首页> 美国卫生研究院文献>other >CONDITIONAL DELETION OF THE NMDA-NR1 RECEPTOR SUBUNIT GENE IN THE CENTRAL NUCLEUS OF THE AMYGDALA INHIBITS NALOXONE-INDUCED CONDITIONED PLACE AVERSION IN MORPHINE DEPENDENT MICE
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CONDITIONAL DELETION OF THE NMDA-NR1 RECEPTOR SUBUNIT GENE IN THE CENTRAL NUCLEUS OF THE AMYGDALA INHIBITS NALOXONE-INDUCED CONDITIONED PLACE AVERSION IN MORPHINE DEPENDENT MICE

机译:杏仁核中央核中NMDA-NR1受体亚基基因的条件缺失抑制了吗啡依赖小鼠的纳洛酮诱导的条件性位置转换

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摘要

Preclinical behavioral pharmacological and neuropharmacological evidence indicates that the NMDA receptor plays an important role in opioid dependence, however, the neural substrates subserving these actions are poorly understood. The central nucleus of the amygdala (CeA) is a critical coordinator of autonomic, behavioral, and emotional systems impacted by opioids, however there is no evidence that the essential NMDA-NR1 (NR1) subunit gene in the amygdala plays a role in opioid dependence. To determine the role of the NR1 subunit gene in the amygdala with respect to physical and psychological opioid withdrawal, a spatial-temporal deletion of this gene was produced by microinjecting a recombinant adeno-associated virus (rAAV) expressing the GFP reporter and Cre recombinase (rAAV-GFP-Cre) into the CeA of adult “floxed” NR1 mice (fNR1). Amygdala microinjection of rAAV-GFP-Cre produced a decrease in NR1 gene expression and protein immunolabeling in postsynaptic sites of neurons without signs of compromised ultrastructural neuronal morphology. Amygdala NR1 gene deletion also did not affect locomotor, somatosensory, or sensory-motor behaviors. In addition, bilateral local NR1 gene deletion did not impact somatic or visceral withdrawal symptoms precipitated by naloxone in morphine-dependent mice. However, there was a significant deficit in the expression of an opioid withdrawal-induced conditioned place aversion in mice with amygdala NR1 deletion. These results indicate that functional amygdala NMDA receptors are involved in aversive psychological processes associated with opioid withdrawal. More generally, spatial-temporal deletion of the NR1 subunit by Cre-loxP technology is an effective means to elucidate the neurogenetic substrates of complex phenotypes associated with drug abuse.
机译:临床前行为药理和神经药理学证据表明,NMDA受体在阿片样物质依赖性中起着重要作用,但是,对维持这些作用的神经基质的了解却很少。杏仁核的中央核(CeA)是受阿片类药物影响的自主,行为和情绪系统的关键协调者,但是没有证据表明杏仁核中的必需NMDA-NR1(NR1)亚基基因在阿片类药物依赖性中发挥作用。为了确定杏仁核中NR1亚基基因在生理和心理阿片类药物戒断方面的作用,通过显微注射表达GFP报告基因和Cre重组酶的重组腺相关病毒(rAAV)来产生该基因的时空缺失。 rAAV-GFP-Cre)插入成年“狐狸”成年NR1小鼠(fNR1)的CeA中。杏仁核显微注射的rAAV-GFP-Cre在神经元的突触后位点产生了NR1基因表达和蛋白质免疫标记的减少,而没有损害超微结构神经元形态的迹象。杏仁核NR1基因删除也不会影响运动,体感或感觉运动行为。此外,在吗啡依赖性小鼠中,双侧局部NR1基因缺失不会影响纳洛酮引起的躯体或内脏戒断症状。但是,在杏仁核NR1缺失的小鼠中,阿片样物质戒断诱导的条件化位置厌恶表达明显不足。这些结果表明功能性杏仁核NMDA受体参与与阿片类药物戒断相关的厌恶心理过程。更一般而言,通过Cre-loxP技术对NR1亚基进行时空缺失是阐明与药物滥用相关的复杂表型的神经遗传底物的有效手段。

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