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Updated: Mar 22, 2026

Isolation of Cortical Microglia with Preserved Immunophenotype and Functionality From Murine Neonates
Published on: January 30, 2014
Antidepressant therapies inhibit inflammation and microglial M1-polarization
Hans O Kalkman1, Dominik Feuerbach1
1Neuroscience Research, NIBR, Fabrikstrasse 22-3.001.02, Basel 4002, Switzerland.
Abstract:
Macrophages and their counterparts in the central nervous system, the microglia, detect and subsequently clear microbial pathogens and injured tissue. These phagocytic cells alter and adapt their phenotype depending on their prime activity, i.e., whether they participate in acute defence against pathogenic organisms ('M1'-phenotype) or in clearing damaged tissues and performing repair activities ('M2'-phenotype). Stimulation of pattern recognition receptors by viruses (vaccines), bacterial membrane components (e.g., LPS), alcohol, or long-chain saturated fatty acids promotes M1-polarization. Vaccine or LPS administration to healthy human subjects can result in sickness symptoms and low mood. Alcohol abuse and abdominal obesity are recognized as risk factors for depression. In the M1-polarized form, microglia and macrophages generate reactive oxygen and nitrogen radicals to eradicate microbial pathogens. Inadvertently, also tetrahydrobiopterin (BH4) may become oxidized. This is an irreversible reaction that generates neopterin, a recognized biomarker for depression. BH4 is a critical cofactor for the synthesis of dopamine, noradrenaline, and serotonin, and its loss could explain some of the symptoms of depression. Based on these aspects, the suppression of M1-polarization would limit the inadvertent catabolism of BH4. In the current review, we evaluate the evidence that antidepressant treatments (monoamine reuptake inhibitors, PDE4 inhibitors, lithium, valproate, agomelatine, tianeptine, electroconvulsive shock, and vagus nerve stimulation) inhibit LPS-induced microglia/macrophage M1-polarization. Consequently, we propose that supplementation with BH4 could limit the reduction in central monoamine synthesis and might represent an effective treatment for depressed mood.
Insights
Certain antidepressants may suppress M1-polarized microglia and macrophages, reducing tetrahydrobiopterin (BH4) breakdown. Supplementing with BH4 could boost monoamine synthesis and treat depression.
Area of Science:
- Neuroimmunology
- Cellular Biology
- Psychiatry
Background:
- Macrophages and microglia are phagocytic cells with M1 (defense) and M2 (repair) phenotypes.
- M1 polarization, induced by LPS or alcohol, generates radicals that oxidize tetrahydrobiopterin (BH4).
- BH4 is crucial for dopamine, noradrenaline, and serotonin synthesis; its depletion is linked to depression.
Purpose of the Study:
- To review evidence that antidepressants inhibit M1 polarization of microglia/macrophages.
- To explore the potential of BH4 supplementation as a depression treatment.
Main Methods:
- Literature review of studies on M1 polarization and antidepressant mechanisms.
- Analysis of the role of BH4 in monoamine synthesis and depression.
Main Results:
- LPS administration can induce sickness symptoms and low mood.
- Antidepressants including SSRIs, PDE4 inhibitors, and ECT may inhibit M1 polarization.
- Oxidation of BH4 during M1 polarization leads to neopterin production, a depression biomarker.
Conclusions:
- Suppression of M1 polarization may prevent BH4 catabolism.
- BH4 supplementation could restore monoamine synthesis and alleviate depressive symptoms.
- This suggests a novel therapeutic strategy for depression targeting neuroinflammation.
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