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MRI-guided dmPFC-rTMS as a Treatment for Treatment-resistant Major Depressive Disorder
Published on: August 11, 2015
Exosomal miR-1202 mediates Brodmann Area 44 functional connectivity changes in medication-free patients with major
Shuguang Han1, Qingtong Zheng2, Zixuan Zheng3
1School of Medical Imaging, Xuzhou Medical University, Xuzhou, China; Research Center for Psychological Crisis Prevention and Intervention of College Students in Jiangsu Province, Jiangsu, China; Department of Radiology, Affiliated Hospital of Xuzhou Medical University, Xuzhou Medical University, Xuzhou, China.
Abstract:
Previous large-sample postmortem study revealed that the expression of miR-1202 in brain tissues from Brodmann area 44 (BA44) was dysregulated in patients with major depressive disorder (MDDs). However, the specific in vivo neuropathological mechanism of miR-1202 as well as its interplay with BA44 circuits in the depressed brain are still unclear. Here, we performed a case-control study with imaging-genetic approach based on resting-state functional magnetic resonance imaging (MRI) data and miR-1202 quantification from 110 medication-free MDDs and 102 healthy controls. Serum-derived circulating exosomes that readily cross the blood-brain barrier were isolated to quantify miR-1202. For validation, repeated MR scans were performed after a six-week follow-up of antidepressant treatment on a cohort of MDDs. Voxelwise factorial analysis revealed two brain areas (including the striatal-thalamic region) in which the effect of depression on the functional connectivity with BA44 was significantly dependent on the expression level of exosomal miR-1202. Moreover, longitudinal change of the BA44 connectivity with the striatal-thalamic region in MDDs after antidepressant treatment was found to be significantly related to the level of miR-1202 expression. These findings revealed that the in vivo neuropathological effect of miR-1202 dysregulation in depression is possibly exerted by mediating neural functional abnormalities in BA44-striatal-thalamic circuits.
Insights
MicroRNA-1202 (miR-1202) dysregulation impacts brain circuits in major depressive disorder (MDD). This study links exosomal miR-1202 levels to functional connectivity changes in MDD patients, suggesting a novel therapeutic target.
Area of Science:
- Neuroscience
- Psychiatry
- Genetics
Background:
- Major depressive disorder (MDD) is associated with dysregulated microRNA-1202 (miR-1202) expression in Brodmann area 44 (BA44).
- The in vivo neuropathological mechanisms and circuit interactions of miR-1202 in MDD remain unclear.
Purpose of the Study:
- To investigate the in vivo role of miR-1202 in the neuropathology of MDD.
- To explore the relationship between exosomal miR-1202 levels and functional brain connectivity in BA44 circuits.
Main Methods:
- A case-control study using resting-state functional MRI and serum exosomal miR-1202 quantification in 110 MDD patients and 102 healthy controls.
- Voxelwise factorial analysis to assess the interaction between depression, miR-1202 levels, and functional connectivity.
- Longitudinal assessment of brain connectivity changes after antidepressant treatment.
Main Results:
- Functional connectivity between BA44 and the striatal-thalamic region was significantly dependent on exosomal miR-1202 levels in MDD.
- Changes in BA44-striatal-thalamic connectivity after antidepressant treatment correlated with miR-1202 expression levels.
- Exosomal miR-1202 levels mediate neural functional abnormalities in BA44-striatal-thalamic circuits in depression.
Conclusions:
- Exosomal miR-1202 plays a significant role in the in vivo neuropathology of MDD.
- miR-1202 may represent a potential biomarker and therapeutic target for MDD by modulating BA44-striatal-thalamic circuit function.
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