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Effects of a True Prophylactic Treatment on Hippocampal and Amygdala Synaptic Plasticity and Gene Expression in a Rodent Chronic Stress Model of Social Defeat

Post-traumatic stress disorder (PTSD) is a complex stress-related disorder induced by exposure to traumatic stress that is characterized by symptoms of re-experiencing, avoidance, and hyper-arousal. While it is widely accepted that brain regions involved in emotional regulation and memory—e.g., the...

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Autores principales: Winzenried, Eric T., Everett, Anna C., Saito, Erin R., Miller, Roxanne M., Johnson, Taylor, Neal, Eliza, Boyce, Zachary, Smith, Calvin, Jensen, Chloe, Kimball, Spencer, Brantley, Adam, Melendez, Gabriel, Moffat, Devin, Davis, Erin, Aponik, Lyndsey, Crofts, Tyler, Dabney, Bryson, Edwards, Jeffrey G.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10342862/
https://www.ncbi.nlm.nih.gov/pubmed/37446371
http://dx.doi.org/10.3390/ijms241311193
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author Winzenried, Eric T.
Everett, Anna C.
Saito, Erin R.
Miller, Roxanne M.
Johnson, Taylor
Neal, Eliza
Boyce, Zachary
Smith, Calvin
Jensen, Chloe
Kimball, Spencer
Brantley, Adam
Melendez, Gabriel
Moffat, Devin
Davis, Erin
Aponik, Lyndsey
Crofts, Tyler
Dabney, Bryson
Edwards, Jeffrey G.
author_facet Winzenried, Eric T.
Everett, Anna C.
Saito, Erin R.
Miller, Roxanne M.
Johnson, Taylor
Neal, Eliza
Boyce, Zachary
Smith, Calvin
Jensen, Chloe
Kimball, Spencer
Brantley, Adam
Melendez, Gabriel
Moffat, Devin
Davis, Erin
Aponik, Lyndsey
Crofts, Tyler
Dabney, Bryson
Edwards, Jeffrey G.
author_sort Winzenried, Eric T.
collection PubMed
description Post-traumatic stress disorder (PTSD) is a complex stress-related disorder induced by exposure to traumatic stress that is characterized by symptoms of re-experiencing, avoidance, and hyper-arousal. While it is widely accepted that brain regions involved in emotional regulation and memory—e.g., the amygdala and hippocampus—are dysregulated in PTSD, the pathophysiology of the disorder is not well defined and therefore, pharmacological interventions are extremely limited. Because stress hormones norepinephrine and cortisol (corticosterone in rats) are heavily implicated in the disorder, we explored whether preemptively and systemically antagonizing β-adrenergic and glucocorticoid receptors with propranolol and mifepristone are sufficient to mitigate pathological changes in synaptic plasticity, gene expression, and anxiety induced by a modified social defeat (SD) stress protocol. Young adult, male Sprague Dawley rats were initially pre-screened for anxiety. The rats were then exposed to SD and chronic light stress to induce anxiety-like symptoms. Drug-treated rats were administered propranolol and mifepristone injections prior to and continuing throughout SD stress. Using competitive ELISAs on plasma, field electrophysiology at CA1 of the ventral hippocampus (VH) and the basolateral amygdala (BLA), quantitative RT-PCR, and behavior assays, we demonstrate that our SD stress increased anxiety-like behavior, elevated long-term potentiation (LTP) in the VH and BLA, and altered the expression of mineralocorticoid, glucocorticoid, and glutamate receptors. These measures largely reverted to control levels with the administration of propranolol and mifepristone. Our findings indicate that SD stress increases LTP in the VH and BLA and that prophylactic treatment with propranolol and mifepristone may have the potential in mitigating these and other stress-induced effects.
