjected to RNA sequencing to identify molecules that are consistently associated across antidepressant responders. We developed and used virus-mediated gene transfer to induce the gene of interest in specific cell types and performed forced swim, sucrose preference, social interaction, and open field tests to investigate antidepressant-like and anxiety-like behaviors. [Results] Cartpt expression was consistently upregulated in responders to four types of antidepressants but not in nonresponders in different mice strains. Responder mice given a single dose of ketamine, a fast-acting non–monoamine-based antidepressant, exhibited high CART peptide expression. CART peptide overexpression in the GABAergic (gamma-aminobutyric acidergic) neurons of the anterior cingulate cortex led to antidepressant-like behavior and drove chronic stress resiliency independently of mouse genetic background. [Conclusions] These data demonstrate that activation of CART peptide signaling in GABAergic neurons of the anterior cingulate cortex is a common molecular mechanism across antidepressant responders and that this pathway also drives stress resilience.en
dc.language.isoeng-
dc.publisherElsevier BVen
dc.publisherThe Society of Biological Psychiatryen
dc.rights© 2022 The Authors. Published by Elsevier Inc on behalf of the Society of Biological Psychiatry.en
dc.rightsThis is an open access article under the CC BY-NC-ND license.en
dc.rights.urihttps://creativecommons.org/licenses/by-nc-nd/4.0/-
dc.subjectAnterior cingulate cortexen
dc.subjectAntidepressant responseen
dc.subjectDepressionen
dc.subjectGABAergic neuronsen
dc.subjectStress resilienceen
dc.subjectTranscriptomeen
dc.titleAntidepressant Response and Stress Resilience Are Promoted by CART Peptides in GABAergic Neurons of the Anterior Cingulate Cortexen
dc.typejournal article-
dc.type.niitypeJournal Article-
dc.identifier.jtitleBiological Psychiatry Global Open Scienceen
dc.identifier.volume3-
dc.identifier.issue1-
dc.identifier.spage87-
dc.identifier.epage98-
dc.relation.doi10.1016/j.bpsgos.2021.12.009-
dc.textversionpublisher-
dc.identifier.pmid36712563-
dcterms.accessRightsopen access-
datacite.awardNumber18H02750-
datacite.awardNumber21K19707-
datacite.awardNumber21H02849-
datacite.awardNumber21K15711-
datacite.awardNumber21K07593-
datacite.awardNumber21H00198-
datacite.awardNumber.urihttps://kaken.nii.ac.jp/ja/grant/KAKENHI-PROJECT-18H02750/-
datacite.awardNumber.urihttps://kaken.nii.ac.jp/ja/grant/KAKENHI-PROJECT-21K19707/-
datacite.awardNumber.urihttps://kaken.nii.ac.jp/ja/grant/KAKENHI-PROJECT-21H02849/-
datacite.awardNumber.urihttps://kaken.nii.ac.jp/ja/grant/KAKENHI-PROJECT-21K15711/-
datacite.awardNumber.urihttps://kaken.nii.ac.jp/ja/grant/KAKENHI-PROJECT-21K07593/-
datacite.awardNumber.urihttps://kaken.nii.ac.jp/ja/grant/KAKENHI-PUBLICLY-21H00198/-
dc.identifier.eissn2667-1743-
jpcoar.funderName日本学術振興会ja
jpcoar.funderName日本学術振興会ja
jpcoar.funderName日本学術振興会ja
jpcoar.funderName日本学術振興会ja
jpcoar.funderName日本学術振興会ja
jpcoar.funderName日本学術振興会ja
jpcoar.awardTitleうつ病発症脆弱性の個体差・性差構築に関わる分子神経基盤の解明ja
jpcoar.awardTitle運動によるストレスレジリエンス獲得の分子・神経メカニズム解明ja
jpcoar.awardTitle超高磁場MRIを用いた視床下部機能的結合解析の新規開発と気分障害への応用ja
jpcoar.awardTitle早期抗うつ効果発現を可能とする脳内分子神経メカニズムの解明ja
jpcoar.awardTitleマルチタスク深層学習を用いた脳MRI解析技術の精神・神経疾患への応用ja
jpcoar.awardTitle細胞内分子複合体の多様性から紐解くストレス感受性の個体差構築のメカニズムja
出現コレクション:学術雑誌掲載論文等

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