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Published on: September 8, 2021
Peripheral mitochondrial DNA as a neuroinflammatory biomarker for major depressive disorder
Jinmei Ye1, Cong Duan1, Jiaxin Han2
1Division of Mood Disorder, Shanghai Mental Health Center, Shanghai Jiao Tong University School of Medicine, Shanghai, China.
Abstract:
In the pathogenesis of major depressive disorder, chronic stress-related neuroinflammation hinders favorable prognosis and antidepressant response. Mitochondrial DNA may be an inflammatory trigger, after its release from stress-induced dysfunctional central nervous system mitochondria into peripheral circulation. This evidence supports the potential use of peripheral mitochondrial DNA as a neuroinflammatory biomarker for the diagnosis and treatment of major depressive disorder. Herein, we critically review the neuroinflammation theory in major depressive disorder, providing compelling evidence that mitochondrial DNA release acts as a critical biological substrate, and that it constitutes the neuroinflammatory disease pathway. After its release, mitochondrial DNA can be carried in the exosomes and transported to extracellular spaces in the central nervous system and peripheral circulation. Detectable exosomes render encaged mitochondrial DNA relatively stable. This mitochondrial DNA in peripheral circulation can thus be directly detected in clinical practice. These characteristics illustrate the potential for mitochondrial DNA to serve as an innovative clinical biomarker and molecular treatment target for major depressive disorder. This review also highlights the future potential value of clinical applications combining mitochondrial DNA with a panel of other biomarkers, to improve diagnostic precision in major depressive disorder.
Insights
Mitochondrial DNA released due to chronic stress may indicate neuroinflammation in major depressive disorder. Detecting this peripheral mitochondrial DNA offers a potential biomarker for diagnosis and treatment.
Area of Science:
- Neuroscience
- Immunology
- Genetics
Background:
- Chronic stress-induced neuroinflammation is implicated in major depressive disorder (MDD) pathogenesis.
- This neuroinflammation negatively impacts prognosis and response to antidepressants.
- Mitochondrial dysfunction and subsequent release of mitochondrial DNA (mtDNA) are hypothesized contributors.
Purpose of the Study:
- To review the neuroinflammation theory in MDD.
- To present evidence for mtDNA release as a critical neuroinflammatory pathway in MDD.
- To explore the potential of peripheral mtDNA as a biomarker and therapeutic target for MDD.
Main Methods:
- Critical review of existing literature on neuroinflammation in MDD.
- Analysis of the role of stress-induced mitochondrial dysfunction and mtDNA release.
- Examination of mtDNA transport via exosomes in CNS and peripheral circulation.
Main Results:
- Evidence suggests stress-induced release of mtDNA from CNS mitochondria into circulation.
- mtDNA, when encased in exosomes, is stable and detectable in peripheral blood.
- This peripheral mtDNA represents a potential molecular substrate for neuroinflammation in MDD.
Conclusions:
- Peripheral mitochondrial DNA shows promise as a novel neuroinflammatory biomarker for MDD diagnosis.
- mtDNA may also serve as a molecular target for novel MDD treatments.
- Combining mtDNA with other biomarkers could enhance diagnostic accuracy for MDD.

