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Research Progress on the Biological Function and Homeostatic Disruption of Microglia in the Pathogenesis of Major
Shuqi Kong1,2,3, Zhuoyue Huang1,2,3, Yiru Fang4,5,6
1Shanghai Mental Health Center, Shanghai Jiao Tong University School of Medicine, Shanghai, 200030, China.
Abstract:
Depression is a major global public health issue. The recurrent episodes of depression and its unpredictable suicide risk have posed a critical medical challenge, highlighting the urgent need for an in-depth investigation into its underlying mechanisms. While the conventional hypothesis of monoamine neurotransmitter depletion is the primary cause of major depressive disorder (MDD), this theory does not entirely explain the complexity and clinical variability of MDD. The presence of treatment-resistant depression (TRD), as a subgroup of MDD, serves as compelling evidence. The immune-inflammation hypothesis has gained increasing attention, with a growing focus on the pivotal role of microglia in this framework. Microglia, the resident immune cells of the central nervous system, sustain homeostasis through self-renewal in adulthood. They are essential for regulating neuron survival, apoptosis, and synaptic plasticity under normal physiological conditions. Under pathological situations, such as traumatic injury, infection, and psychological stress, microglia receive stimulating signals to promptly respond to events. When microglia homeostasis is disrupted, they become over-activated, releasing pro-inflammatory cytokines, activating related signaling pathways, and disrupting neurotransmitter metabolism. This triggers neuroinflammation, oxidative stress, and mitochondrial dysfunction, which hinder neurogenesis, disrupt neural circuits, and ultimately contribute to MDD progression, or even potentially advance it to TRD. This review focuses on the relationship between the biology of microglia and MDD, providing a comprehensive analysis of microglial biological characteristics, factors affecting microglia function, and underlying mechanisms associated with MDD. In conclusion, this review provides a novel perspective on the pathogenesis of MDD from the angle of microglial homeostasis imbalance, aiming to lay a theoretical basis for subsequent investigation of the mechanism. In addition, based on the mechanism of neuroinflammation caused by microglial homeostasis imbalance in MDD, this review aims to offer two new promising therapeutic approaches for MDD and even its progression to the TRD stage.
Insights
Major depressive disorder (MDD) may stem from immune system imbalance involving microglia. Disrupting microglial homeostasis triggers neuroinflammation, contributing to MDD and treatment-resistant depression (TRD).
Area of Science:
- Neuroscience
- Immunology
- Psychiatry
Background:
- Major depressive disorder (MDD) is a global health issue with complex mechanisms beyond traditional neurotransmitter theories.
- Treatment-resistant depression (TRD) highlights the need for novel etiological insights.
- The immune-inflammation hypothesis, particularly the role of microglia, is gaining prominence in understanding MDD.
Purpose of the Study:
- To review the biological characteristics of microglia and their role in MDD pathogenesis.
- To analyze factors influencing microglial function in the context of MDD.
- To explore the link between microglial homeostasis imbalance and neuroinflammation in MDD and TRD.
Main Methods:
- Literature review focusing on microglial biology and its connection to major depressive disorder.
- Analysis of microglial activation, pro-inflammatory cytokine release, and signaling pathways.
- Examination of how disrupted microglial homeostasis contributes to neuroinflammation, oxidative stress, and mitochondrial dysfunction.
Main Results:
- Microglia, the CNS immune cells, are crucial for neuronal health but can become over-activated under stress.
- Dysregulated microglia contribute to neuroinflammation, oxidative stress, and mitochondrial dysfunction, impacting neurogenesis and neural circuits.
- Imbalanced microglial homeostasis is proposed as a key factor in MDD progression and TRD.
Conclusions:
- Microglial homeostasis imbalance offers a novel perspective on MDD pathogenesis.
- Neuroinflammation driven by microglia presents potential therapeutic targets for MDD and TRD.
- Further research into microglial mechanisms could lead to new treatment strategies for depression.
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