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尼古丁而非生理盐水自我给药或配对对照条件会在伏隔核壳中产生持续的神经适应性变化。

Nicotine but not saline self-administering or yoked control conditions produces sustained neuroadaptations in the accumbens shell.

作者信息

Domi Ana, Lucente Erika, Cadeddu Davide, Adermark Louise

机构信息

Department of Pharmacology, Institute of Neuroscience and Physiology, The Sahlgrenska Academy, University of Gothenburg, Gothenburg, Sweden.

Addiction Biology Unit, Department of Psychiatry and Neurochemistry, Institute of Neuroscience and Physiology, The Sahlgrenska Academy, University of Gothenburg, Gothenburg, Sweden.

出版信息

Front Mol Neurosci. 2023 Jan 25;16:1105388. doi: 10.3389/fnmol.2023.1105388. eCollection 2023.

Abstract

INTRODUCTION

Using yoked animals as the control when monitoring operant drug-self-administration is considered the golden standard. However, instrumental learning recruits several neurocircuits that may produce distinct or overlapping neuroadaptations with drugs of abuse. The aim of this project was to assess if contingent responding for nicotine or saline in the presence of a light stimulus as a conditioned reinforcer is associated with sustained neurophysiological adaptations in the nucleus accumbens shell (nAcS), a brain region repeatedly associated with reward related behaviors.

METHODS

To this end, nicotine-or saline-administrating rats and yoked-saline stimulus-unpaired training conditions were assessed in operant boxes over four consecutive weeks. After four additional weeks of home cage forced abstinence and subsequent cue reinforced responding under extinction conditions, electrophysiology was performed in the nAcS medium spiny neurons (MSNs).

RESULTS

Whole cell recordings conducted in voltage and current-clamp mode showed that excitatory synapses in the nAcS were altered after prolonged forced abstinence from nicotine self-administration. We observed an increase in sEPSC amplitude in animals with a history of contingent nicotine SA potentially indicating higher excitability of accumbal MSNs, which was further supported by current clamp recordings. Interestingly no sustained neuroadaptations were elicited in saline exposed rats from nicotine associated visual cues compared to the yoked controls.

CONCLUSION

The data presented here indicate that nicotine self-administration produces sustained neuroadaptations in the nAcS while operant responding driven by nicotine visual stimuli has no long-term effects on MSNs in nAcS.

摘要

引言

在监测操作性药物自我给药时,使用配对动物作为对照被认为是黄金标准。然而,工具性学习会激活多个神经回路,这些神经回路可能会产生与滥用药物不同或重叠的神经适应性变化。本项目的目的是评估在存在作为条件强化物的光刺激时,对尼古丁或生理盐水的条件性反应是否与伏隔核壳(nAcS)中持续的神经生理适应性变化相关,伏隔核壳是一个反复与奖励相关行为相关的脑区。

方法

为此,在连续四周的时间里,在操作性条件反射箱中对给予尼古丁或生理盐水的大鼠以及配对生理盐水刺激非配对训练条件进行评估。在另外四周的笼内强制戒断以及随后在消退条件下的线索强化反应之后,对nAcS中的中型多棘神经元(MSNs)进行电生理记录。

结果

在电压钳和电流钳模式下进行的全细胞记录显示,在长期强制戒断尼古丁自我给药后,nAcS中的兴奋性突触发生了改变。我们观察到有条件尼古丁自我给药史的动物中微小兴奋性突触后电流(sEPSC)幅度增加,这可能表明伏隔核MSNs的兴奋性更高,电流钳记录进一步支持了这一点。有趣的是,与配对对照相比,暴露于尼古丁相关视觉线索的生理盐水处理大鼠未引发持续的神经适应性变化。

结论

此处呈现的数据表明,尼古丁自我给药会在nAcS中产生持续的神经适应性变化,而由尼古丁视觉刺激驱动的操作性反应对nAcS中的MSNs没有长期影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b338/9907443/1fe9b79edd8a/fnmol-16-1105388-g001.jpg

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