首页> 美国卫生研究院文献>The Journal of Neuroscience >Nicotinic Acetylcholine Receptors in the Mesolimbic Pathway: Primary Role of Ventral Tegmental Area α6β2* Receptors in Mediating Systemic Nicotine Effects on Dopamine Release Locomotion and Reinforcement
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Nicotinic Acetylcholine Receptors in the Mesolimbic Pathway: Primary Role of Ventral Tegmental Area α6β2* Receptors in Mediating Systemic Nicotine Effects on Dopamine Release Locomotion and Reinforcement

机译:中脑边缘途径中的烟碱型乙酰胆碱受体:腹侧被盖区α6β2*受体在介导全身性尼古丁对多巴胺释放运动和增强的作用中的主要作用

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摘要

α6* nicotinic acetylcholine receptors (nAChRs) are highly and selectively expressed by mesostriatal dopamine (DA) neurons. These neurons are thought to mediate several behavioral effects of nicotine, including locomotion, habit learning, and reinforcement. Yet the functional role of α6* nAChRs in midbrain DA neurons is mostly unknown. The aim of this study was to determine the composition and in vivo functional role of α6* nAChR in mesolimbic DA neurons of male rats. Immunoprecipitation and immunopurification techniques coupled with cell-specific lesions showed that the composition of α6* nAChR in the mesostriatal system is heterogeneous, with (non-α4)α6β2* being predominant in the mesolimbic pathway and α4α6β2* in the nigrostriatal pathway. We verified whether α6* receptors mediate the systemic effects of nicotine on the mesolimbic DA pathway by perfusing the selective antagonists α-conotoxin MII (CntxMII) (α3/α6β2* selective) or α-conotoxin PIA (CntxPIA) (α6β2* selective) into ventral tegmental area (VTA). The intra-VTA perfusion of CntxMII or CntxPIA markedly decreased systemic nicotine-elicited DA release in the nucleus accumbens and habituated locomotion; the intra-VTA perfusion of CntxMII also decreased the rate of nicotine infusion in the maintenance phase of nicotine, but not of food, self-administration. Overall, the results of these experiments show that the α6β2* nAChRs expressed in the VTA are necessary for the effects of systemic nicotine on DA neuron activity and DA-dependent behaviors such as locomotion and reinforcement, and suggest that α6β2*-selective compounds capable of crossing the blood–brain barrier may affect the addictive properties of nicotine and therefore be useful in the treatment of tobacco dependence.
机译:α6*烟碱乙酰胆碱受体(nAChRs)由中皮多巴胺(DA)神经元高度选择性表达。这些神经元被认为可以介导尼古丁的几种行为影响,包括运动,习惯学习和强化。然而,α6* nAChRs在中脑DA神经元中的功能作用尚不清楚。这项研究的目的是确定雄性大鼠中脑边缘DA神经元中α6* nAChR的组成和体内功能作用。免疫沉淀和免疫纯化技术结合细胞特异性病变表明,中胚层系统中α6* nAChR的组成是异质的,其中(非α4)α6β2*在中脑边缘途径中占主导地位,而在黑质纹状体途径中则为α4α6β2*。我们通过将选择性拮抗剂α-芋螺毒素MII(CntxMII)(α3/α6β2*选择性)或α-毒素PIA(CntxPIA)(α6β2*选择性)注入体内来验证α6*受体是否介导了尼古丁对中脑边缘DA途径的全身作用腹侧被盖区(VTA)。 Vnt内CntxMII或CntxPIA灌注显着降低了系统性尼古丁引起的伏隔核中DA释放和习惯性运动。在尼古丁维持阶段,CntxMII的VTA内灌注也降低了尼古丁的输注速度,但食品,自我管理却没有。总体而言,这些实验的结果表明,VTA中表达的α6β2* nAChRs对于全身性尼古丁对DA神经元活性和DA依赖行为(例如运动和增强)的影响是必需的,并表明α6β2*选择性化合物能够穿越血脑屏障可能会影响尼古丁的成瘾性,因此可用于治疗烟草依赖。

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