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首页> 外文期刊>Frontiers in Psychiatry >Altered Activity of SK Channel Underpins Morphine Withdrawal Relevant Psychiatric Deficiency in Infralimbic to Accumbens Shell Pathway
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Altered Activity of SK Channel Underpins Morphine Withdrawal Relevant Psychiatric Deficiency in Infralimbic to Accumbens Shell Pathway

机译:SK通道的活性改变支持吗啡戒断与伏隔核通路的吗啡戒断相关的精神障碍。

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Drug addiction can be viewed as a chronic psychiatric disorder that is related to dysfunction of neural circuits, including reward deficits, stress surfeits, craving changes, and compromised executive function. The nucleus accumbens (NAc) plays a crucial role in regulating craving and relapse, while the medial prefrontal cortex (mPFC) represents a higher cortex projecting into the NAc that is active in the management of executive function. In this study, we investigated the role of the small conductance calcium-activated potassium channels (SK channels) in NAc and mPFC after morphine withdrawal. Action potential (AP) firing of neurons in the NAc shell was enhanced via the downregulations of the SK channels after morphine withdrawal. Furthermore, the expression of SK2 and SK3 subunits in the NAc was significantly reduced after 3 weeks of morphine withdrawal, but was not altered in the dorsal striatum. In mPFC, the SK channel subunits were differentially expressed. To be specific, the expression of SK3 was upregulated, while the expression of SK2 was unchanged. Furthermore, the AP firing in layer 5 pyramidal neurons of the infralimbic (IL) cortex was decreased via the upregulations of the SK channel-related tail current after 3 weeks of morphine withdrawal. These results suggest that the SK channel plays a specific role in reward circuits following morphine exposure and a period of drug withdrawal, making it a potential target for the prevention of relapse.
机译:吸毒成瘾可以被视为与神经回路功能障碍有关的慢性精神病,包括奖励不足,压力感,渴望改变和执行功能受损。伏伏核(NAc)在调节渴望和复发中起关键作用,而内侧前额叶皮层(mPFC)代表较高的皮层伸入NAc,在执行功能的管理中很活跃。在这项研究中,我们调查了吗啡戒断后小电导钙激活钾通道(SK通道)在NAc和mPFC中的作用。吗啡戒断后,SK通道的下调增强了NAc外壳中神经元的动作电位(AP)放电。此外,吗啡戒断3周后,NAc中SK2和SK3亚基的表达显着降低,但背侧纹状体未改变。在mPFC中,SK通道亚基被差异表达。具体而言,SK3的表达被上调,而SK2的表达未改变。此外,吗啡戒断3周后,SK通道相关尾电流的上调降低了下肢(IL)皮质第5层锥体神经元的AP放电。这些结果表明,SK通道在吗啡暴露和停药一段时间后的奖励回路中起特定作用,使其成为预防复发的潜在靶标。

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