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A Chronic Immobilization Stress Protocol for Inducing Depression-Like Behavior in Mice
Published on: May 15, 2019
Stress-Induced Morphological, Cellular and Molecular Changes in the Brain-Lessons Learned from the Chronic Mild
Ahmad Raza Khan1, Lili Geiger2,3, Ove Wiborg4
1Centre of Biomedical Research, Sanjay Gandhi Post Graduate Institute (SGPGI) Campus, Lucknow-226017, U.P, India.
Abstract:
Major depressive disorder (MDD) is a severe illness imposing an increasing social and economic burden worldwide. Numerous rodent models have been developed to investigate the pathophysiology of MDD. One of the best characterized and most widely used models is the chronic mild stress (CMS) model which was developed more than 30 years ago by Paul Willner. More than 2000 published studies used this model, mainly to assess novel compounds with potential antidepressant efficacy. Most of these studies examined the behavioral consequences of stress and concomitant drug intervention. Much fewer studies focused on the CMS-induced neurobiological changes. However, the stress-induced cellular and molecular changes are important as they may serve as potential translational biomarkers and increase our understanding of the pathophysiology of MDD. Here, we summarize current knowledge on the structural and molecular alterations in the brain that have been described using the CMS model. We discuss the latest neuroimaging and postmortem histopathological data as well as molecular changes including recent findings on microRNA levels. Different chronic stress paradigms occasionally deliver dissimilar findings, but the available experimental data provide convincing evidence that the CMS model has a high translational value. Future studies examining the neurobiological changes in the CMS model in combination with clinically effective antidepressant drug intervention will likely deliver further valuable information on the pathophysiology of MDD.
Insights
The chronic mild stress (CMS) model reveals significant brain alterations in rodents, offering valuable insights into major depressive disorder (MDD) pathophysiology. These neurobiological changes serve as potential biomarkers for developing new antidepressant treatments.
Area of Science:
- Neuroscience
- Psychiatry
- Animal Models
Background:
- Major depressive disorder (MDD) presents a growing global health challenge.
- Rodent models are crucial for understanding MDD pathophysiology.
- The chronic mild stress (CMS) model is a well-established tool with over 2000 studies.
Purpose of the Study:
- To review structural and molecular brain alterations in the CMS model.
- To highlight the translational value of the CMS model for MDD research.
- To explore potential biomarkers for MDD.
Main Methods:
- Literature review of studies using the CMS model.
- Analysis of neuroimaging and histopathological data.
- Examination of molecular changes, including microRNA levels.
Main Results:
- The CMS model demonstrates significant neurobiological changes relevant to MDD.
- Studies show structural and molecular alterations in the brain.
- MicroRNA changes are emerging as important findings.
Conclusions:
- The CMS model possesses high translational value for investigating MDD.
- Neurobiological changes in the CMS model can serve as potential biomarkers.
- Further research combining CMS with antidepressant interventions is warranted.
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