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Deactivation of excitatory neurons in the prelimbic cortex via Cdk5 promotes pain sensation and anxiety.


ABSTRACT: The medial prefrontal cortex (mPFC) is implicated in processing sensory-discriminative and affective pain. Nonetheless, the underlying mechanisms are poorly understood. Here we demonstrate a role for excitatory neurons in the prelimbic cortex (PL), a sub-region of mPFC, in the regulation of pain sensation and anxiety-like behaviours. Using a chronic inflammatory pain model, we show that lesion of the PL contralateral but not ipsilateral to the inflamed paw attenuates hyperalgesia and anxiety-like behaviours in rats. Optogenetic activation of contralateral PL excitatory neurons exerts analgesic and anxiolytic effects in mice subjected to chronic pain, whereas inhibition is anxiogenic in naive mice. The intrinsic excitability of contralateral PL excitatory neurons is decreased in chronic pain rats; knocking down cyclin-dependent kinase 5 reverses this deactivation and alleviates behavioural impairments. Together, our findings provide novel insights into the role of PL excitatory neurons in the regulation of sensory and affective pain.

SUBMITTER: Wang GQ 

PROVIDER: S-EPMC4518290 | biostudies-literature | 2015 Jul

REPOSITORIES: biostudies-literature

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Deactivation of excitatory neurons in the prelimbic cortex via Cdk5 promotes pain sensation and anxiety.

Wang Guo-Qiang GQ   Cen Cheng C   Li Chong C   Cao Shuai S   Wang Ning N   Zhou Zheng Z   Liu Xue-Mei XM   Xu Yu Y   Tian Na-Xi NX   Zhang Ying Y   Wang Jun J   Wang Li-Ping LP   Wang Yun Y  

Nature communications 20150716


The medial prefrontal cortex (mPFC) is implicated in processing sensory-discriminative and affective pain. Nonetheless, the underlying mechanisms are poorly understood. Here we demonstrate a role for excitatory neurons in the prelimbic cortex (PL), a sub-region of mPFC, in the regulation of pain sensation and anxiety-like behaviours. Using a chronic inflammatory pain model, we show that lesion of the PL contralateral but not ipsilateral to the inflamed paw attenuates hyperalgesia and anxiety-lik  ...[more]

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2020-02-13 | GSE145199 | GEO