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Updated: Mar 27, 2026

Characterization of Immune Cell-derived Extracellular Vesicles and Studying Functional Impact on Cell Environment
Published on: June 2, 2020
Neuroinflammation and Depression: Microglia Activation, Extracellular Microvesicles and microRNA Dysregulation
Dora Brites1, Adelaide Fernandes1
1Research Institute for Medicines (iMed.ULisboa), Faculty of Pharmacy, Universidade de LisboaLisbon, Portugal; Department of Biochemistry and Human Biology, Faculty of Pharmacy, Universidade de LisboaLisbon, Portugal.
Abstract:
Patients with chronic inflammation are often associated with the emergence of depression symptoms, while diagnosed depressed patients show increased levels of circulating cytokines. Further studies revealed the activation of the brain immune cell microglia in depressed patients with a greater magnitude in individuals that committed suicide, indicating a crucial role for neuroinflammation in depression brain pathogenesis. Rapid advances in the understanding of microglial and astrocytic neurobiology were obtained in the past 15-20 years. Indeed, recent data reveal that microglia play an important role in managing neuronal cell death, neurogenesis, and synaptic interactions, besides their involvement in immune-response generating cytokines. The communication between microglia and neurons is essential to synchronize these diverse functions with brain activity. Evidence is accumulating that secreted extracellular vesicles (EVs), comprising ectosomes and exosomes with a size ranging from 0.1-1 μm, are key players in intercellular signaling. These EVs may carry specific proteins, mRNAs and microRNAs (miRNAs). Transfer of exosomes to neurons was shown to be mediated by oligodendrocytes, microglia and astrocytes that may either be supportive to neurons, or instead disseminate the disease. Interestingly, several recent reports have identified changes in miRNAs in depressed patients, which target not only crucial pathways associated with synaptic plasticity, learning and memory but also the production of neurotrophic factors and immune cell modulation. In this article, we discuss the role of neuroinflammation in the emergence of depression, namely dynamic alterations in the status of microglia response to stimulation, and how their activation phenotypes may have an etiological role in neurodegeneneration, in particular in depressive-like behavior. We will overview the involvement of miRNAs, exosomes, ectosomes and microglia in regulating critical pathways associated with depression and how they may contribute to other brain disorders including amyotrophic lateral sclerosis (ALS), Alzheimer's disease (AD) and Parkinson's disease (PD), which share several neuroinflammatory-associated processes. Specific reference will be made to EVs as potential biomarkers and disease monitoring approaches, focusing on their potentialities as drug delivery vehicles, and on putative therapeutic strategies using autologous exosome-based delivery systems to treat neurodegenerative and psychiatric disorders.
Insights
Neuroinflammation, driven by microglia activation and extracellular vesicles (EVs), plays a key role in depression. Understanding microRNA (miRNA) and exosome involvement offers potential therapeutic strategies for brain disorders.
Area of Science:
- Neuroscience
- Immunology
- Psychiatry
Background:
- Chronic inflammation and depression are linked, with elevated cytokines and activated microglia observed in depressed patients.
- Microglia and astrocytes are crucial for neuronal health, synaptic function, and immune responses in the brain.
- Extracellular vesicles (EVs), including exosomes and ectosomes, mediate intercellular communication by transferring proteins, mRNA, and microRNAs (miRNAs).
Purpose of the Study:
- To explore the role of neuroinflammation, particularly microglia activation, in the pathogenesis of depression.
- To investigate the involvement of miRNAs, exosomes, and ectosomes in regulating depression-related pathways.
- To discuss the potential of EVs as biomarkers and therapeutic delivery systems for psychiatric and neurodegenerative disorders.
Main Methods:
- Review of recent literature on neuroinflammation, microglia, astrocytes, EVs, and miRNAs in depression.
- Analysis of the etiological role of microglia activation phenotypes in depressive behavior.
- Examination of shared neuroinflammatory processes in depression, ALS, AD, and PD.
Main Results:
- Microglia activation is implicated in neurodegeneration and depressive-like behavior.
- miRNAs within EVs target key pathways in synaptic plasticity, neurotrophic factor production, and immune modulation.
- EVs show potential as biomarkers for disease monitoring and as vehicles for drug delivery.
Conclusions:
- Neuroinflammation, mediated by microglia and EVs, is central to depression.
- Dysregulation of miRNA and exosome signaling contributes to depressive disorders.
- EV-based therapies offer promising avenues for treating neurodegenerative and psychiatric conditions.
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