The left PBN to aCM pathway mediates pain-related aversion in male mice

Pain involves both sensory and emotional components, while the circuit mechanisms underlying pain-induced aversion remain poorly understood. Here, using a formalin-induced conditioned place aversion (F-CPA) model, we show a pathway from the left parabrachial nucleus (L-PBN) to the anterior central medial thalamic nucleus (aCM) that modulates F-CPA in male mice. We find that L-PBN neurons exhibit higher F-CPA-induced activity than those in the right PBN (R-PBN). Chemogenetic inhibition of L-PBN-but not R-PBN-attenuates F-CPA, whereas optogenetic activation of F-CPA-tagged L-PBN neurons induces aversion. Furthermore, the aCM-but not posterior CM-is activated by F-CPA, and inhibition of either the L-PBN to aCM pathway or aCM neurons receiving L-PBN inputs significantly reduces F-CPA. In contrast, in female mice, inhibition of neither L-PBN nor R-PBN affects F-CPA. Collectively, these findings identifies a neural circuit underlying pain-related aversion in male mice, advancing our understanding of sexual dimorphism in pain-related affective processing.

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Publication Details

Journal
Cell Reports
Published
2026-09-17
DOI
https://doi.org/10.1016/j.celrep.2026.118015
Primary Topic
Pain Mechanisms and Treatments
Type
article
Field-Weighted Citation Impact
0.00

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article

The left PBN to aCM pathway mediates pain-related aversion in male mice

Juan Deng, Ngoc T. Ha, Li-Na Zhang, Hao You et al.
Cell Reports
Pain Mechanisms and Treatments
article

The left PBN to aCM pathway mediates pain-related aversion in male mice

Juan Deng, Ngoc T. Ha, Li-Na Zhang, Hao You, Ya-Xin Yan, Ying-wei Wang
article en

Abstract

Pain involves both sensory and emotional components, while the circuit mechanisms underlying pain-induced aversion remain poorly understood. Here, using a formalin-induced conditioned place aversion (F-CPA) model, we show a pathway from the left parabrachial nucleus (L-PBN) to the anterior central medial thalamic nucleus (aCM) that modulates F-CPA in male mice. We find that L-PBN neurons exhibit higher F-CPA-induced activity than those in the right PBN (R-PBN). Chemogenetic inhibition of L-PBN-but not R-PBN-attenuates F-CPA, whereas optogenetic activation of F-CPA-tagged L-PBN neurons induces aversion. Furthermore, the aCM-but not posterior CM-is activated by F-CPA, and inhibition of either the L-PBN to aCM pathway or aCM neurons receiving L-PBN inputs significantly reduces F-CPA. In contrast, in female mice, inhibition of neither L-PBN nor R-PBN affects F-CPA. Collectively, these findings identifies a neural circuit underlying pain-related aversion in male mice, advancing our understanding of sexual dimorphism in pain-related affective processing.

Cell ReportsVol. 45(10)
Harbin Medical University (CN), Huashan Hospital (CN)
National Natural Science Foundation of China
Gender equality
Openalex Percentile: Top 12%
Pain Mechanisms and Treatments
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