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spelling pubmed-103428622023-07-14 Effects of a True Prophylactic Treatment on Hippocampal and Amygdala Synaptic Plasticity and Gene Expression in a Rodent Chronic Stress Model of Social Defeat Winzenried, Eric T. Everett, Anna C. Saito, Erin R. Miller, Roxanne M. Johnson, Taylor Neal, Eliza Boyce, Zachary Smith, Calvin Jensen, Chloe Kimball, Spencer Brantley, Adam Melendez, Gabriel Moffat, Devin Davis, Erin Aponik, Lyndsey Crofts, Tyler Dabney, Bryson Edwards, Jeffrey G. Int J Mol Sci Article Post-traumatic stress disorder (PTSD) is a complex stress-related disorder induced by exposure to traumatic stress that is characterized by symptoms of re-experiencing, avoidance, and hyper-arousal. While it is widely accepted that brain regions involved in emotional regulation and memory—e.g., the amygdala and hippocampus—are dysregulated in PTSD, the pathophysiology of the disorder is not well defined and therefore, pharmacological interventions are extremely limited. Because stress hormones norepinephrine and cortisol (corticosterone in rats) are heavily implicated in the disorder, we explored whether preemptively and systemically antagonizing β-adrenergic and glucocorticoid receptors with propranolol and mifepristone are sufficient to mitigate pathological changes in synaptic plasticity, gene expression, and anxiety induced by a modified social defeat (SD) stress protocol. Young adult, male Sprague Dawley rats were initially pre-screened for anxiety. The rats were then exposed to SD and chronic light stress to induce anxiety-like symptoms. Drug-treated rats were administered propranolol and mifepristone injections prior to and continuing throughout SD stress. Using competitive ELISAs on plasma, field electrophysiology at CA1 of the ventral hippocampus (VH) and the basolateral amygdala (BLA), quantitative RT-PCR, and behavior assays, we demonstrate that our SD stress increased anxiety-like behavior, elevated long-term potentiation (LTP) in the VH and BLA, and altered the expression of mineralocorticoid, glucocorticoid, and glutamate receptors. These measures largely reverted to control levels with the administration of propranolol and mifepristone. Our findings indicate that SD stress increases LTP in the VH and BLA and that prophylactic treatment with propranolol and mifepristone may have the potential in mitigating these and other stress-induced effects. MDPI 2023-07-07 /pmc/articles/PMC10342862/ /pubmed/37446371 http://dx.doi.org/10.3390/ijms241311193 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Winzenried, Eric T.
Everett, Anna C.
Saito, Erin R.
Miller, Roxanne M.
Johnson, Taylor
Neal, Eliza
Boyce, Zachary
Smith, Calvin
Jensen, Chloe
Kimball, Spencer
Brantley, Adam
Melendez, Gabriel
Moffat, Devin
Davis, Erin
Aponik, Lyndsey
Crofts, Tyler
Dabney, Bryson
Edwards, Jeffrey G.
Effects of a True Prophylactic Treatment on Hippocampal and Amygdala Synaptic Plasticity and Gene Expression in a Rodent Chronic Stress Model of Social Defeat
title Effects of a True Prophylactic Treatment on Hippocampal and Amygdala Synaptic Plasticity and Gene Expression in a Rodent Chronic Stress Model of Social Defeat
title_full Effects of a True Prophylactic Treatment on Hippocampal and Amygdala Synaptic Plasticity and Gene Expression in a Rodent Chronic Stress Model of Social Defeat
title_fullStr Effects of a True Prophylactic Treatment on Hippocampal and Amygdala Synaptic Plasticity and Gene Expression in a Rodent Chronic Stress Model of Social Defeat
title_full_unstemmed Effects of a True Prophylactic Treatment on Hippocampal and Amygdala Synaptic Plasticity and Gene Expression in a Rodent Chronic Stress Model of Social Defeat
title_short Effects of a True Prophylactic Treatment on Hippocampal and Amygdala Synaptic Plasticity and Gene Expression in a Rodent Chronic Stress Model of Social Defeat
title_sort effects of a true prophylactic treatment on hippocampal and amygdala synaptic plasticity and gene expression in a rodent chronic stress model of social defeat
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10342862/
https://www.ncbi.nlm.nih.gov/pubmed/37446371
http://dx.doi.org/10.3390/ijms241311193
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