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Nicotine produces chronic behavioral sensitization with changes in accumbal neurotransmission and increased sensitivity to re-exposure

机译:尼古丁会产生慢性行为敏化,伴有准确的神经传递改变并增加了对再暴露的敏感性

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Tobacco use is often associated with long-term addiction as well as high risk of relapse following cessation. This is suggestive of persistent neural adaptations, but little is known about the long-lasting effects of nicotine on neural circuits. In order to investigate the long-term effects of nicotine exposure, Wistar rats were treated for 3 weeks with nicotine (0.36mg/kg), and the duration of behavioral and neurophysiological adaptations was evaluated 7 months later. We found that increased drug-induced locomotion persisted 7 months after the initial behavioral sensitization. In vitro analysis of synaptic activity in the core and shell of the nucleus accumbens (nAc) revealed a decrease in input/output function in both regions of nicotine-treated rats as compared to vehicle-treated control rats. In addition, administration of the dopamine D2 receptor agonist quinpirole (5M) significantly increased evoked population spike amplitude in the nAc shell of nicotine-treated rats as compared to vehicle-treated control rats. To test whether nicotine exposure creates long-lasting malleable circuits, animals were re-exposed to nicotine 7 months after the initial exposure. This treatment revealed an increased sensitivity to nicotine among animals previously exposed to nicotine, with higher nicotine-induced locomotion responses than observed initially. In vitro electrophysiological recordings in re-exposed rats detected an increased sensitivity to dopamine D2 receptor activation. These results suggest that nicotine produces persistent neural adaptations that make the system sensitive and receptive to future nicotine re-exposure.
机译:吸烟经常与长期成瘾以及戒烟后复发的高风险有关。这表明存在持久的神经适应性,但对尼古丁对神经回路的长期影响知之甚少。为了研究烟碱暴露的长期影响,将Wistar大鼠用烟碱(0.36mg / kg)治疗3周,并在7个月后评估行为和神经生理适应的持续时间。我们发现,在最初的行为敏化后7个月,药物引起的运动持续增加。在伏隔核(nAc)的核和壳中的突触活性的体外分析显示,与赋形剂处理的对照大鼠相比,尼古丁处理的大鼠的两个区域的输入/输出功能均下降。另外,与媒介物处理的对照大鼠相比,给予多巴胺D2受体激动剂喹吡罗(5M)显着增加了在烟碱治疗的大鼠的nAc外壳中诱发的群体尖峰幅度。为了测试尼古丁暴露是否会产生持久的延展性循环,在初次暴露后7个月将动物重新暴露于尼古丁。这种治疗方法显示,先前接触过尼古丁的动物对尼古丁的敏感性增加,尼古丁引起的运动反应比最初观察到的要高。在再暴露的大鼠中的体外电生理学记录检测到对多巴胺D2受体激活的敏感性增加。这些结果表明,尼古丁产生持久的神经适应性,使系统对未来的尼古丁再暴露敏感并易于接受。

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