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Disruption of a GalR2-mitochondrial axis in the ventral hippocampus contributes to depression-like phenotypes after prenatal stress.

Created on 15 Sep 2026

Authors

Jingjing Yue, Jing Zhang, Xiaoyi Yu, Zhiheng Li, Yanhua Wang, Siyi Zhao, Yunfei Bai, Xiaoxiao Li, Hui Li, Yutao Yang, Zhi-Qing David Xu

Published in

Frontiers in psychiatry. Volume 17. Pages 1809262. Epub Jun 08, 2026.

Abstract

Prenatal stress (PS) is a major risk factor for depression later in life, yet the cellular mechanisms linking early-life adversity to long-term affective vulnerability remain incompletely understood. Neuropeptide receptors have emerged as important modulators of stress-related psychopathology, but their roles in mitochondrial regulation within limbic circuits remain largely unexplored.
A rat model of PS was established to assess depression-like behaviors in adulthood. Mitochondrial ultrastructure, ATP production, and the expression of Galanin receptor 2 (GalR2) and key components of the PINK1/Parkin mitochondrial quality control machinery were examined in the ventral hippocampus (vHPC). The effects of intranasal administration of the GalR2 agonist AR-M1896 on behavioral and mitochondrial alterations were evaluated in vivo. To directly test whether the vHPC mediates these effects, we performed unilateral intra-vHPC infusion of AR-M1896. In vitro, glucocorticoid exposure and pharmacological manipulation of GalR2 were used to assess their impact on mitochondrial function and PINK1/Parkin signaling.
PS induced persistent anhedonia-like behavior and behavioral despair phenotypes in adult offspring, accompanied by marked mitochondrial structural abnormalities, reduced ATP production, and downregulation of GalR2 and PINK1/Parkin-associated mitochondrial quality control signaling in the vHPC. Intranasal AR-M1896 partially normalized reward-related behavioral deficits and ameliorated mitochondrial dysfunction. Importantly, direct intra-vHPC infusion of AR-M1896 elevated ATP, PINK1 and Parkin levels in the ipsilateral vHPC, providing causal evidence that the vHPC is a critical site for GalR2-mediated PINK1/Parkin-related mitophagy-restoring effects. In cell-based assays, glucocorticoid exposure suppressed, whereas GalR2 activation enhanced, mitochondrial membrane potential and PINK1/Parkin-related signaling.
These findings identify a GalR2-mitochondrial axis in the ventral hippocampus that is disrupted by PS and associated with vulnerability to depression-like phenotypes. The complementary intra-vHPC infusion experiments establish a causal role for vHPC GalR2 signaling in rescuing mitochondrial deficits, directly demonstrating that intranasal AR-M1896 acts at least in part via the vHPC. This receptor-organelle pathway may represent a neurobiological mechanism linking early-life adversity to long-term affective dysfunction.

PMID:
42338733
Bibliographic data and abstract were imported from PubMed on 15 Sep 2026.

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