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499. Chronic stress impairs synaptic central metabolism in the prefrontal cortex, driving depression-related behaviors in mice

Sep 2026 · International Journal of Neuropsychopharmacology · Vol 29, pp. i84 - i84 · 0 citations

TL;DR

It is demonstrated that chronic stress disrupts central energy metabolism at prefrontal cortical synapses, driving to synaptic pathology and behavioral vulnerability and highlighting synaptic metabolic pathways as promising pharmacological targets for the treatment of stress-related psychiatric disorders.

Abstract

Abstract Background Stress-related psychiatric disorders, including depression, are closely associated with alterations in synaptic structure and function in higher-order cortical regions. Accumulating evidence suggests that mitochondrial dysfunction contributes to stress-induced synaptic pathology. However, how chronic stress affects metabolic pathways at synapses, and how such alterations translate into behavioral abnormalities, remain unclear. Aims & Objectives Given the central role of energy metabolism in synaptic maintenance and plasticity, we examined the impact of chronic social stress on metabolic regulation at prefrontal cortical synapses and its functional implications. Method Male C57BL/6 mice were subjected to chronic social defeat stress. After chronic stress exposure, animals were categorized as stress-susceptible or resilient based on social interaction behavior. Synaptic structure and mitochondrial ultrastructure in the medial prefrontal cortex were analyzed using three-dimensional electron microscopy, expansion microscopy, and confocal imaging. Synaptic mitochondrial function was assessed using biochemical and respiratory assays. Comprehensive proteomic and metabolomic analyses, including mass spectrometry imaging, were employed to characterize stress-induced metabolic alterations. Neuronal activity was monitored by in vivo two-photon calcium imaging. To evaluate functional relevance, metabolic pathways were experimentally modulated in prefrontal neurons and their effects on synaptic integrity, neuronal activity, and behavior were assessed. Results Chronic social stress selectively reduced the size of mitochondria-containing synapses and induced marked abnormalities in synaptic mitochondrial morphology and function. Proteomic and metabolomic profiling revealed pronounced stress-dependent alterations in central metabolic pathways, particularly those associated with mitochondrial energy production. Spatial metabolomic analysis demonstrated region-specific metabolic dysregulation in the medial prefrontal cortex. Importantly, targeted modulation of central metabolic processes restored synaptic structure, normalized neuronal activity, and alleviated depression-related behaviors in stressed mice. Discussion & Conclusions These findings demonstrate that chronic stress disrupts central energy metabolism at prefrontal cortical synapses, driving to synaptic pathology and behavioral vulnerability. Our results highlight synaptic metabolic pathways as promising pharmacological targets for the treatment of stress-related psychiatric disorders.

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