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Blunted diurnal firing in lateral habenula projections to dorsal raphe nucleus and delayed photoentrainment in stress-susceptible mice

Daily rhythms are disrupted in patients with mood disorders. The lateral habenula (LHb) and dorsal raphe nucleus (DRN) contribute to circadian timekeeping and regulate mood. Thus, pathophysiology in these nuclei may be responsible for aberrations in daily rhythms during mood disorders. Using the 15-...

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Autores principales: Liu, He, Rastogi, Ashutosh, Narain, Priyam, Xu, Qing, Sabanovic, Merima, Alhammadi, Ayesha Darwish, Guo, Lihua, Cao, Jun-Li, Zhang, Hongxing, Aqel, Hala, Mlambo, Vongai, Rezgui, Rachid, Radwan, Basma, Chaudhury, Dipesh
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7984642/
https://www.ncbi.nlm.nih.gov/pubmed/33690628
http://dx.doi.org/10.1371/journal.pbio.3000709
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author Liu, He
Rastogi, Ashutosh
Narain, Priyam
Xu, Qing
Sabanovic, Merima
Alhammadi, Ayesha Darwish
Guo, Lihua
Cao, Jun-Li
Zhang, Hongxing
Aqel, Hala
Mlambo, Vongai
Rezgui, Rachid
Radwan, Basma
Chaudhury, Dipesh
author_facet Liu, He
Rastogi, Ashutosh
Narain, Priyam
Xu, Qing
Sabanovic, Merima
Alhammadi, Ayesha Darwish
Guo, Lihua
Cao, Jun-Li
Zhang, Hongxing
Aqel, Hala
Mlambo, Vongai
Rezgui, Rachid
Radwan, Basma
Chaudhury, Dipesh
author_sort Liu, He
collection PubMed
description Daily rhythms are disrupted in patients with mood disorders. The lateral habenula (LHb) and dorsal raphe nucleus (DRN) contribute to circadian timekeeping and regulate mood. Thus, pathophysiology in these nuclei may be responsible for aberrations in daily rhythms during mood disorders. Using the 15-day chronic social defeat stress (CSDS) paradigm and in vitro slice electrophysiology, we measured the effects of stress on diurnal rhythms in firing of LHb cells projecting to the DRN (cells(LHb→DRN)) and unlabeled DRN cells. We also performed optogenetic experiments to investigate if increased firing in cells(LHb→DRN) during exposure to a weak 7-day social defeat stress (SDS) paradigm induces stress-susceptibility. Last, we investigated whether exposure to CSDS affected the ability of mice to photoentrain to a new light–dark (LD) cycle. The cells(LHb→DRN) and unlabeled DRN cells of stress-susceptible mice express greater blunted diurnal firing compared to stress-näive (control) and stress-resilient mice. Daytime optogenetic activation of cells(LHb→DRN) during SDS induces stress-susceptibility which shows the direct correlation between increased activity in this circuit and putative mood disorders. Finally, we found that stress-susceptible mice are slower, while stress-resilient mice are faster, at photoentraining to a new LD cycle. Our findings suggest that exposure to strong stressors induces blunted daily rhythms in firing in cells(LHb→DRN), DRN cells and decreases the initial rate of photoentrainment in susceptible-mice. In contrast, resilient-mice may undergo homeostatic adaptations that maintain daily rhythms in firing in cells(LHb→DRN) and also show rapid photoentrainment to a new LD cycle.
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spelling pubmed-79846422021-04-01 Blunted diurnal firing in lateral habenula projections to dorsal raphe nucleus and delayed photoentrainment in stress-susceptible mice Liu, He Rastogi, Ashutosh Narain, Priyam Xu, Qing Sabanovic, Merima Alhammadi, Ayesha Darwish Guo, Lihua Cao, Jun-Li Zhang, Hongxing Aqel, Hala Mlambo, Vongai Rezgui, Rachid Radwan, Basma Chaudhury, Dipesh PLoS Biol Research Article Daily rhythms are disrupted in patients with mood disorders. The lateral habenula (LHb) and dorsal raphe nucleus (DRN) contribute to circadian timekeeping and regulate mood. Thus, pathophysiology in these nuclei may be responsible for aberrations in daily rhythms during mood disorders. Using the 15-day chronic social defeat stress (CSDS) paradigm and in vitro slice electrophysiology, we measured the effects of stress on diurnal rhythms in firing of LHb cells projecting to the DRN (cells(LHb→DRN)) and unlabeled DRN cells. We also performed optogenetic experiments to investigate if increased firing in cells(LHb→DRN) during exposure to a weak 7-day social defeat stress (SDS) paradigm induces stress-susceptibility. Last, we investigated whether exposure to CSDS affected the ability of mice to photoentrain to a new light–dark (LD) cycle. The cells(LHb→DRN) and unlabeled DRN cells of stress-susceptible mice express greater blunted diurnal firing compared to stress-näive (control) and stress-resilient mice. Daytime optogenetic activation of cells(LHb→DRN) during SDS induces stress-susceptibility which shows the direct correlation between increased activity in this circuit and putative mood disorders. Finally, we found that stress-susceptible mice are slower, while stress-resilient mice are faster, at photoentraining to a new LD cycle. Our findings suggest that exposure to strong stressors induces blunted daily rhythms in firing in cells(LHb→DRN), DRN cells and decreases the initial rate of photoentrainment in susceptible-mice. In contrast, resilient-mice may undergo homeostatic adaptations that maintain daily rhythms in firing in cells(LHb→DRN) and also show rapid photoentrainment to a new LD cycle. Public Library of Science 2021-03-10 /pmc/articles/PMC7984642/ /pubmed/33690628 http://dx.doi.org/10.1371/journal.pbio.3000709 Text en © 2021 Liu et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Liu, He
Rastogi, Ashutosh
Narain, Priyam
Xu, Qing
Sabanovic, Merima
Alhammadi, Ayesha Darwish
Guo, Lihua
Cao, Jun-Li
Zhang, Hongxing
Aqel, Hala
Mlambo, Vongai
Rezgui, Rachid
Radwan, Basma
Chaudhury, Dipesh
Blunted diurnal firing in lateral habenula projections to dorsal raphe nucleus and delayed photoentrainment in stress-susceptible mice
title Blunted diurnal firing in lateral habenula projections to dorsal raphe nucleus and delayed photoentrainment in stress-susceptible mice
title_full Blunted diurnal firing in lateral habenula projections to dorsal raphe nucleus and delayed photoentrainment in stress-susceptible mice
title_fullStr Blunted diurnal firing in lateral habenula projections to dorsal raphe nucleus and delayed photoentrainment in stress-susceptible mice
title_full_unstemmed Blunted diurnal firing in lateral habenula projections to dorsal raphe nucleus and delayed photoentrainment in stress-susceptible mice
title_short Blunted diurnal firing in lateral habenula projections to dorsal raphe nucleus and delayed photoentrainment in stress-susceptible mice
title_sort blunted diurnal firing in lateral habenula projections to dorsal raphe nucleus and delayed photoentrainment in stress-susceptible mice
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7984642/
https://www.ncbi.nlm.nih.gov/pubmed/33690628
http://dx.doi.org/10.1371/journal.pbio.3000709
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