Insights from interferon-α-related depression for the pathogenesis of depression associated with inflammation

Carolina Hoyo-Becerra1, Joerg F Schlaak1, Dirk M Hermann2

  • 1Department of Gastroenterology and Hepatology, University Hospital Essen, Germany.

Insights

Interferon-alfa (IFN-α) therapy can cause depression by altering brain metabolism and neurotrophic signaling. This IFN-α-induced depression may serve as a model for understanding major depression and identifying new antidepressant targets.

Area of Science:

  • Neuroscience
  • Immunology
  • Pharmacology

Background:

  • Interferon-alfa (IFN-α) is a therapeutic cytokine used for chronic hepatitis, melanoma, and lymphoma.
  • IFN-α administration frequently causes mood and cognitive disturbances, including depression, in patients.
  • The mechanisms underlying IFN-α-induced depression offer insights into major depressive disorder pathogenesis.

Purpose of the Study:

  • To explore the neurobiological underpinnings of Interferon-alfa (IFN-α)-related depression.
  • To investigate IFN-α's impact on neurotransmitter pathways, neurotrophic signaling, and neuronal plasticity.
  • To establish IFN-α-induced depression as a model for studying neurodegeneration and depression.

Main Methods:

  • Review of existing literature on IFN-α therapy and its psychiatric side effects.
  • Analysis of IFN-α's effects on the kynurenine pathway and neurotransmitter synthesis (serotonin, dopamine).
  • Examination of IFN-α's influence on neurotrophic factors, neurogenesis, and synaptic plasticity.

Main Results:

  • IFN-α activates the indoleamine-2,3 dioxygenase-1 (IDO1) enzyme, leading to reduced serotonin and dopamine synthesis.
  • The kynurenine pathway is dysregulated, increasing neurotoxic quinolinic acid and decreasing neuroprotective kynurenic acid.
  • IFN-α impairs neurotrophic signaling, hindering neurite outgrowth, neurogenesis, and neuronal survival.

Conclusions:

  • IFN-α-induced depression shares neurobiological similarities with idiopathic major depression, including altered brain metabolism and genetic signatures.
  • IFN-α-related depression serves as a valuable model for investigating the links between neuronal plasticity, neurodegeneration, and depression.
  • This model holds potential for identifying novel therapeutic targets for antidepressant treatments and deepening the understanding of major depressive disorder.

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