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April 29, 2026Psychological Medicine0 citationsOpen Access

Intrinsic regional brain activity differences and its relationship with neurotransmitter and gene expression in postpartum depression: a voxel-based meta-analysis

GCGuanmao ChenXTXinyue TangPCPan Chen

Key Points

  • This research aims to clarify regional brain activity differences and their connections to neurotransmitter systems and gene expression in postpartum depression.
  • Conducted a voxel-wise meta-analysis of resting-state functional imaging studies comparing PPD patients and healthy controls.
  • Utilized SDM-PSI software and analyzed neurotransmitter maps with JuSpace toolbox.
  • Sourced transcriptional data from the Allen Human Brain Atlas.
  • Identified increased functional activity in the left inferior occipital gyrus and left precuneus in PPD patients.
  • Found decreased activity in the right amygdala and left precentral gyrus in PPD patients.
  • Observed spatial overlaps with serotonergic, dopaminergic, and VAChT systems, alongside PPD-related gene enrichments in ion channel functions.

Abstract

BACKGROUND: Inconsistent findings persist across resting-state functional imaging studies of regional brain alterations in postpartum depression (PPD), while connections to transcriptional profiles and neurotransmitter systems remain largely uncharacterized. METHODS: We performed a whole-brain voxel-wise meta-analysis of resting-state functional imaging studies comparing PPD patients and healthy controls using SDM-PSI software. JuSpace toolbox analyzed atlas-based nuclear imaging-derived neurotransmitter maps, and transcriptional data were sourced from the Allen Human Brain Atlas. RESULTS: Our systematic review identified 12 functional imaging studies (475 PPD patients, 504 controls). Patients with PPD displayed increased resting-state functional activity in the left inferior occipital gyrus and left precuneus as well as decreased resting-state functional activity in the right amygdala and left precentral gyrus. These functional alterations spatially overlapped with serotonergic, dopaminergic, and VAChT systems. Transcriptional analysis revealed PPD-related gene enrichments in ion channel function (transmembrane transport, gated/passive channels) and channel complexes. CONCLUSIONS: The meta-analysis revealed functional alterations within the DMN, limbic, and primary sensorimotor systems in PPD patients. These changes were linked to neurotransmitter alterations and genetic modulations underlying brain dysfunction. Collectively, these findings advance mechanistic understanding of PPD pathophysiology.

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Cite This Study

Chen et al. (2026) studied this question.

synapsesocial.com/papers/69f19f74edf4b468248064c2https://doi.org/10.1017/s0033291726103651
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