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Updated: Aug 19, 2026

The Forced Swim Test as a Model of Depressive-like Behavior
Published on: March 2, 2015
Regulation of corticosteroid receptor gene expression in depression and antidepressant action
1Laval University Hospital Research Centre, Université Laval, Ste-Foy, Que.
Objective:
Major alterations of the hypothalamic-pituitary-adrenocortical (HPA) system are often seen in patients with depression, and can be reversed by successful antidepressant therapy. Persuasive evidence points to the involvement of a dysfunctional glucocorticoid receptor system in these changes. The authors developed a transgenic mouse to determine the mechanism for these changes.
Design:
In vivo and in vitro animal experiments.
Animals:
Transgenic mice expressing glucocorticoid receptor antisense RNA and control mice.
Interventions:
In vivo: hormone assays and dexamethasone suppression tests; in vitro: cell transfection, chloramphenicol acetyl transferase assay, Northern blot analysis, binding assays of cytosolic receptor.
Outcome Measures:
Indicators of depressive disorder in transgenic mice, effect of antidepressant therapy on dexamethasone binding in transgenic mouse hippocampus, mouse behaviour, and glucocorticoid receptor activity.
Results:
Transgenic mice showed no suppression of corticosterone with a dose of 2 mg per 100 g body weight dexamethasone. Treatment with amitriptyline reduced levels of corticotropin and corticosterone, increased glucocorticoid receptor mRNA concentrations and glucocorticoid binding capacity of several brain areas, and reversed behavioural changes. In vitro experiments also showed that desipramine increased glucocorticoid receptor mRNA.
Conclusion:
These transgenic mice have numerous neuroendocrine characteristics of human depression as well as altered behaviour. Many of these neuroendocrinologic and behavioural characteristics are reversed by antidepressants. The antidepressant-induced increase in glucocorticoid receptor activity may render the HPA axis more sensitive to glucocorticoid feedback. This new insight into antidepressant drug action suggests a novel approach to the development of new antidepressant drugs.
Insights
Transgenic mice with altered glucocorticoid receptor function mimic depression neuroendocrine and behavioral changes. Antidepressant treatment reversed these effects, suggesting a novel therapeutic target for depression.
Area of Science:
- Neuroscience
- Endocrinology
- Pharmacology
Background:
- Hypothalamic-pituitary-adrenocortical (HPA) system alterations are common in depression and linked to glucocorticoid receptor (GR) dysfunction.
- Successful antidepressant therapy can normalize HPA axis activity.
Purpose of the Study:
- To investigate the mechanism of HPA system changes in depression using a novel transgenic mouse model.
- To explore the role of GR in mediating antidepressant effects.
Main Methods:
- Developed transgenic mice expressing GR antisense RNA to model depression.
- Conducted in vivo (hormone assays, dexamethasone suppression tests) and in vitro (cell transfection, molecular analyses) experiments.
- Assessed behavioral changes and GR activity in response to antidepressant treatment.
Main Results:
- Transgenic mice exhibited blunted dexamethasone suppression and depressive-like behaviors.
- Antidepressant treatment (amitriptyline, desipramine) normalized corticosterone levels, increased GR mRNA and binding capacity, and improved behavior.
- In vitro studies confirmed desipramine's effect on GR mRNA.
Conclusions:
- Transgenic mice display key neuroendocrine and behavioral features of human depression.
- Antidepressants reverse these characteristics by enhancing GR activity, potentially increasing HPA axis sensitivity to feedback.
- This provides novel insights into antidepressant mechanisms and suggests new drug development strategies.
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