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海马长时程增强在表达和消退期间被破坏,但在重新建立吗啡位置偏好后得到恢复。

Hippocampal long-term potentiation is disrupted during expression and extinction but is restored after reinstatement of morphine place preference.

机构信息

Department of Anesthesiology, College of Physicians and Surgeons, Columbia University, New York, New York 10032, Department of Anesthesiology, Division of Basic Research, Department of Anatomy-Neurobiology, and Washington University Pain Center, Washington University School of Medicine, St. Louis, Missouri 63110.

出版信息

J Neurosci. 2014 Jan 8;34(2):527-38. doi: 10.1523/JNEUROSCI.2838-13.2014.

Abstract

Learned associations between environmental cues and morphine use play an important role in the maintenance and/or relapse of opioid addiction. Although previous studies suggest that context-dependent morphine treatment alters glutamatergic transmission and synaptic plasticity in the hippocampus, their role in morphine conditioned place preference (CPP) and reinstatement remains unknown. We investigated changes in synaptic plasticity and NMDAR expression in the hippocampus after the expression, extinction, and reinstatement of morphine CPP. Here we report that morphine CPP is associated with increased basal synaptic transmission, impaired hippocampal long-term potentiation (LTP), and increased synaptic expression of the NR1 and NR2b NMDAR subunits. Changes in synaptic plasticity, synaptic NR1 and NR2b expression, and morphine CPP were absent when morphine was not paired with a specific context. Furthermore, hippocampal LTP was impaired and synaptic NR2b expression was increased after extinction of morphine CPP, indicating that these alterations in plasticity may be involved in the mechanisms underlying the learning of drug-environment associations. After extinction of morphine CPP, a priming dose of morphine was sufficient to reinstate morphine CPP and was associated with LTP that was indistinguishable from saline control groups. In contrast, morphine CPP extinguished mice that received a saline priming dose did not show CPP and had disrupted hippocampal LTP. Finally, we found that reinstatement of morphine CPP was prevented by the selective blockade of the NR2b subunit in the hippocampus. Together, these data suggest that alterations in synaptic plasticity and glutamatergic transmission play an important role in the reinstatement of morphine CPP.

摘要

环境线索与吗啡使用之间的习得性关联在阿片类药物成瘾的维持和/或复发中起着重要作用。尽管先前的研究表明,情境依赖性吗啡治疗会改变海马体中的谷氨酸能传递和突触可塑性,但它们在吗啡条件性位置偏爱(CPP)和复吸中的作用尚不清楚。我们研究了吗啡 CPP 表达、消退和复吸后海马体中突触可塑性和 NMDAR 表达的变化。在此,我们报告吗啡 CPP 与基础突触传递增加、海马体长时程增强(LTP)受损以及 NMDAR 亚基 NR1 和 NR2b 的突触表达增加有关。当吗啡与特定环境不配对时,突触可塑性、突触 NR1 和 NR2b 表达的变化以及吗啡 CPP 均不存在。此外,在吗啡 CPP 消退后,海马体 LTP 受损且突触 NR2b 表达增加,表明这些可塑性变化可能与药物-环境关联学习的机制有关。在吗啡 CPP 消退后,吗啡的引发剂量足以恢复吗啡 CPP,并与 LTP 相关,与盐水对照组无明显差异。相比之下,接受盐水引发剂量的吗啡 CPP 消退的小鼠则没有表现出 CPP,并且海马体 LTP 受到破坏。最后,我们发现海马体中 NR2b 亚基的选择性阻断可防止吗啡 CPP 的复吸。总之,这些数据表明,突触可塑性和谷氨酸能传递的改变在吗啡 CPP 的复吸中起着重要作用。

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