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多巴胺D1受体激动剂治疗可减弱吗啡条件性位置偏好的消退,同时增加伏隔核核心区的树突复杂性。

Dopamine D1 receptor agonist treatment attenuates extinction of morphine conditioned place preference while increasing dendritic complexity in the nucleus accumbens core.

作者信息

Kobrin Kendra L, Arena Danielle T, Heinrichs Stephen C, Nguyen Olivia H, Kaplan Gary B

机构信息

Research Service, VA Boston Healthcare System, 1400 VFW Parkway, Boston, MA 02132, USA; Department of Pharmacology and Experimental Therapeutics, Boston University School of Medicine, 72 E Concord Street, Boston, MA 02118, USA.

Research Service, VA Boston Healthcare System, 1400 VFW Parkway, Boston, MA 02132, USA.

出版信息

Behav Brain Res. 2017 Mar 30;322(Pt A):18-28. doi: 10.1016/j.bbr.2017.01.011. Epub 2017 Jan 12.

DOI:10.1016/j.bbr.2017.01.011
PMID:28089852
Abstract

The dopamine D1 receptor (D1R) has a role in opioid reward and conditioned place preference (CPP), but its role in CPP extinction is undetermined. We examined the effect of D1R agonist SKF81297 on the extinction of opioid CPP and associated dendritic morphology in the nucleus accumbens (NAc), a region involved with reward integration and its extinction. During the acquisition of morphine CPP, mice received morphine and saline on alternate days; injections were given immediately before each of eight daily conditioning sessions. Mice subsequently underwent six days of extinction training designed to diminish the previously learned association. Mice were treated with either 0.5mg/kg SKF81297, 0.8mg/kg SKF81297, or saline immediately after each extinction session. There was a dose-dependent effect, with the highest dose of SKF81297 attenuating extinction, as mice treated with this dose had significantly higher CPP scores than controls. Analysis of medium spiny neuron morphology revealed that in the NAc core, but not in the shell, dendritic arbors were significantly more complex in the morphine conditioned, SKF81297-treated mice compared to controls. In separate experiments using mice conditioned with only saline, SKF81297 administration after extinction sessions had no effect on CPP and produced differing effects on dendritic morphology. At the doses used in our experiments, SKF81297 appears to maintain previously learned opioid conditioned behavior, even in the face of new information. The D1R agonist's differential, rather than unidirectional, effects on dendritic morphology in the NAc core suggests that it may be involved in encoding reward information depending on previously learned behavior.

摘要

多巴胺 D1 受体(D1R)在阿片类奖赏及条件性位置偏爱(CPP)中发挥作用,但其在 CPP 消退中的作用尚不确定。我们研究了 D1R 激动剂 SKF81297 对阿片类 CPP 消退及伏隔核(NAc)相关树突形态的影响,伏隔核是一个与奖赏整合及其消退相关的区域。在吗啡 CPP 的获得过程中,小鼠隔天接受吗啡和生理盐水注射;在每天八次条件训练前即刻进行注射。随后小鼠接受为期六天的消退训练,旨在减少先前习得的关联。在每次消退训练后,小鼠立即接受 0.5mg/kg SKF81297、0.8mg/kg SKF81297 或生理盐水处理。存在剂量依赖性效应,SKF81297 的最高剂量减弱了消退,因为接受该剂量处理的小鼠的 CPP 得分显著高于对照组。对中等棘状神经元形态的分析显示,在 NAc 核心而非壳区,与对照组相比,经吗啡条件训练且接受 SKF81297 处理的小鼠的树突分支显著更复杂。在单独使用仅接受生理盐水条件训练的小鼠进行的实验中,消退训练后给予 SKF81297 对 CPP 无影响,且对树突形态产生不同影响。在我们实验中使用的剂量下,即使面对新信息,SKF81297 似乎仍维持先前习得的阿片类条件行为。D1R 激动剂对 NAc 核心树突形态的不同而非单向影响表明,它可能根据先前习得的行为参与奖赏信息的编码。

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