🧬 BDNF Extraction Viewer

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NR2B-CaMKII signaling in the dentate gyrus driven by astrocytic P2Y1Rs mediates the antidepressant effect of low-dose LPS.

PMID: 41796645 · DOI: 10.1016/j.bbi.2026.106529 · Brain, behavior, and immunity, 2026 · Minxiu Ye, Chao Huang, Yiming Gu, Xu Lu, Tao Zhu, Yi Zhang
📄 Abstract

Microglial decline in the dentate gyrus is an important mechanism in the development of depression-like behaviors in stressed animals. Reversing this decline with low-dose lipopolysaccharide (LPS) can produce rapid antidepressant effects, yet the underlying mechanisms remain incompletely understood. Our previous work identified a critical role for astrocytic P2Y1 receptor (P2Y1R) activation and subsequent dentate gyrus extracellular signal-regulated kinase 1/2 (ERK1/2)-brain-derived neurotrophic factor (BDNF) signaling in the antidepressant effect of low-dose LPS. This study elucidates the signaling cascade linking astrocytic P2Y1R mobilization to the antidepressant effect of low-dose LPS. We found that low-dose LPS promoted glutamate release through ATP-triggered astrocytic P2Y1R signaling. Blockade of N-methyl-D-aspartic acid (NMDA) receptors, but not metabotropic receptors, and the GluN2B subtype of NMDA receptors abolished the antidepressant effect of low-dose LPS. GluN2B knockdown also abolished the reversal effect of low-dose LPS on CUS-induced depression-like behaviors and impairment of dentate gyrus ERK1/2-BDNF signaling. Moreover, chelating intracellular Ca

Confidence: 0.09 · 4 полей извлечено
Идентификация (6 полей)
Механизм действия (21 полей)
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Экспрессия (8 полей)
Tissue expression
dentate gyrus, hippocampus
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low-dose LPS administration in stressed animals (CUS model) to reverse depression-like behaviors; AICAR in microbiota disruption model; LIPUS in LPS-induced depression model; curcumin in depression models
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stressed animals (CUS), microbiota disruption model, LPS-induced depression model, rat hippocampus
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low-dose LPS, AICAR, LIPUS, curcumin
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