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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.
Abstract:
Interferon-α (IFN-α) is a pleiotropic cytokine that is administered as a therapeutic in highly prevalent medical conditions such as chronic hepatitis C and B virus infection, melanoma and lymphoma. IFN-α induces, to a clinically relevant degree, concentration, memory, drive and mood disturbances in almost half of all patients. For this reason, IFN-α is increasingly being replaced by more specifically acting drugs. In the past decades, IFN-α has offered a valuable insight into the pathogenesis of major depression, particularly in settings associated with inflammation. IFN-α triggers immune responses, hypothalamo-pituitary-adrenal axis abnormalities and disturbances of brain metabolism resembling those in other depression states. IFN-α stimulates indoleamine-2,3 dioxygenase-1, activating the kynurenine pathway with reduced formation of the neurotransmitters serotonin and dopamine, excessive formation of the NMDA agonist quinolinic acid, and reduced formation of the NMDA antagonist kynurenic acid. In addition, IFN-α disturbs neurotrophic signaling and impedes neurite outgrowth, synaptic plasticity, endogenous neurogenesis and neuronal survival. Consequently, IFN-α-related depression may represent a model for the neurodegenerative changes that are noticed in late-life major depression. Indeed, the observation that brain responses in IFN-α-related depression resemble idiopathic depression is supported by the existence of common genetic signatures, among which of note, a number of neuronal survival and plasticity genes have been identified. In view of the high incidence of depressive symptoms, IFN-α-related depression is an attractive model for studying links between neuronal plasticity, neurodegeneration and depression. We predict that in the latter areas new targets for anti-depressant therapies could be identified, which may deepen our understanding of idiopathic major depression.
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