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Hippocampal acetylcholine modulates stress-related behaviors independent of specific cholinergic inputs

Acetylcholine (ACh) levels are elevated in actively depressed subjects. Conversely, antagonism of either nicotinic or muscarinic ACh receptors can have antidepressant effects in humans and decrease stress-relevant behaviors in rodents. Consistent with a role for ACh in mediating maladaptive response...

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Autores principales: Mineur, Yann S., Mose, Tenna N., Vanopdenbosch, Laura, Etherington, Ian M., Ogbejesi, Chika, Islam, Ashraful, Pineda, Cristiana M., Crouse, Richard B., Zhou, Wenliang, Thompson, David C., Bentham, Matthew, Picciotto, Marina R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9106825/
https://www.ncbi.nlm.nih.gov/pubmed/34997190
http://dx.doi.org/10.1038/s41380-021-01404-7
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author Mineur, Yann S.
Mose, Tenna N.
Vanopdenbosch, Laura
Etherington, Ian M.
Ogbejesi, Chika
Islam, Ashraful
Pineda, Cristiana M.
Crouse, Richard B.
Zhou, Wenliang
Thompson, David C.
Bentham, Matthew
Picciotto, Marina R.
author_facet Mineur, Yann S.
Mose, Tenna N.
Vanopdenbosch, Laura
Etherington, Ian M.
Ogbejesi, Chika
Islam, Ashraful
Pineda, Cristiana M.
Crouse, Richard B.
Zhou, Wenliang
Thompson, David C.
Bentham, Matthew
Picciotto, Marina R.
author_sort Mineur, Yann S.
collection PubMed
description Acetylcholine (ACh) levels are elevated in actively depressed subjects. Conversely, antagonism of either nicotinic or muscarinic ACh receptors can have antidepressant effects in humans and decrease stress-relevant behaviors in rodents. Consistent with a role for ACh in mediating maladaptive responses to stress, brain ACh levels increase in response to stressful challenges, whereas systemically blocking acetylcholinesterase (AChE, the primary ACh degradative enzyme) elicits depression-like symptoms in human subjects, and selectively blocking AChE in the hippocampus increases relevant behaviors in rodents. We used an ACh sensor to characterize stress-evoked ACh release, then used chemogenetic, optogenetic and pharmacological approaches to determine whether cholinergic inputs from the medial septum/diagonal bands of Broca (MSDBB) or ChAT-positive neurons intrinsic to the hippocampus mediate stress-relevant behaviors in mice. Chemogenetic inhibition or activation of MSDBB cholinergic neurons did not result in significant behavioral effects, while inhibition attenuated the behavioral effects of physostigmine. In contrast, optogenetic stimulation of septohippocampal terminals or selective chemogenetic activation of ChAT-positive inputs to hippocampus increased stress-related behaviors. Finally, stimulation of sparse ChAT-positive hippocampal neurons increased stress-related behaviors in one ChAT-Cre line, which were attenuated by local infusion of cholinergic antagonists. These studies suggest that ACh signaling results in maladaptive behavioral responses to stress if the balance of signaling is shifted toward increased hippocampal engagement.
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spelling pubmed-91068252022-07-08 Hippocampal acetylcholine modulates stress-related behaviors independent of specific cholinergic inputs Mineur, Yann S. Mose, Tenna N. Vanopdenbosch, Laura Etherington, Ian M. Ogbejesi, Chika Islam, Ashraful Pineda, Cristiana M. Crouse, Richard B. Zhou, Wenliang Thompson, David C. Bentham, Matthew Picciotto, Marina R. Mol Psychiatry Article Acetylcholine (ACh) levels are elevated in actively depressed subjects. Conversely, antagonism of either nicotinic or muscarinic ACh receptors can have antidepressant effects in humans and decrease stress-relevant behaviors in rodents. Consistent with a role for ACh in mediating maladaptive responses to stress, brain ACh levels increase in response to stressful challenges, whereas systemically blocking acetylcholinesterase (AChE, the primary ACh degradative enzyme) elicits depression-like symptoms in human subjects, and selectively blocking AChE in the hippocampus increases relevant behaviors in rodents. We used an ACh sensor to characterize stress-evoked ACh release, then used chemogenetic, optogenetic and pharmacological approaches to determine whether cholinergic inputs from the medial septum/diagonal bands of Broca (MSDBB) or ChAT-positive neurons intrinsic to the hippocampus mediate stress-relevant behaviors in mice. Chemogenetic inhibition or activation of MSDBB cholinergic neurons did not result in significant behavioral effects, while inhibition attenuated the behavioral effects of physostigmine. In contrast, optogenetic stimulation of septohippocampal terminals or selective chemogenetic activation of ChAT-positive inputs to hippocampus increased stress-related behaviors. Finally, stimulation of sparse ChAT-positive hippocampal neurons increased stress-related behaviors in one ChAT-Cre line, which were attenuated by local infusion of cholinergic antagonists. These studies suggest that ACh signaling results in maladaptive behavioral responses to stress if the balance of signaling is shifted toward increased hippocampal engagement. 2022-03 2022-01-08 /pmc/articles/PMC9106825/ /pubmed/34997190 http://dx.doi.org/10.1038/s41380-021-01404-7 Text en Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use: https://www.springernature.com/gp/open-research/policies/accepted-manuscript-terms
spellingShingle Article
Mineur, Yann S.
Mose, Tenna N.
Vanopdenbosch, Laura
Etherington, Ian M.
Ogbejesi, Chika
Islam, Ashraful
Pineda, Cristiana M.
Crouse, Richard B.
Zhou, Wenliang
Thompson, David C.
Bentham, Matthew
Picciotto, Marina R.
Hippocampal acetylcholine modulates stress-related behaviors independent of specific cholinergic inputs
title Hippocampal acetylcholine modulates stress-related behaviors independent of specific cholinergic inputs
title_full Hippocampal acetylcholine modulates stress-related behaviors independent of specific cholinergic inputs
title_fullStr Hippocampal acetylcholine modulates stress-related behaviors independent of specific cholinergic inputs
title_full_unstemmed Hippocampal acetylcholine modulates stress-related behaviors independent of specific cholinergic inputs
title_short Hippocampal acetylcholine modulates stress-related behaviors independent of specific cholinergic inputs
title_sort hippocampal acetylcholine modulates stress-related behaviors independent of specific cholinergic inputs
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9106825/
https://www.ncbi.nlm.nih.gov/pubmed/34997190
http://dx.doi.org/10.1038/s41380-021-01404-7
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