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Delta Opioid Receptors within the Cortico-Thalamic Circuitry Underlie Hyperactivity Induced by High-Dose Morphine

delete2025-11-01
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李玥 (Chunyue Li)
H
Huiqian Huang
X
Xiao‐Fan Shen
K
Kelei Cao
D
Di Zheng
Y
Yi Zhu
S
Shi‐Ze Xie
X
Xiaodan Yu
王浩 cover
王浩 (Hao Wang)
J
Jiadong Chen
时杰 cover
时杰 (Jie Shi)
李玥 (Yue Li) *
M
Min Yan *
李晓明 cover
李晓明 (Xiao‐Ming Li) *
DOI:10.1002/advs.202503831delete
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Abstract

Abstract

En 中文
Hyperactivity is a well-documented neurobehavioral effect of morphine and other opioid drugs, predominantly observed in rodent models, yet the neural circuits and molecular mechanisms underlying this effect remain elusive. In this study, an excitatory projection from the cingulate cortex (Cg) to the intermediate rostrocaudal division of zona incerta (ZIm) is revealed that is activated by morphine in mice. Chemogenetic inhibition of the Cg-ZIm pathway decreased high-dose (10-15mg kg-1) morphine-induced hyperlocomotion without affecting its analgesic effects. Activation of this pathway faithfully reproduced the motor effect of morphine. Furthermore, high-dose morphine-induced hyperlocomotion is quickly attenuated by microinjecting delta-opioid receptor (DOR) antagonists into the ZI, which is not observed following the targeted knockout of the DOR in Cg-projecting ZI neurons, indicating a postsynaptic DOR-mediated mechanism. In summary, these findings identify the critical role of the DOR within the Cg-ZIm circuit in the psychomotor properties of morphine. This work sheds light on potential targets within the Cg-ZIm pathway for mitigating the undesired psychomotor effects of morphine and thereby optimizing its clinical outcomes.
Keywords:
cingulate cortex
delta opioid receptors
hyperactivity
morphine
zona incerta
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Journal

Advanced Science cover
Advanced Science
IF:
14.1
Papers:
1.7W
Citations:
11.5W

Organization

L
liangzhu laboratory
Scholars:
442
Papers: 213
Citations: 2
Z
zhejiang university
Scholars:
17.1W
Papers: 11.9W
Citations: 152
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