Regulation of corticosteroid receptor gene expression in depression and antidepressant action

N Barden1

  • 1Laval University Hospital Research Centre, Université Laval, Ste-Foy, Que.

Abstract

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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